1.Taohe Chengqi decoction inhibits PAD4-mediated neutrophil extracellular traps and mitigates acute lung injury induced by sepsis.
Mengting XIE ; Xiaoli JIANG ; Weihao JIANG ; Lining YANG ; Xiaoyu JUE ; Yunting FENG ; Wei CHEN ; Shuangwei ZHANG ; Bin LIU ; Zhangbin TAN ; Bo DENG ; Jingzhi ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(10):1195-1209
Acute lung injury (ALI) is a significant complication of sepsis, characterized by high morbidity, mortality, and poor prognosis. Neutrophils, as critical intrinsic immune cells in the lung, play a fundamental role in the development and progression of ALI. During ALI, neutrophils generate neutrophil extracellular traps (NETs), and excessive NETs can intensify inflammatory injury. Research indicates that Taohe Chengqi decoction (THCQD) can ameliorate sepsis-induced lung inflammation and modulate immune function. This study aimed to investigate the mechanisms by which THCQD improves ALI and its relationship with NETs in sepsis patients, seeking to provide novel perspectives and interventions for clinical treatment. The findings demonstrate that THCQD enhanced survival rates and reduced lung injury in the cecum ligation and puncture (CLP)-induced ALI mouse model. Furthermore, THCQD diminished neutrophil and macrophage infiltration, inflammatory responses, and the production of pro-inflammatory cytokines, including interleukin-1β (IL-1β), IL-6, and tumor necrosis factor α (TNF-α). Notably, subsequent experiments confirmed that THCQD inhibits NET formation both in vivo and in vitro. Moreover, THCQD significantly decreased the expression of peptidyl arginine deiminase 4 (PAD4) protein, and molecular docking predicted that certain active compounds in THCQD could bind tightly to PAD4. PAD4 overexpression partially reversed THCQD's inhibitory effects on PAD4. These findings strongly indicate that THCQD mitigates CLP-induced ALI by inhibiting PAD4-mediated NETs.
Extracellular Traps/immunology*
;
Acute Lung Injury/immunology*
;
Animals
;
Sepsis/immunology*
;
Drugs, Chinese Herbal/pharmacology*
;
Mice
;
Neutrophils/immunology*
;
Male
;
Protein-Arginine Deiminase Type 4/genetics*
;
Mice, Inbred C57BL
;
Humans
;
Disease Models, Animal
;
Cytokines/metabolism*
2.Expressions of PRMT5 and DKK3 proteins in prostate cancer tissue correlate to biochemical recurrence after radical prostatectomy.
Mei-Man TAO ; Kang CHENG ; Peng PAN ; Tao GUO ; Bing-Hai CHEN ; Ke-Jun MA
National Journal of Andrology 2024;30(12):1074-1080
OBJECTIVE:
To investigate the relationship of the expression levels of protein arginine methyltransferase 5 (PRMT5) and Dickkopf-related protein 3 (DKK3) in the PCa tissue with biochemical recurrence (BR) of the malignancy after radical surgery.
METHODS:
This study included 105 cases of PCa diagnosed in our hospital from January 2016 to December 2020 and, according to BR within 3 years after surgery, we divided them into a BR (n = 22) and a non-BR group (n = 83). We detected the expressions of PRMT5 and DKK3 in the prostate tissues of the patients by immunohistochemistry, analyzed the correlation of the expression levels of PRMT5 and DKK3 using the Spearman method, and conducted a multivariate analysis of postoperative BR of the malignancy using the Cox multivariate regression model.
RESULTS:
The positive expression of PRMT5 was significantly higher while that of DKK3 remarkably lower in the PCa than in the adjacent tissue (P<0.05). Spearman correlation analysis showed a negative correlation between the expression levels of PRMT5 and DKK3 in the PCa tissue (r = -0.532, P<0.05). The expressions of PRMT5 and DKK3 were significantly associated with tumor-node-metastasis (TNM) stages, positive surgical margins, peripheral nerve invasion, capsular invasion, seminal vesicle invasion and vascular invasion (P<0.05). The percentage of TNM stages III-IV, the positive expression of PRMT5 and the negative expression of DKK3 were remarkably higher in the BR than in the non-BR group (P<0.05). PRMT5 was found to be an independent risk factor for while DKK3 a protective factor against postoperative BR of PCa in the patients (P<0.05).
CONCLUSION
PRMT5 is highly while DKK3 lowly expressed in PCa tissue, and their expressions are both closely related to the biochemical recurrence of PCa after radical surgery.
