1.Research progress on structure, function and disease correlation of solute carrier family 4.
Jing DONG ; Jing-Wen ZHONG ; Ya-Li XU ; Yu MA ; Xiao-Hong DUAN
Acta Physiologica Sinica 2023;75(1):137-150
The solute carrier family 4 (SLC4) includes 10 members (SLC4A1-5, SLC4A7-11), which are expressed in multiple tissues in the human body. The SLC4 family members differ in their substrate dependence, charge transport stoichiometry and tissue expression. Their common function is responsible for the transmembrane exchange of multiple ions, which is involved in many important physiological processes, such as erythrocyte CO2 transport and the regulation of cell volume and intracellular pH. In recent years, many studies have focused on the role of SLC4 family members in the occurrence of human diseases. When SLC4 family members have gene mutations, a series of functional disorders will occur in the body, leading to the occurrence of some diseases. This review summarizes the recent progress about the structures, functions and disease correlation of SLC4 members, in order to provide clues for the prevention and treatment of related human diseases.
Humans
;
Mutation
;
SLC4A Proteins/physiology*
2.Novel biallelic loss-of-function mutations in
Ihsan KHAN ; Basit SHAH ; Sobia DIL ; Nadeem ULLAH ; Jian-Teng ZHOU ; Da-Ren ZHAO ; Yuan-Wei ZHANG ; Xiao-Hua JIANG ; Ranjha KHAN ; Asad KHAN ; Haider ALI ; Muhammad ZUBAIR ; Wasim SHAH ; Huan ZHANG ; Qing-Hua SHI
Asian Journal of Andrology 2021;23(6):627-632
Multiple morphological abnormalities of the sperm flagella (MMAF) is a specific type of asthenoteratozoospermia, presenting with multiple morphological anomalies in spermatozoa, such as absent, bent, coiled, short, or irregular caliber flagella. Previous genetic studies revealed pathogenic mutations in genes encoding cilia and flagella-associated proteins (CFAPs; e.g., CFAP43, CFAP44, CFAP65, CFAP69, CFAP70, and CFAP251) responsible for the MMAF phenotype in infertile men from different ethnic groups. However, none of them have been identified in infertile Pakistani males with MMAF. In the current study, two Pakistani families with MMAF patients were recruited. Whole-exome sequencing (WES) of patients and their parents was performed. WES analysis reflected novel biallelic loss-of-function mutations in CFAP43 in both families (Family 1: ENST00000357060.3, p.Arg300Lysfs*22 and p.Thr526Serfs*43 in a compound heterozygous state; Family 2: ENST00000357060.3, p.Thr526Serfs*43 in a homozygous state). Sanger sequencing further confirmed that these mutations were segregated recessively in the families with the MMAF phenotype. Semiquantitative reverse-transcriptase polymerase chain reaction (qRT-PCR) was carried out to detect the effect of the mutation on mRNA of the affected gene. Previous research demonstrated that biallelic loss-of-function mutations in CFAP43 accounted for the majority of all CFAP43-mutant MMAF patients. To the best of our knowledge, this is the first study to report CFAP43 biallelic loss-of-function mutations in a Pakistani population with the MMAF phenotype. This study will help researchers and clinicians to understand the genetic etiology of MMAF better.
Adolescent
;
Adult
;
Humans
;
Infertility, Male/epidemiology*
;
Loss of Function Mutation/genetics*
;
Male
;
Microtubule Proteins/genetics*
;
Middle Aged
;
Pakistan/epidemiology*
;
Sperm Tail/physiology*
3.Chinese Medicine in Fighting against Covid-19: Role and Inspiration.
