1.The Functional Diversity and Regulatory Mechanism of Clathrin Plaques
Yi-Ge ZHAO ; Zhao-Hong JIANG ; Qian-Yi ZHOU ; Zhi-Ming CHEN
Progress in Biochemistry and Biophysics 2025;52(8):1958-1971
Clathrin-mediated endocytosis (CME) is a critical process by which cells internalize macromolecular substances and initiate vesicle trafficking, serving as the foundation for many cellular activities. Central to this process are clathrin-coated structures (CCSs), which consist of clathrin-coated pits (CCPs) and clathrin plaques. While clathrin-coated pits are well-established in the study of endocytosis, clathrin plaques represent a more recently discovered but equally important component of this system. These plaques are large, flat, and extended clathrin-coated assemblies found on the cytoplasmic membrane. They are distinct from the more typical clathrin-coated pits in terms of their morphology, larger surface area, and longer lifespan. Recent research has revealed that clathrin plaques play roles that go far beyond endocytosis, contributing to diverse cellular processes such as cellular adhesion, mechanosensing, migration, and pathogen invasion. Unlike traditional clathrin-coated pits, which are transient and dynamic structures involved primarily in the internalization of molecules, clathrin plaques are more stable and extensive, often persisting for extended periods. Their extended lifespan suggests that they serve functions beyond the typical endocytic role, making them integral to various cellular processes. For instance, clathrin plaques are involved in the regulation of intercellular adhesion, allowing cells to better adhere to one another or to the extracellular matrix, which is crucial for tissue formation and maintenance. Furthermore, clathrin plaques act as mechanosensitive hubs, enabling the cell to sense and respond to mechanical stress, a feature that is essential for processes like migration, tissue remodeling, and even cancer progression. Recent discoveries have also highlighted the role of clathrin plaques in cellular signaling. These plaques can serve as scaffolds for signaling molecules, orchestrating the activation of various pathways that govern cellular behavior. For example, the recruitment of actin-binding proteins such as F-actin and vinculin to clathrin plaques can influence cytoskeletal dynamics, helping cells adapt to mechanical changes in their environment. This recruitment also plays a pivotal role in regulating cellular migration, which is crucial for developmental processes. Additionally, clathrin plaques influence receptor-mediated signal transduction by acting as platforms for the assembly of signaling complexes, thereby affecting processes such as growth factor signaling and cellular responses to extracellular stimuli. Despite the growing body of evidence that supports the involvement of clathrin plaques in a wide array of cellular functions, much remains unknown about the precise molecular mechanisms that govern their formation, maintenance, and turnover. For example, the factors that regulate the recruitment of clathrin and other coat proteins to form plaques, as well as the signaling molecules that coordinate plaque dynamics, remain areas of active research. Furthermore, the complex interplay between clathrin plaques and other cellular systems, such as the actin cytoskeleton and integrin-based adhesion complexes, needs further exploration. Studies have shown that clathrin plaques can respond to mechanical forces, with recent findings indicating that they act as mechanosensitive structures that help the cell adapt to changing mechanical environments. This ability underscores the multifunctional nature of clathrin plaques, which, in addition to their role in endocytosis, are involved in cellular processes such as mechanotransduction and adhesion signaling. In summary, clathrin plaques represent a dynamic and versatile component of clathrin-mediated endocytosis. They play an integral role not only in the internalization of macromolecular cargo but also in regulating cellular adhesion, migration, and signal transduction. While much has been learned about their structural and functional properties, significant questions remain regarding the molecular mechanisms that regulate their formation and their broader role in cellular physiology. This review highlights the evolving understanding of clathrin plaques, emphasizing their importance in both endocytosis and a wide range of other cellular functions. Future research is needed to fully elucidate the mechanisms by which clathrin plaques contribute to cellular processes and to better understand their implications for diseases, including cancer and tissue remodeling. Ultimately, clathrin plaques are emerging as crucial hubs that integrate mechanical, biochemical, and signaling inputs, providing new insights into cellular function and the regulation of complex cellular behaviors.