Humans
;
Male
;
Protein-Arginine N-Methyltransferases/metabolism*
;
Prostatectomy
;
Prostatic Neoplasms/pathology*
;
Neoplasm Recurrence, Local
;
Adaptor Proteins, Signal Transducing
;
Intercellular Signaling Peptides and Proteins/metabolism*
;
Middle Aged
;
Immunohistochemistry
3.GSK484, a PAD4 inhibitor, improves endothelial dysfunction in mice with sepsis-induced lung injury by inhibiting H3Cit expression.
Xiaofei SU ; Lin LI ; Jingrong DAI ; Bao XIAO ; Ziqi JIN ; Bin LIU
Journal of Southern Medical University 2024;44(12):2396-2403
OBJECTIVES:
To investigate the inhibitory effect of GSK484, a PAD4 inhibitor, on H3Cit expression following sepsis and its effects for improving sepsis-induced endothelial dysfunction.
METHODS:
Eighteen C57BL/6 mice were randomized into sham-operated group, sepsis model group and GSK484 treatment group (n=6), and in the latter two groups, models of sepsis were established by cecal ligation and puncture (CLP). The mice in GSK484 treatment group were given an intraperitoneal injection of GSK484 (4 mg/kg) on the second day following the surgery. Twenty-four hours after the injection, the mice were euthanized for measurement of serum levels of VEGF, ESM-1, IL-6 and IL-1β using ELISA. Lung tissue pathology was observed with HE staining, and pulmonary expressions of F-actin, VE-cadherin, ZO-1 and H3Cit proteins were detected using immunofluorescence staining and Western blotting. In primary cultured of mouse lung microvascular endothelial cells, the effect of stimulation with LPS (10 μg/mL) for 24 h on tube formation, proliferation, apoptosis and expressions of VEGF, ESM-1, IL-6 and IL-1β were assessed using CCK-8 assay, flow cytometry and ELISA.
RESULTS:
Compared to the sham-operated mice, the septic mice exhibited significant lung tissue pathologies characterized by vascular congestion, alveolar rupture, edema, and neutrophil infiltration. Serum levels of IL-6, IL-1β, VEGF, and ESM-1 were elevated, pulmonary expressions of F-actin, VE-cadherin, and ZO-1 were decreased, and H3Cit expression was increased significantly in the septic mice. GSK484 treatment effectively mitigated these changes in the septic mice. The LPS-stimulated endothelial cells showed increased productions of IL-6, IL-1β, VEGF and ESM-1, which were significantly reduced after treatment with 2.5 μmol/L GSK484.
CONCLUSIONS
GSK484 treatment effectively suppresses H3Cit expression in septic mice to ameliorate sepsis-induced endothelial dysfunction.
Animals
;
Sepsis/drug therapy*
;
Mice
;
Mice, Inbred C57BL
;
Lung Injury/drug therapy*
;
Endothelial Cells/drug effects*
;
Interleukin-6/metabolism*
;
Protein-Arginine Deiminase Type 4/metabolism*
;
Lung/metabolism*
;
Vascular Endothelial Growth Factor A/metabolism*
;
Interleukin-1beta/metabolism*
;
Disease Models, Animal
;
Cadherins/metabolism*
;
Apoptosis/drug effects*
;
Imidazoles
;
Antigens, CD
4.The mechanism of microcystin leucine-arginine (MC-LR)-induced injury of Sertoli cell immune response and biological behavior.
Kaili ZHU ; Changcheng ZHANG ; Xiaoping WU ; Shangyu LIU ; Xueyi ZHAO ; Ding YUAN ; Haixia ZHAO
Chinese Journal of Cellular and Molecular Immunology 2023;39(8):753-758
Microcystin-leucine arginine (MC-LR), a potentially carcinogenic toxin, is produced by Cyanobacteria such as Microcystis and Ananabacteria during water bloom. Increasing evidence demonstrated that MC-LR induces male reproductive toxicity, mainly by inducing germ cell apoptosis, destroying cell cytoskeleton, interfering with DNA damage repair pathway, and damaging blood-testicular barrier (BTB), which eventually lead to male sterility. Testicular Sertoli cells are the somatic cells that directly contact with spermatogenic cells in seminiferous tubules. They not only regulate immune response to maintain testicular immune homeostasis by secreting a variety of cytokines and immunosuppressive factors, but also provide the protective effects of spermatogenic cells by forming BTB. MC-LR induces inflammation and apoptosis of Sertoli cells, and destroys the integrity of the BTB, and then causes spermatogenesis dysfunction.
Male
;
Humans
;
Sertoli Cells
;
Leucine/pharmacology*
;
Arginine/pharmacology*
;
Microcystins/metabolism*
;
Immunity
5.lncR-GAS5 upregulates the splicing factor SRSF10 to impair endothelial autophagy, leading to atherogenesis.