Chinese journal of integrative medicine 2021;27(1):3-6
Covid-19 pandemic has caused hundreds of thousands deaths and millions of infections and continued spreading violently. Although researchers are racing to find or develop effective drugs or vaccines, no drugs from modern medical system have been proven effective and the high mutant rates of the virus may lead it resistant to whatever drugs or vaccines developed following modern drug development procedure. Current evidence has demonstrated impressive healing effects of several Chinese medicines (CMs) for Covid-19, which urges us to reflect on the role of CM in the era of modern medicine. Undoubtedly, CM could be promising resources for developing drug candidates for the treatment of Covid-19 in a way similar to the development of artemisinin. But the theory that builds CM, like the emphasis of driving away exogenous pathogen (virus, etc.) by restoring self-healing capacity rather than killing the pathogen directly from the inside and the 'black-box' mode of diagnosing and treating patients, is as important, yet often ignored, an treasure as CM herbs and should be incorporated into modern medicine for future advancement and innovation of medical science.
Antiviral Agents/therapeutic use*
;
COVID-19/therapy*
;
Disease Outbreaks
;
Drug Development/standards*
;
Drug Resistance, Viral/genetics*
;
Drug Therapy, Combination
;
Drugs, Chinese Herbal/therapeutic use*
;
Humans
;
Medicine, Chinese Traditional/trends*
;
Mutation Rate
;
Pandemics
;
Phytotherapy/methods*
;
SARS-CoV-2/physiology*
4.Mouse-adapted SARS-CoV-2 replicates efficiently in the upper and lower respiratory tract of BALB/c and C57BL/6J mice.
Jinliang WANG ; Lei SHUAI ; Chong WANG ; Renqiang LIU ; Xijun HE ; Xianfeng ZHANG ; Ziruo SUN ; Dan SHAN ; Jinying GE ; Xijun WANG ; Ronghong HUA ; Gongxun ZHONG ; Zhiyuan WEN ; Zhigao BU
Protein & Cell 2020;11(10):776-782
Adaptation, Physiological
;
Adenosine Monophosphate
;
administration & dosage
;
analogs & derivatives
;
pharmacology
;
therapeutic use
;
Administration, Intranasal
;
Alanine
;
administration & dosage
;
analogs & derivatives
;
pharmacology
;
therapeutic use
;
Animals
;
Betacoronavirus
;
genetics
;
physiology
;
Chlorocebus aethiops
;
Coronavirus Infections
;
drug therapy
;
virology
;
Disease Models, Animal
;
Female
;
Host Specificity
;
genetics
;
Lung
;
pathology
;
virology
;
Male
;
Mice
;
Mice, Inbred BALB C
;
Mice, Inbred C57BL
;
Mutation, Missense
;
Nasal Mucosa
;
virology
;
Pandemics
;
Pneumonia, Viral
;
drug therapy
;
virology
;
RNA, Viral
;
administration & dosage
;
genetics
;
Turbinates
;
virology
;
Vero Cells
;
Viral Load
;
Virus Replication
5.Structure and function of B-cell linker and its role in the development of B cell-related diseases.
Bin XIAO ; Jiaying LI ; Mengsi ZHOU ; Xiaoqing LI ; Xiaoyan HUANG ; Jianfeng HANG ; Zhaohui SUN ; Linhai LI
Journal of Southern Medical University 2019;39(2):253-256
B cell linker (BLNK) is a key linker protein of B cell receptor (BCR) signaling pathway. BLNK participates in the regulation of PLC-γactivity and the activation of Ras pathway through its typical structure and interaction network with other proteins, and is thus widely involved in the regulation of B cell proliferation, differentiation, apoptosis and signal transduction. Furthermore, it is closely related to anaphylactic diseases, multiple sclerosis, chromosomal aneuploidy, aneuglobulinemia, B lymphocytic leukemia and lymphoma. Herein we review the structure and biological function of BLNK and its role in B cell-related diseases. BLNK can cooperate with a series of effective proteins to activate BCR signaling pathway, thereby regulating the development, maturation and function of B cells. The functional mutation of BLNK can destroy the homeostasis of B cells and affect the development and maturation of B cells, which leads to the occurrence of B cell related diseases. A comprehensive understanding of the biological functions of BLNK not only provides insights into the pathogenesis of B cell-related diseases, but also inspires new ideas and helps to find breakthroughs for the treatment of these diseases with BLNK as the therapeutic target.