2.Study on HPLC fingerprint and quantitative analysis of multi-components by single-marker content determination method for Shechuan naolitong granules
Xiaoyan ZHANG ; Kairu DING ; Hong ZHANG ; Wenbing ZHI ; Shengnan JIANG ; Zongren XU ; Ni CUI ; Xiangfeng WEI ; Yang LIU
China Pharmacy 2025;36(19):2409-2414
OBJECTIVE To provide a reference for optimizing and promoting the quality standards of Shechuan naolitong granules. METHODS Fifteen batches of Shechuan naolitong granules were used as samples to establish HPLC fingerprints using the Similarity Evaluation System for Chromatographic Fingerprint of Traditional Chinese Medicine (2012 edition). Similarity evaluation and common peak identification were performed, and orthogonal partial least squares discriminant analysis (OPLS-DA) was used to assess quality differences among different batches and to screen quality differential components. Using salvianolic acid B(SAB) as the internal reference, quantitative analysis of multi-components by single-marker (QAMS) was developed to simultaneously determine geniposidic acid (GA), chlorogenic acid (CA), vaccarin (VA), ferulic acid (FA) and senkyunolide I (SI). The results were compared with those obtained by the external standard method. RESULTS A total of 13 common peaks were identified in the HPLC fingerprints of 15 batches of samples, and the similarities of the spectra were all above 0.96. Seven chromatographic peaks were identified as GA (peak 3), CA (peak 6), VA (peak 8), FA (peak 9), SI (peak 11), SAB(peak 12) and TA(peak 13). OPLS-DA indicated that the differential quality markers among 15 batches were peaks 5, 11 (SI), and 12 (SAB).Using SAB as the internal reference, the relative correction factors for GA, CA, VA, FA and SI were calculated as 1.058 4, 0.594 3, 0.643 3, 0.342 7 and 0.262 8, respectively. The mean content of GA, CA, VA, FA, SI and SAB across the 15 batches of samples were 0.155 0, 0.085 4, 0.140 3, 0.071 8, 0.072 7, 1.276 3 mg/g, respectively, showing no significant difference compared with the ESM (P>0.05). CONCLUSIONS The established HPLC fingerprint and QAMS are simple, efficient and economical, providing a reference for the quality control and further development of Shechuan naolitong granules.
3.Clinical trial of propofol and remazolam in patients of painless fiberoptic bronchoscopic biopsy
Zhi-Hua HUANG ; Yan-Fang WANG ; Chao-Sheng QIN ; Yi-Hong JIANG
The Chinese Journal of Clinical Pharmacology 2024;40(12):1699-1703
Objective To observe clinical outcomes of propofol and remazolam in patients undergoing elective painless fiberoptic bronchoscopic biopsy.Methods Patients who underwent painless fibreoptic bronchoscopic biopsy in our hospital from March 2022 to April 2023 were selected for the study and divided into 2 groups using simple randomisation method.In the control group,anaesthesia was induced with 1 mg·kg-1 propofol,3 μg·kg-1 fentanyl,0.1 mg·kg-1 cis-atracurium,and anaesthesia was maintained with 4-6 mg·kg-1·h-1 propofol.In the treatment group,anaesthesia was induced with 0.2 mg·kg-1 remazolam,3 μg·kg-1 fentanyl,0.1 mg·kg-1 cis-atracurium,and anaesthesia was maintained with 0.2-0.4 mg·kg-1·h-1 remazolam.We compared the awakening time,laryngeal mask removal time,microscopy time,and the proportion of additional anaesthetics in the 2 groups,and detected the levels of S100β,neuron-specific enolase(NSE),interleukin-6(IL-6),tumour necrosis factor-alpha(TNF-α)in the 2 groups preoperatively and at 24 h postoperatively,and statistically counted the occurrences of adverse reactions in the 2 groups.Results The time for pulling out the laryngeal mask in the treatment group was significantly lower than that in the control group,while the time for microscopy,time for awakening,and proportion of additional anaesthesia drugs were not statistically significant when compared with that in the control group(all P>0.05).The overall anaesthesia effect grading of the test group was not statistically significant when compared with the control group(P>0.05).S100β were(0.66±0.17)and(0.78±0.21)μg·L-1;NSE were(8.47±1.78)and(11.47±2.06)μg·L-1;IL-6 were(8.64±1.21)and(12.89±1.47)pg·mL-1;TNF-α were(6.27±1.07)and(9.13±1.41)pg·mL-1,respectively,which were higher than that of preoperative period,and the treatment group was lower than that of the control group at 24 h postoperatively,and the difference was statistically significant(all P<0.05).The incidence of adverse drug reactions in the treatment group and the control group were 13.75%and 22.50%,respectively,and the difference was not statistically significant(P>0.05).Conclusion The use of remazolam in painless fiberoptic bronchoscopic biopsy is less neurologically damaging,stabilizes hemodynamics.
