1.Janus kinase 3 facilitates the migration of breast cancer cells by store-operated calcium channel.
Xia LIU ; Ting WEI ; Zhao-Di GAO ; Xiu-Liang ZHAO ; Hui-Qing WU ; Jing YAN
Acta Physiologica Sinica 2019;71(6):874-882
The present study was aimed to investigate the effect of Janus kinase 3 (JAK3) on the migration of breast cancer cells and the underlying mechanism. The expression of JAK3 in breast cancer MCF-7 cells was silenced by siRNA (siJAK3). The migration ability of MCF-7 cells was detected by scratch test. The activity of store-operated calcium channel (SOCC) was detected by fluorescence calcium imaging. The expression levels of Orai1 and STIM1, key molecules in the process of store-operated calcium entry (SOCE) were detected by Western blot and RT-PCR. The results showed that 2-APB, an inhibitor of SOCC, could inhibit the migration ability of MCF-7 cells. siJAK3 transfection significantly inhibited the migration ability of MCF-7 cells, decreased the activity of SOCC, and down-regulated mRNA and protein expression levels of Orai1 and Stim1. Over-expression of Orai1 or STIM1 in JAK3-silenced cells restored their migration ability. These results suggest that JAK3 facilitates the migration of breast cancer cells by SOCC.
Breast Neoplasms
;
enzymology
;
Calcium
;
metabolism
;
Calcium Channels
;
metabolism
;
Cell Movement
;
physiology
;
Gene Expression Regulation, Neoplastic
;
Humans
;
Janus Kinase 3
;
genetics
;
metabolism
;
MCF-7 Cells
;
ORAI1 Protein
;
genetics
2.Calcium Receptor and Nitric Oxide Synthase Expression in Circular Muscle of Lower Esophagus from Patients with Achalasia.
Yang GAO ; Jun-Feng LIU ; Xin HE ; Xin-Bo LIU ; Ling-Ling ZHANG ; Lian-Mei ZHAO ; Chao ZHANG
Chinese Medical Journal 2018;131(23):2882-2885
Calcium Channels, L-Type
;
genetics
;
metabolism
;
Esophageal Achalasia
;
genetics
;
metabolism
;
Esophagus
;
metabolism
;
Humans
;
Nitric Oxide Synthase
;
metabolism
;
Nitric Oxide Synthase Type I
;
genetics
;
metabolism
;
RNA, Messenger
;
metabolism
;
Real-Time Polymerase Chain Reaction
;
Receptors, Calcium-Sensing
;
genetics
;
metabolism
3.ASIC1a contributes to the symptom of pain in a rat model of chronic prostatitis.
Song FAN ; Zong-Yao HAO ; Li ZHANG ; Jun ZHOU ; Yi-Fei ZHANG ; Shen TAI ; Xian-Sheng ZHANG ; Chao-Zhao LIANG
Asian Journal of Andrology 2018;20(3):300-305
This study aims to validate our hypothesis that acid-sensing ion channels (ASICs) may contribute to the symptom of pain in patients with chronic prostatitis (CP). We first established a CP rat model, then isolated the L5-S2 spinal dorsal horn neurons for further studies. ASIC1a was knocked down and its effects on the expression of neurogenic inflammation-related factors in the dorsal horn neurons of rat spinal cord were evaluated. The effect of ASIC1a on the Ca2+ ion concentration in the dorsal horn neurons of rat spinal cord was measured by the intracellular calcium ([Ca2+]i) intensity. The effect of ASIC1a on the p38/mitogen-activated protein kinase (MAPK) signaling pathway was also determined. ASIC1a was significantly upregulated in the CP rat model as compared with control rats. Acid-induced ASIC1a expression increased [Ca2+]i intensity in the dorsal horn neurons of rat spinal cord. ASIC1a also increased the levels of neurogenic inflammation-related factors and p-p38 expression in the acid-treated dorsal horn neurons. Notably, ASIC1a knockdown significantly decreased the expression of pro-inflammatory cytokines. Furthermore, the levels of p-p38 and pro-inflammatory cytokines in acid-treated dorsal horn neurons were significantly decreased in the presence of PcTx-1, BAPTA-AM, or SB203580. Our results showed that ASIC1a may contribute to the symptom of pain in patients with CP, at least partially, by regulating the p38/MAPK signaling pathway.