Yuhua FAN ; Yue ZHANG ; Hongrui ZHAO ; Wenfeng LIU ; Wanqing XU ; Lintong JIANG ; Ranchen XU ; Yue ZHENG ; Xueqing TANG ; Xiaohan LI ; Limin ZHAO ; Xin LIU ; Yang HONG ; Yuan LIN ; Hui CHEN ; Yong ZHANG
Frontiers of Medicine 2023;17(2):317-329
Long noncoding RNAs (lncRNAs) play a critical role in the regulation of atherosclerosis. Here, we investigated the role of the lncRNA growth arrest-specific 5 (lncR-GAS5) in atherogenesis. We found that the enforced expression of lncR-GAS5 contributed to the development of atherosclerosis, which presented as increased plaque size and reduced collagen content. Moreover, impaired autophagy was observed, as shown by a decreased LC3II/LC3I protein ratio and an elevated P62 level in lncR-GAS5-overexpressing human aortic endothelial cells. By contrast, lncR-GAS5 knockdown promoted autophagy. Moreover, serine/arginine-rich splicing factor 10 (SRSF10) knockdown increased the LC3II/LC3I ratio and decreased the P62 level, thus enhancing the formation of autophagic vacuoles, autolysosomes, and autophagosomes. Mechanistically, lncR-GAS5 regulated the downstream splicing factor SRSF10 to impair autophagy in the endothelium, which was reversed by the knockdown of SRSF10. Further results revealed that overexpression of the lncR-GAS5-targeted gene miR-193-5p promoted autophagy and autophagic vacuole accumulation by repressing its direct target gene, SRSF10. Notably, miR-193-5p overexpression decreased plaque size and increased collagen content. Altogether, these findings demonstrate that lncR-GAS5 partially contributes to atherogenesis and plaque instability by impairing endothelial autophagy. In conclusion, lncR-GAS5 overexpression arrested endothelial autophagy through the miR-193-5p/SRSF10 signaling pathway. Thus, miR-193-5p/SRSF10 may serve as a novel treatment target for atherosclerosis.
Humans
;
Atherosclerosis/genetics*
;
Autophagy/genetics*
;
Cell Cycle Proteins/metabolism*
;
Endothelial Cells/metabolism*
;
Endothelium/metabolism*
;
MicroRNAs/metabolism*
;
Repressor Proteins/metabolism*
;
RNA Splicing Factors
;
Serine-Arginine Splicing Factors/genetics*
;
RNA, Long Noncoding/metabolism*
6.Specific Regulation of m6A by SRSF7 Promotes the Progression of Glioblastoma.
Yixian CUN ; Sanqi AN ; Haiqing ZHENG ; Jing LAN ; Wenfang CHEN ; Wanjun LUO ; Chengguo YAO ; Xincheng LI ; Xiang HUANG ; Xiang SUN ; Zehong WU ; Yameng HU ; Ziwen LI ; Shuxia ZHANG ; Geyan WU ; Meisongzhu YANG ; Miaoling TANG ; Ruyuan YU ; Xinyi LIAO ; Guicheng GAO ; Wei ZHAO ; Jinkai WANG ; Jun LI
Genomics, Proteomics & Bioinformatics 2023;21(4):707-728
Serine/arginine-rich splicing factor 7 (SRSF7), a known splicing factor, has been revealed to play oncogenic roles in multiple cancers. However, the mechanisms underlying its oncogenic roles have not been well addressed. Here, based on N6-methyladenosine (m6A) co-methylation network analysis across diverse cell lines, we find that the gene expression of SRSF7 is positively correlated with glioblastoma (GBM) cell-specific m6A methylation. We then indicate that SRSF7 is a novel m6A regulator, which specifically facilitates the m6A methylation near its binding sites on the mRNAs involved in cell proliferation and migration, through recruiting the methyltransferase complex. Moreover, SRSF7 promotes the proliferation and migration of GBM cells largely dependent on the presence of the m6A methyltransferase. The two m6A sites on the mRNA for PDZ-binding kinase (PBK) are regulated by SRSF7 and partially mediate the effects of SRSF7 in GBM cells through recognition by insulin-like growth factor 2 mRNA-binding protein 2 (IGF2BP2). Together, our discovery reveals a novel role of SRSF7 in regulating m6A and validates the presence and functional importance of temporal- and spatial-specific regulation of m6A mediated by RNA-binding proteins (RBPs).