4.Functions of Dynamin and Its Family Proteins
Zi-Yan YANG ; Zhao-Hong JIANG ; Qian-Yi ZHOU ; Zhi-Ming CHEN
Progress in Biochemistry and Biophysics 2024;51(11):2821-2831
The dynamin superfamily protein (DSP) encompasses a group of large GTPases that are involved in various membrane remodeling processes within the cell. These proteins are characterized by their ability to hydrolyze GTP, which provides the energy necessary for their function in membrane fission, fusion, and tubulation activities. Dynamin superfamily proteins play critical roles in cellular processes such as endocytosis, organelle division, and vesicle trafficking. It is typically classified into classical dynamins and dynamin-related proteins (Drp), which have distinct roles and structural features. Understanding these proteins is crucial for comprehending their functions in cellular processes, particularly in membrane dynamics and organelle maintenance. Classical dynamins are primarily involved in clathrin-mediated endocytosis (CME), a process crucial for the internalization of receptors and other membrane components from the cell surface into the cell. These proteins are best known for their role in pinching off vesicles from the plasma membrane. Structually, classical dynamins are composed of a GTPase domain, a middle domain, a pleckstrin homology (PH) domain that binds phosphoinositides, a GTPase effector domain (GED), and a proline-rich domain (PRD) that interacts with SH3 domain-containing proteins. Functionally, the classical dynamins wrap around the neck of budding vesicles, using GTP hydrolysis to constrict and eventually acting as a “membrane scissor” to cut the vesicle from the membrane. In mammals, there are three major isoforms: dynamin 1 (predominantly expressed in neurons), dynamin 2 (ubiquitously expressed), and dynamin 3 (expressed in testes, lungs, and neurons). Recent studies have also revealed some non-classical functions of classical dynamins, such as regulating the initiation and stabilization of clathrin-coated pits (CCPs) at the early stages of CME, influencing the formation of the actin cytoskeleton and cell division. Drps share structural similarities with classical dynamins but are involved in a variety of different cellular processes, primarily related to the maintenance and remodeling of organelles, and can be mainly categorized into “mediating membrane fission”, “mediating membrane fusion” and “non-membrane-dependent functions”. Proteins like Drp1 are crucial for mitochondrial division, while others like Fis1, Mfn1, and Mfn2 are involved in mitochondrial and peroxisomal fission and fusion processes, which are essential for the maintenance of mitochondrial and peroxisomal integrity and affect energy production and apoptosis. Proteins like the Mx protein family exhibit antiviral properties by interfering with viral replication or assembly, which is critical for the innate immune response to viral infections. Some other proteins are involved in the formation of tubular structures from membranes, which is crucial for the maintenance of organelle morphology, particularly in the endoplasmic reticulum and Golgi apparatus. Studies on dynamin superfamily proteins have been extensive and have significantly advanced our understanding of cellular biology, disease mechanisms, and therapeutic potential. These studies encompass a broad range of disciplines, including molecular biology, biochemistry, cell biology, genetics, and pharmacology. By comprehensively summarizing and organizing the structural features and functions of various members of the dynamin superfamily protein, this review not only deepens the understanding of its molecular mechanisms, but also provides valuable insights for clinical drug research related to human diseases, potentially driving further advancements in the field.