Acid Sensing Ion Channel Blockers/pharmacology*
;
Acid Sensing Ion Channels/genetics*
;
Animals
;
Calcium/metabolism*
;
Chelating Agents/pharmacology*
;
Chronic Disease
;
Cytokines/metabolism*
;
Disease Models, Animal
;
Egtazic Acid/pharmacology*
;
Gene Knockdown Techniques
;
Imidazoles/pharmacology*
;
Inflammation/metabolism*
;
MAP Kinase Signaling System/genetics*
;
Male
;
Pain/genetics*
;
Peptides/pharmacology*
;
Phosphorylation/drug effects*
;
Posterior Horn Cells/metabolism*
;
Prostatitis/complications*
;
Protein Kinase Inhibitors/pharmacology*
;
Pyridines/pharmacology*
;
Rats
;
Spider Venoms/pharmacology*
;
Up-Regulation
;
p38 Mitogen-Activated Protein Kinases/metabolism*
4.Cryo-EM structures of the mammalian endo-lysosomal TRPML1 channel elucidate the combined regulation mechanism.
Sensen ZHANG ; Ningning LI ; Wenwen ZENG ; Ning GAO ; Maojun YANG
Protein & Cell 2017;8(11):834-847
TRPML1 channel is a non-selective group-2 transient receptor potential (TRP) channel with Ca permeability. Located mainly in late endosome and lysosome of all mammalian cell types, TRPML1 is indispensable in the processes of endocytosis, membrane trafficking, and lysosome biogenesis. Mutations of TRPML1 cause a severe lysosomal storage disorder called mucolipidosis type IV (MLIV). In the present study, we determined the cryo-electron microscopy (cryo-EM) structures of Mus musculus TRPML1 (mTRPML1) in lipid nanodiscs and Amphipols. Two distinct states of mTRPML1 in Amphipols are added to the closed state, on which could represent two different confirmations upon activation and regulation. The polycystin-mucolipin domain (PMD) may sense the luminal/extracellular stimuli and undergo a "move upward" motion during endocytosis, thus triggering the overall conformational change in TRPML1. Based on the structural comparisons, we propose TRPML1 is regulated by pH, Ca, and phosphoinositides in a combined manner so as to accommodate the dynamic endocytosis process.
Animals
;
Calcium
;
metabolism
;
Cryoelectron Microscopy
;
Endocytosis
;
Endosomes
;
metabolism
;
Gene Expression
;
HEK293 Cells
;
Humans
;
Hydrogen-Ion Concentration
;
Lysosomes
;
metabolism
;
Mice
;
Models, Biological
;
Mucolipidoses
;
genetics
;
metabolism
;
pathology
;
Nanostructures
;
chemistry
;
ultrastructure
;
Phosphatidylinositols
;
metabolism
;
Transgenes
;
Transient Receptor Potential Channels
;
chemistry
;
genetics
;
metabolism
5.Structure-based assessment of disease-related mutations in human voltage-gated sodium channels.
Weiyun HUANG ; Minhao LIU ; S Frank YAN ; Nieng YAN
Protein & Cell 2017;8(6):401-438
Voltage-gated sodium (Na) channels are essential for the rapid upstroke of action potentials and the propagation of electrical signals in nerves and muscles. Defects of Na channels are associated with a variety of channelopathies. More than 1000 disease-related mutations have been identified in Na channels, with Na1.1 and Na1.5 each harboring more than 400 mutations. Na channels represent major targets for a wide array of neurotoxins and drugs. Atomic structures of Na channels are required to understand their function and disease mechanisms. The recently determined atomic structure of the rabbit voltage-gated calcium (Ca) channel Ca1.1 provides a template for homology-based structural modeling of the evolutionarily related Na channels. In this Resource article, we summarized all the reported disease-related mutations in human Na channels, generated a homologous model of human Na1.7, and structurally mapped disease-associated mutations. Before the determination of structures of human Na channels, the analysis presented here serves as the base framework for mechanistic investigation of Na channelopathies and for potential structure-based drug discovery.