Adaptor Proteins, Signal Transducing
;
chemistry
;
genetics
;
physiology
;
Apoptosis
;
B-Lymphocytes
;
cytology
;
physiology
;
Cell Differentiation
;
Cell Proliferation
;
Humans
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Mutation
;
Receptors, Antigen, B-Cell
;
chemistry
;
physiology
;
Signal Transduction
;
Structure-Activity Relationship
6.Presence of serum antinuclear antibodies correlating unfavorable overall survival in patients with chronic lymphocytic leukemia.
Qian SUN ; Li WANG ; Hua-Yuan ZHU ; Yi MIAO ; Wei WU ; Jin-Hua LIANG ; Lei CAO ; Yi XIA ; Jia-Zhu WU ; Yan WANG ; Rong WANG ; Lei FAN ; Wei XU ; Jian-Yong LI
Chinese Medical Journal 2019;132(5):525-533
BACKGROUND:
Serum antinuclear antibodies (ANAs) are positive in some patients with chronic lymphocytic leukemia (CLL), but the prognostic value of ANAs remains unknown. The aim of this study was to evaluate the role of ANAs as a prognostic factor in CLL.
METHODS:
This study retrospectively analyzed clinical data from 216 newly diagnosed CLL subjects with ANAs test from 2007 to 2017. Multivariate Cox regression analyses were used to screen the independent prognostic factors related to time to first treatment (TTFT), progression free survival (PFS) and overall survival (OS). Receiver operator characteristic curves and area under the curve (AUC) were utilized to assess the predictive accuracy of ANAs together with other independent factors for OS.
RESULTS:
The incidence of ANAs abnormality at diagnosis was 13.9%. ANAs positivity and TP53 disruption were independent prognostic indicators for OS. The AUC of positive ANAs together with TP53 disruption was 0.766 (95% confidence interval [CI]: 0.697-0.826), which was significantly larger than that of either TP53 disruption (AUC: 0.706, 95% CI: 0.634-0.772, P = 0.034) or positive ANAs (AUC: 0.595, 95% CI: 0.520-0.668, P < 0.001) in OS prediction. Besides, serum positive ANAs as one additional parameter to CLL-international prognostic index (IPI) obtained superior AUCs in predicting CLL OS than CLL-IPI alone.
CONCLUSION
This study identified ANAs as an independent prognostic factor for CLL, and further investigations are needed to validate this finding.
ADP-ribosyl Cyclase 1
;
blood
;
Adolescent
;
Adult
;
Aged
;
Aged, 80 and over
;
Antibodies, Antinuclear
;
blood
;
Autoimmunity
;
physiology
;
Female
;
Humans
;
Kaplan-Meier Estimate
;
Leukemia, Lymphocytic, Chronic, B-Cell
;
blood
;
mortality
;
Male
;
Middle Aged
;
Multivariate Analysis
;
Mutation
;
genetics
;
Proportional Hazards Models
;
Retrospective Studies
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Survival Analysis
;
Tumor Suppressor Protein p53
;
blood
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Young Adult
;
ZAP-70 Protein-Tyrosine Kinase
;
blood
7.Differential stem cell aging kinetics in Hutchinson-Gilford progeria syndrome and Werner syndrome.
Zeming WU ; Weiqi ZHANG ; Moshi SONG ; Wei WANG ; Gang WEI ; Wei LI ; Jinghui LEI ; Yu HUANG ; Yanmei SANG ; Piu CHAN ; Chang CHEN ; Jing QU ; Keiichiro SUZUKI ; Juan Carlos Izpisua BELMONTE ; Guang-Hui LIU
Protein & Cell 2018;9(4):333-350
Hutchinson-Gilford progeria syndrome (HGPS) and Werner syndrome (WS) are two of the best characterized human progeroid syndromes. HGPS is caused by a point mutation in lamin A (LMNA) gene, resulting in the production of a truncated protein product-progerin. WS is caused by mutations in WRN gene, encoding a loss-of-function RecQ DNA helicase. Here, by gene editing we created isogenic human embryonic stem cells (ESCs) with heterozygous (G608G/+) or homozygous (G608G/G608G) LMNA mutation and biallelic WRN knockout, for modeling HGPS and WS pathogenesis, respectively. While ESCs and endothelial cells (ECs) did not present any features of premature senescence, HGPS- and WS-mesenchymal stem cells (MSCs) showed aging-associated phenotypes with different kinetics. WS-MSCs had early-onset mild premature aging phenotypes while HGPS-MSCs exhibited late-onset acute premature aging characterisitcs. Taken together, our study compares and contrasts the distinct pathologies underpinning the two premature aging disorders, and provides reliable stem-cell based models to identify new therapeutic strategies for pathological and physiological aging.