5.Metabolic and Cellular Characterization of Severe Asthma
Chen-Rong JIANG ; Zhi-Hong CHEN ; Hong-De LIU
Progress in Biochemistry and Biophysics 2024;51(11):2998-3010
ObjectiveAsthma is a common chronic inflammatory airway disease, and severe asthma poses a significant challenge in its diagnosis and management. Immune cells are involved in and altered by asthma pathogenesis, and several lipid metabolites can serve as diagnostic markers for the disease. In this study, we investigated the characterization of severe asthma at the metabolic and cellular level. MethodsDifferential metabolites in blood samples from severe asthma (41 cases) and controls (18 cases) were screened using multifactorial statistical analysis and independent samples t-tests; key pathways were identified by KEGG enrichment analysis, and biomarkers were characterized based on ROC curves; immune cell types and proportions in the blood were identified based on the results of cell-type annotations (5 severe and 3 control cases); and single-sample Gene Enrichment Analysis (ssGSEA) to investigate the characterization of differential metabolic pathways in single cells. ResultsCompared with controls, the abundance of 28 metabolites was increased and the abundance of 13 metabolites was decreased in the blood of patients with severe asthma (P<0.05); the differential metabolites were enriched in 4 pathways: sphingolipid metabolism, glycerophospholipid metabolism, nicotinate and nicotinamide metabolism, and histidine metabolism. Among them, 13 differential metabolites could be used as biomarkers for the diagnosis of severe asthma, including L-glutamic acid (AUC=0.809), nicotinamide (AUC=0.886), phytosphingosine (AUC=0.882), and sphinganine (AUC=0.893). In single-cell transcriptome analysis,5 key cell types were identified: CD4+ T cells, CD8+ T cells, NK cells, B cells, and monocytes. The number of NK cells was increased in patients with severe asthma, and severe asthma exhibited more frequent cellular communication, particularly dense communication between CD8+ T cells and other cell types. In healthy samples, monocytes were the primary cells engaging in dense communication. Single-sample gene enrichment analysis (ssGSEA) showed that 4 pathways enriched for differential metabolites had lower scores (P<0.01) in CD4+ T and CD8+ T cells in severe patients, and it was hypothesized that the expression of genes associated with these pathways was suppressed in these two types of cells. The suppressed genes included DGKA and NT5C3A, which are associated with immune processes. We observed that these genes play key roles in the regulation of T cell signaling, activation, differentiation, and immune responses. ConclusionL-glutamic acid, nicotinamide, phytosphingosine, and sphinganine can be used as biomarkers for the diagnosis of severe asthma; genes of the severe asthma-associated pathway were suppressed in CD4+ T cells and CD8+ T cells.
6.Sophora davidii Hance leaves total alkaloids Attenuate Lipopolysaccharide-induced inflammatory response in RAW264.7 cell by Inhibiting the MAPK/NF-κB signaling pathway
Shengnan JIANG ; Wenbing ZHI ; Jing CHEN ; Tingting SUN ; Zongren XU ; Shuai LIU ; Hong ZHANG ; Ye LI ; Yang LIU
The Journal of Practical Medicine 2024;40(20):2835-2840
Objective To investigate the in vitro anti-inflammatory effects of Sophora davidii Hance leaves total alkaloids(SDLTAs)and possible molecular mechanisms.Methods The lipopolysaccharide(LPS)-induced inflammation model of RAW264.7 cells was used,and different concentrations of SDLTAs(50,100 and 200 μg/mL)were administered,and the effect of SDLTAs on cellular NO expression was detected by the Griess method;ELISA method was used to detect the effect of SDLTAs on the expression of IL-6,TNF-α and IL-1β;The expression of iNOS,NF-κB p65 and IκBα mRNA was detected by RT-qPCR;Western blotting was used to detecte the expres-sion of p-p38,p-p65 and p-JNK in the cells and NF-κB p65 in the nucleus.Results SDLTAs could significantly inhibit the LPS-induced inflammatory response in RAW264.7 cells.SDLTAs significantly decreased the secretion of NO,IL-6,TNF-α and IL-1β in cells(P<0.01),and significantly decreased the mRNA expressions of iNOS,NF-κB p65 and IκBα in cells(P<0.01).Significantly decreased the protein expression of p-p38,p-p65 and p-JNK in cells and NF-κB p65 in nucleus(P<0.01).Conclusion SDLTAs can exert anti-inflammatory effects by regulating the MAPK/NF-κB signalling pathway.