Humans
;
Cell Line, Tumor
;
Cell Proliferation
;
Gene Expression Regulation, Neoplastic
;
Glioblastoma/genetics*
;
Methyltransferases/metabolism*
;
RNA Splicing Factors/metabolism*
;
RNA, Messenger/genetics*
;
RNA-Binding Proteins/metabolism*
;
Serine-Arginine Splicing Factors/metabolism*
;
RNA Methylation/genetics*
7.Mechanism of Cordyceps militaris against non-small cell lung cancer: based on serum metabolomics.
Ying-Ying LU ; Xiao HUANG ; Zi-Chen LUO ; Ming-Yuan QI ; Jin-Jun SHAN ; Wen ZHANG ; Liu-Qing DI
China Journal of Chinese Materia Medica 2022;47(18):5032-5039
This study investigated the potential mechanism of Cordyceps militaris(CM) against non-small cell lung cancer(NSCLC) based on serum untargeted metabolomics. Specifically, Balb/c nude mice were used to generate the human lung cancer A549 xenograft mouse model. The tumor volume, tumor weight, and tumor inhibition rate in mice in the model, cisplatin, Cordyceps(low-, medium-, and high-dose), and CM(low-, medium-, and high-dose) groups were compared to evaluate the influence of CM on lung cancer. Gas chromatography-mass spectrometry(GC-MS) was used for the analysis of mouse serum, SIMCA 13.0 for the compa-rison of metabolic profiles, and MetaboAnalyst 5.0 for the analysis of metabolic pathways. According to the pharmacodynamic data, the tumor volume and tumor weight of mice in high-dose CM group and cisplatin group decreased as compared with those in the model group(P<0.05 or P<0.01). The results of serum metabolomics showed that the metabolic profiles of the model group were significantly different from those of the high-dose CM group, and the content of endogenous metabolites was adjusted to different degrees. A total of 42 differential metabolites and 7 differential metabolic pathways were identified. In conclusion, CM could significantly inhibit the tumor growth of lung cancer xenograft mice. The mechanism is the likelihood that it influences the aminoacyl-tRNA biosynthesis, the metabolism of D-glutamine and D-glutamate, metabolism of alanine, aspartate, and glutamate, metabolism of glyoxylate and dicarboxylic acid, biosynthesis of phenylalanine, tyrosine, and tryptophan, arginine biosynthesis as well as nitrogen metabolism. This study elucidated the underlying mechanism of CM against NSCLC from the point of metabolites. The results would lay a foundation for the anticancer research and clinical application of CM.
Alanine/metabolism*
;
Animals
;
Arginine/metabolism*
;
Aspartic Acid
;
Carcinoma, Non-Small-Cell Lung/drug therapy*
;
Cisplatin/pharmacology*
;
Cordyceps
;
Glutamic Acid
;
Glutamine
;
Glyoxylates/metabolism*
;
Humans
;
Lung Neoplasms/drug therapy*
;
Metabolomics/methods*
;
Mice
;
Mice, Nude
;
Nitrogen/metabolism*
;
Phenylalanine/metabolism*
;
RNA, Transfer/metabolism*
;
Tryptophan/metabolism*
;
Tyrosine/metabolism*
8.Mechanism of emodin in relieving neuropathic pain by regulating serum metabolism.
Peng CHEN ; Chen WANG ; Rui-Xi LUO ; Zhi-Bing WU ; Dong-Bin XIA
China Journal of Chinese Materia Medica 2022;47(8):2187-2194
The present study investigated the effect of emodin on the serum metabolite profiles in the chronic constriction injury(CCI) model by non-target metabolomics and explored its analgesic mechanism. Twenty-four Sprague Dawley(SD) rats were randomly divided into a sham group(S), a CCI group(C), and an emodin group(E). The rats in the emodin group were taken emodin via gavage once a day for fifteen days(50 mg·kg~(-1)) on the first day after the CCI surgery. Mechanical withdrawal threshold(MWT) and thermal withdrawal threshold(TWL) in each group were performed before the CCI surgery and 3,7, 11, and 15 days after surgery. After 15 days, blood samples were collected from the abdominal aorta. The differential metabolites were screened out by non-target metabolomics and analyzed with Kyoto Encyclopedia of Genes and Genomes(KEGG) and ingenuity pathway analysis(IPA). From the third day after CCI surgery, the MWT and TWL values were reduced significantly in both CCI group and emodin group, compared with the sham group(P<0.01). At 15 days post-surgery, the MWT and TWL values in emodin group increased significantly compared with the CCI group(P<0.05). As revealed by non-target metabolomics, 72 differential serum metabolites were screened out from the C-S comparison, including 41 up-regulated and 31 down-regulated ones, while 26 differential serum metabolites from E-C comparison, including 10 up-regulated and 16 down-regulated ones. KEGG analysis showed that the differential metabolites in E-C comparison were enriched in the signaling pathways, such as sphingolipid metabolism, arginine biosynthesis, glycerophospholipid metabolism, and tryptophan metabolism. IPA showed that the differential metabolites were mainly involved in the lipid metabolism-molecular transport-small molecule biochemistry network. In conclusion, emodin can exert an analgesic role via regulating sphingolipid metabolism and arginine biosynthesis.