Aging
;
genetics
;
physiology
;
DNA Helicases
;
genetics
;
Human Embryonic Stem Cells
;
metabolism
;
physiology
;
Humans
;
Kinetics
;
Lamin Type A
;
genetics
;
Mesenchymal Stem Cells
;
metabolism
;
physiology
;
Mutation
;
Progeria
;
genetics
;
physiopathology
;
Werner Syndrome
;
genetics
;
physiopathology
8.Taurine Transporter dEAAT2 is Required for Auditory Transduction in Drosophila.
Ying SUN ; Yanyan JIA ; Yifeng GUO ; Fangyi CHEN ; Zhiqiang YAN
Neuroscience Bulletin 2018;34(6):939-950
Drosophila dEAAT2, a member of the excitatory amino-acid transporter (EAAT) family, has been described as mediating the high-affinity transport of taurine, which is a free amino-acid abundant in both insects and mammals. However, the role of taurine and its transporter in hearing is not clear. Here, we report that dEAAT2 is required for the larval startle response to sound stimuli. dEAAT2 was found to be enriched in the distal region of chordotonal neurons where sound transduction occurs. The Ca imaging and electrophysiological results showed that disrupted dEAAT2 expression significantly reduced the response of chordotonal neurons to sound. More importantly, expressing dEAAT2 in the chordotonal neurons rescued these mutant phenotypes. Taken together, these findings indicate a critical role for Drosophila dEAAT2 in sound transduction by chordotonal neurons.
Acoustic Stimulation
;
Action Potentials
;
genetics
;
Animals
;
Animals, Genetically Modified
;
Auditory Pathways
;
physiology
;
Calcium
;
metabolism
;
Drosophila
;
genetics
;
Drosophila Proteins
;
genetics
;
metabolism
;
Excitatory Amino Acid Transporter 2
;
genetics
;
metabolism
;
Hearing
;
genetics
;
Larva
;
Luminescent Proteins
;
genetics
;
metabolism
;
Mutation
;
genetics
;
Nervous System
;
cytology
;
Neurons
;
metabolism
9.Mutant Huntingtin Causes a Selective Decrease in the Expression of Synaptic Vesicle Protein 2C.
Chaohua PENG ; Gaochun ZHU ; Xiangqian LIU ; He LI
Neuroscience Bulletin 2018;34(5):747-758
Huntington's disease (HD) is a neurodegenerative disease caused by a polyglutamine expansion in the huntingtin (Htt) protein. Mutant Htt causes synaptic transmission dysfunctions by interfering in the expression of synaptic proteins, leading to early HD symptoms. Synaptic vesicle proteins 2 (SV2s), a family of synaptic vesicle proteins including 3 members, SV2A, SV2B, and SV2C, plays important roles in synaptic physiology. Here, we investigated whether the expression of SV2s is affected by mutant Htt in the brains of HD transgenic (TG) mice and Neuro2a mouse neuroblastoma cells (N2a cells) expressing mutant Htt. Western blot analysis showed that the protein levels of SV2A and SV2B were not significantly changed in the brains of HD TG mice expressing mutant Htt with 82 glutamine repeats. However, in the TG mouse brain there was a dramatic decrease in the protein level of SV2C, which has a restricted distribution pattern in regions particularly vulnerable in HD. Immunostaining revealed that the immunoreactivity of SV2C was progressively weakened in the basal ganglia and hippocampus of TG mice. RT-PCR demonstrated that the mRNA level of SV2C progressively declined in the TG mouse brain without detectable changes in the mRNA levels of SV2A and SV2B, indicating that mutant Htt selectively inhibits the transcriptional expression of SV2C. Furthermore, we found that only SV2C expression was progressively inhibited in N2a cells expressing a mutant Htt containing 120 glutamine repeats. These findings suggest that the synaptic dysfunction in HD results from the mutant Htt-mediated inhibition of SV2C transcriptional expression. These data also imply that the restricted distribution and decreased expression of SV2C contribute to the brain region-selective pathology of HD.