7.Clinical trial of carrelizumab for preoperative neoadjuvant chemotherapy in patients with stage Ⅲa NSCLC
Hong-Jiang YAN ; Tie-Zhi LI ; Xiao-Dan JIAO ; Shao-Lin GAO
The Chinese Journal of Clinical Pharmacology 2024;40(17):2469-2473
Objective To observe the clinical effect and safety of camrelizumab combined with albumin-bound paclitaxel and cisplatin in preoperative neoadjuvant chemotherapy for patients with stage Ⅲa non-small cell lung cancer(NSCLC).Methods Patients with stage Ⅲ a NSCLC were divided into the treatment group and the control group.The control group was treated with intravenous infusion of 130 mg·m-2 of paclitaxel injection on day 1 and day 8,and intravenous infusion of 75 mg·m-2 of cisplatin injection on day 1.In addition to the treatment of control group,the treatment group was treated with intravenous infusion of 200 mg of camrelizumab injection on day 1.Both groups were given 2 cycles of treatment.Clinical efficacy,tumor markers,tumor metastasis markers,T lymphocyte subsets,and safety were compared between the two groups.Results After treatment,the objective remission rate(ORR)of the treatment group and the control group was 69.64%(39 cases/56 cases)and 38.98%(23 cases/59 cases),respectively;the disease control rate(DCR)was 89.29%(50 cases/56 cases)and 72.88%(43 cases/59 cases),respectively;cytokeratin-19-fragment(Cyfra21-1)levels were(3.47±0.86)and(4.01±1.24)ng·mL-1;carcinoembryonic antigen(CEA)levels were(4.55±0.93)and(5.26±1.04)ng·mL-1;neuron-specific enolase(NSE)levels were(16.38±2.51)and(19.02±2.95)ng·mL-1;basic fibroblast growth factor(bFGF)levels were(15.82±2.34)and(18.64±2.59)μg·L-1;carbohydrate antigen 15-3(CA15-3)levels were(22.54±3.10)and(29.41±3.82)ng·mL-1;CD4+/CD8+were 1.42±0.51 and 1.30±0.32.The above indexes were significantly different between the control group and the treatment group(all P<0.05).The adverse drug reactions in the treatment group and the control group were mainly neutropenia,thrombocytopenia,alopecia,gastrointestinal reaction and radiation pneumonia.There were no significant difference in the incidence of adverse drug reactions between the two groups(all P>0.05).Conclusion Camrelizumab combined with albumin-bound paclitaxel and cisplatin is effective in the treatment of patients with stage Ⅲa NSCLC.
8.Biomarkers Screening and Mechanisms Analysis of the Restraint Stress-Induced Myocardial Injury in Hyperlipidemia ApoE-/-Mice
Shang-Heng CHEN ; Sheng-Zhong DONG ; Zhi-Min WANG ; Guang-Hui HONG ; Xing YE ; Zi-Jie LIN ; Jun-Yi LIN ; Jie-Qing JIANG ; Shou-Yu WANG ; Han-Cheng LIN ; Yi-Wen SHEN
Journal of Forensic Medicine 2024;40(2):172-178
Objective To explore the biomarkers and potential mechanisms of chronic restraint stress-induced myocardial injury in hyperlipidemia ApoE-/-mice.Methods The hyperlipidemia combined with the chronic stress model was established by restraining the ApoE-/-mice.Proteomics and bioinformatics techniques were used to describe the characteristic molecular changes and related regulatory mechanisms of chronic stress-induced myocardial injury in hyperlipidemia mice and to explore potential diagnostic biomarkers.Results Proteomic analysis showed that there were 43 significantly up-regulated and 58 sig-nificantly down-regulated differentially expressed proteins in hyperlipidemia combined with the restraint stress group compared with the hyperlipidemia group.Among them,GBP2,TAOK3,TFR1 and UCP1 were biomarkers with great diagnostic potential.KEGG pathway enrichment analysis indicated that fer-roptosis was a significant pathway that accelerated the myocardial injury in hyperlipidemia combined with restraint stress-induced model.The mmu_circ_0001567/miR-7a/Tfr-1 and mmu_circ_0001042/miR-7a/Tfr-1 might be important circRNA-miRNA-mRNA regulatory networks related to ferroptosis in this model.Conclusion Chronic restraint stress may aggravate myocardial injury in hyperlipidemia mice via ferrop-tosis.Four potential biomarkers are selected for myocardial injury diagnosis,providing a new direction for sudden cardiac death(SCD)caused by hyperlipidemia combined with the restraint stress.