Analgesics/pharmacology*
;
Animals
;
Arginine
;
Emodin/pharmacology*
;
Neuralgia/metabolism*
;
Rats
;
Rats, Sprague-Dawley
;
Sphingolipids
9.Effect of PADI4 on the Expression of Inflammatory Cytokines During NB4 Cells Differentiation.
Qing-Wei GUO ; Fu LI ; Li SONG ; Ya-Ping WANG ; Xiao-Mei YANG
Journal of Experimental Hematology 2021;29(4):1065-1070
OBJECTIVE:
To investigate the expression of peptidylarginine deiminase 4 (PADI4) during the process of differentiation into granulocyte of NB4 cells induced by all-trans-retinoic acid (ATRA) and whether PADI4 is involved in the inflammatory cytokines expression.
METHODS:
Granulocyte differentiation model of NB4 cells induced by ATRA was established. The cell morphology changes were observed by Wright-Giemsa staining. The expression of cell differentiation marker CD11b was analyzed by flow cytometry. The mRNA and protein expression of PADI4 was detected by RT-PCR and Western blot, respectively. The expression of tumor necrosis factor (TNF) α and interleukin (IL) 1β was analyzed by ELISA, and also examined with the knockdown of PADI4 expression by siRNA.
RESULTS:
After NB4 cells induced by ATRA, the cytoplasm increased and the ratio of nuclear to cytoplasmic was reduced. Nuclear dented, and rod-shaped nucleus, lobulated phenomenon increased (P<0.05). Flow cytometry analysis results showed that the cell surface molecule CD11b expression increased (P<0.01). RT-PCR and Western blot showed the expression of PADI4 increased at both transcriptional and translational levels during the process of the differentiation. ELISA showed TNF-α and IL-1β secretion increased in differentiated macrophages, while they could be inhibited by PADI4-specific siRNA.
CONCLUSION
During the differentiation into granulocyte of NB4 cells induced by ATRA, PADI4 expression increased. Furthermore, PADI4 appeared to play a critical role in inflammatory cytokines secretion.
Cell Differentiation
;
Cell Line, Tumor
;
Cytokines/metabolism*
;
Granulocytes
;
Humans
;
Leukemia, Promyelocytic, Acute
;
Protein-Arginine Deiminase Type 4/metabolism*
;
Tretinoin/pharmacology*
10.Arginine metabolism: a potential target in pancreatic cancer therapy.
Jin-Shou YANG ; Cheng-Cheng WANG ; Jiang-Dong QIU ; Bo REN ; Lei YOU
Chinese Medical Journal 2020;134(1):28-37
Pancreatic ductal adenocarcinoma (PDAC) is an extremely malignant disease, which has an extremely low survival rate of <9% in the United States. As a new hallmark of cancer, metabolism reprogramming exerts crucial impacts on PDAC development and progression. Notably, arginine metabolism is altered in PDAC cells and participates in vital signaling pathways. In addition, arginine and its metabolites including polyamine, creatine, agmatine, and nitric oxide regulate the proliferation, growth, autophagy, apoptosis, and metastasis of cancer cells. Due to the loss of argininosuccinate synthetase 1 (ASS1) expression, the key enzyme in arginine biosynthesis, arginine deprivation is regarded as a potential strategy for PDAC therapy. However, drug resistance develops during arginine depletion treatment, along with the re-expression of ASS1, metabolic dysfunction, and the appearance of anti-drug antibody. Additionally, arginase 1 exerts crucial roles in myeloid-derived suppressor cells, indicating its potential targeting by cancer immunotherapy. In this review, we introduce arginine metabolism and its impacts on PDAC cells. Also, we discuss the role of arginine metabolism in arginine deprivation therapy and immunotherapy for cancer.
Arginine/metabolism*
;
Argininosuccinate Synthase
;
Carcinoma, Pancreatic Ductal/drug therapy*
;
Cell Line, Tumor
;
Humans
;
Pancreatic Neoplasms/drug therapy*

Result Analysis
Print
Save
E-mail