Aging
;
metabolism
;
Animals
;
Brain
;
metabolism
;
pathology
;
Cell Line, Tumor
;
Gene Expression
;
physiology
;
Huntingtin Protein
;
genetics
;
metabolism
;
Membrane Glycoproteins
;
metabolism
;
Mice
;
Mice, Transgenic
;
Mutation
;
Nerve Tissue Proteins
;
metabolism
;
RNA, Messenger
;
metabolism
;
Transcription, Genetic
;
physiology
10.New Mutation of Coenzyme Q Monooxygenase 6 Causing Podocyte Injury in a Focal Segmental Glomerulosclerosis Patient.
Cheng-Cheng SONG ; Quan HONG ; Xiao-Dong GENG ; Xu WANG ; Shu-Qiang WANG ; Shao-Yuan CUI ; Man-Di GUO ; Ou LI ; Guang-Yan CAI ; Xiang-Mei CHEN ; Di WU
Chinese Medical Journal 2018;131(22):2666-2675
Background:
Focal segmental glomerulosclerosis (FSGS) is a kidney disease that is commonly associated with proteinuria and the progressive loss of renal function, which is characterized by podocyte injury and the depletion and collapse of glomerular capillary segments. The pathogenesis of FSGS has not been completely elucidated; however, recent advances in molecular genetics have provided increasing evidence that podocyte structural and functional disruption is central to FSGS pathogenesis. Here, we identified a patient with FSGS and aimed to characterize the pathogenic gene and verify its mechanism.
Methods:
Using next-generation sequencing and Sanger sequencing, we screened the causative gene that was linked to FSGS in this study. The patient's total blood RNA was extracted to validate the messenger RNA (mRNA) expression of coenzyme Q monooxygenase 6 (COQ6) and validated it by immunohistochemistry. COQ6 knockdown in podocytes was performed in vitro with small interfering RNA, and then, F-actin was determined using immunofluorescence staining. Cell apoptosis was evaluated by flow cytometry, the expression of active caspase-3 was determined by Western blot, and mitochondrial function was detected by MitoSOX.
Results:
Using whole-exome sequencing and Sanger sequencing, we screened a new causative gene, COQ6, NM_182480: exon1: c.G41A: p.W14X. The mRNA expression of COQ6 in the proband showed decreased. Moreover, the expression of COQ6, which was validated by immunohistochemistry, also had the same change in the proband. Finally, we focused on the COQ6 gene to clarify the mechanism of podocyte injury. Flow cytometry showed significantly increased in apoptotic podocytes, and Western blotting showed increases in active caspase-3 in si-COQ6 podocytes. Meanwhile, reactive oxygen species (ROS) levels were increased and F-actin immunofluorescence was irregularly distributed in the si-COQ6 group.
Conclusions
This study reported a possible mechanism for FSGS and suggested that a new mutation in COQ6, which could cause respiratory chain defect, increase the generation of ROS, destroy the podocyte cytoskeleton, and induce apoptosis. It provides basic theoretical basis for the screening of FSGS in the future.
Adolescent
;
Animals
;
Apoptosis
;
genetics
;
physiology
;
Cell Line
;
Female
;
Flow Cytometry
;
Glomerulosclerosis, Focal Segmental
;
genetics
;
Humans
;
Immunohistochemistry
;
Mice
;
Mutation
;
genetics
;
Podocytes
;
metabolism
;
pathology
;
RNA, Messenger
;
genetics
;
RNA, Small Interfering
;
genetics
;
metabolism
;
Ubiquinone
;
analogs & derivatives
;
genetics
;
metabolism

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