9.Observation and imaging analysis of signs of ankylosing spondylitis in spinal specimens
Wei-Xing ZHONG ; Zhi-Hong WANG ; Jun-Hua LI ; Li-Qing LIAO ; Zu-Jiang CHEN ; Yi-Kai LI
Acta Anatomica Sinica 2024;55(3):329-333
Objective To provide anatomical,radiological,and clinical diagnostic and therapeutic references for ankylosing spondylitis and spinal surgical operations.Methods Non-measurement spinal observations,X-ray examinations,and measurements were performed on two spinal specimens,along with digital image acquisition and processing.Results The first specimen included thoracic vertebra 7(T7)to lumbar vertebra 3(L3),with an average total length of 29.7 cm;the second specimen ranged from cervical vertebra 7(C7)to lumbar vertebra 2(L2),with an average total length of 38.3 cm.The specimens showed partial or complete calcification of ligaments,ossification of the small joints and intervertebral discs,and osteoporosis;The anterior-posterior diameter(width)of the vertebral foramen was narrower than that of a normal adult,while most of the superior-inferior diameter(height)was wider.Radiographically,the anterior longitudinal ligament calcification appeared as dot-like or striated,but it was actually flaky in the actual specimens.The specimens provided views of the facet joints,costovertebral joints,and intervertebral foramina that was difficult to demonstrate on two-dimensional X-ray images.Conclusion As ankylosing spondylitis progresses,the range of motion in spinal bending and rotation decreases,as does the extent of thoracic expansion,thereby affecting respiration and complicating procedures such as intraspinal anesthesia and sacral canal injections.In terms of diagnosis,bone specimens and X-ray films allow us to understand the development process and severity of ankylosing spondylitis more directly and accurately.
10.The flow cytometry analysis of bone marrow plasma cells in patients of different plasma cell dyscrasias
Zhi-Hong JIANG ; Ya-Ting JIANG ; Xiao-Na WANG ; Yu-Xin ZHANG ; Yang-Yang WANG ; Zheng WEI
Fudan University Journal of Medical Sciences 2024;51(4):602-607,619
Objective To investigate the differences of characteristic of bone marrow plasma cells in patients of different plasma cell dyscrasias according to International Myeloma Working Group(IMWG)criteria.Methods We analyzed the serological and bone marrow flow cytometry results of patients with plasma cell dyscrasias diagnosed and treated in Department of Hematology,Zhongshan Hospital(Xiamen Branch),Fudan University from Jun 12,2019 to Sep 5,2023 retrospectively.Results A total of 102 patients,63 males and 39 females,aged 22 to 85 years,were included,including 46 patients with monoclonal gammaglobulinemia of unknown significance,39 patients with multiple myeloma,5 patients with smoldering multiple myeloma and 12 patients with light-chain amyloidosis.All patients had M proteinemia,including 58 patients with IgG type and 44 patients with non-IgG type.Plasma cells were detected in the bone marrow of all patients.Clonal plasma cells were detected in the bone marrow of 79 patients.Normal plasma cells were detected in the bone marrow of 63 patients.Both clonal and normal plasma cells were detected in the bone marrow of 40 patients.Clonal plasma cells from bone marrow of 52 patients expressed CD56 and 12 patients expressed CD117.There were no significant differences in gender,age among different disease groups.There were statistical differences in M protein type,the concentration of M protein,serum involved/uninvolved free light chain ratio,the proportion of plasma cells in bone marrow nucleated cells,the proportion of clonal plasma cells in bone marrow nucleated cells,the proportion of clonal plasma cells in all bone marrow plasma cells,and the proportion of normal plasma cells in all bone marrow plasma cells among different disease groups(P<0.05).There was statistical difference in the expression of CD56 in clonal plasma cells among different disease groups(P=0.009),but no statistical difference in the expression of CD117.Conclusion The proportion of clonal plasma cells to all nucleated cells,the proportion of clonal plasma cells to all plasma cells,and the proportion of CD56 expression in abnormal plasma cells in the bone marrow of patients with light amyloidosis were similar to those of monoclonal gammopathy of undetermined significance,but significantly different from those of patients with multiple myeloma.

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