Animals
;
Calcium Channels, L-Type
;
chemistry
;
genetics
;
metabolism
;
Channelopathies
;
genetics
;
metabolism
;
Humans
;
Mutation
;
NAV1.1 Voltage-Gated Sodium Channel
;
chemistry
;
genetics
;
metabolism
;
NAV1.5 Voltage-Gated Sodium Channel
;
chemistry
;
genetics
;
metabolism
;
NAV1.7 Voltage-Gated Sodium Channel
;
chemistry
;
genetics
;
metabolism
;
Protein Domains
;
Rabbits
;
Structure-Activity Relationship
6.Gingerol activates noxious cold ion channel TRPA1 in gastrointestinal tract.
Meng-Qi YANG ; Lin-Lan YE ; Xiao-Ling LIU ; Xiao-Ming QI ; Jia-Di LV ; Gang WANG ; Ulah-Khan FARHAN ; Nawaz WAQAS ; Ding-Ding CHEN ; Lei HAN ; Xiao-Hui ZHOU
Chinese Journal of Natural Medicines (English Ed.) 2016;14(6):434-440
TRPA1 channels are non-selective cation channels that could be activated by plant-derived pungent products, including gingerol, a main active constituent of ginger. Ginger could improve the digestive function; however whether ginger improves the digestive function through activating TRPA1 receptor in gastrointestinal tract has not been investigated. In the present study, gingerol was used to stimulate cell lines (RIN14B or STC-1) while depletion of extracellular calcium. TRPA1 inhibitor (rethenium red) and TRPA1 gene silencing via TRPA1-specific siRNA were also used for mechanistic studies. The intracellular calcium and secretion of serotonin or cholecystokinin were measured by fura-2/AM and ELISA. Stimulation of those cells with gingerol increased intracellular calcium levels and the serotonin or cholecystokinin secretion. The gingerol-induced intracellular calcium increase and secretion (serotonin or cholecystokinin) release were completely blocked by ruthenium red, EGTA, and TRPA1-specific siRNA. In summary, our results suggested that gingerol derived from ginger might improve the digestive function through secretion releasing from endocrine cells of the gut by inducing TRPA1-mediated calcium influx.
Calcium
;
metabolism
;
Calcium Channels
;
genetics
;
metabolism
;
Catechols
;
pharmacology
;
Cell Line
;
Fatty Alcohols
;
pharmacology
;
Gastrointestinal Tract
;
drug effects
;
metabolism
;
Ginger
;
chemistry
;
Humans
;
Nerve Tissue Proteins
;
genetics
;
metabolism
;
Plant Extracts
;
pharmacology
;
TRPA1 Cation Channel
;
Transient Receptor Potential Channels
;
genetics
;
metabolism
7.Elucidating hypoglycemic mechanism of Dendrobium nobile through auxiliary elucidation system for traditional Chinese medicine mechanism.
Man-man LI ; Bai-xia ZHANG ; Shuai-bing HE ; Rao ZHENG ; Yan-ling ZHANG ; Yun WANG
China Journal of Chinese Materia Medica 2015;40(19):3709-3712
To build the Dendrobium nobile -T2DM network, and elucidate the molecular mechanism of D. nobile to type 2 diabetes (T2DM). Collect the chemical composition of D. nobile and the targets on T2DM by retrieving database and documents, build the network of D. nobile to T2DM using the entity grammar systems inference rules. The molecular mechanism of D. nobile to T2DM includes: (1) regulating lipid metabolism by lowering triglyceride; (2) reducing insulin resistance; (3) protecting islet cells; (4) promoting the glucose-dependent insulin tropic peptide (GIP) secretion; (5) inhibiting calcium channel. Under the guidance of network pharmacology, through entity grammar systems inference rules we elucidate the molecular mechanism of D. nobile to T2DM, and provide the basis for the further development of health care products based on D. nobile.
Animals
;
Calcium Channels
;
genetics
;
metabolism
;
Databases, Factual
;
Dendrobium
;
chemistry
;
Diabetes Mellitus, Type 2
;
drug therapy
;
genetics
;
metabolism
;
Drugs, Chinese Herbal
;
administration & dosage
;
chemistry
;
Gene Regulatory Networks
;
drug effects
;
Humans
;
Hypoglycemic Agents
;
administration & dosage
;
chemistry
;
Insulin Resistance
;
Islets of Langerhans
;
metabolism
;
Triglycerides
;
metabolism
8.Discovering L-type calcium channels inhibitors of antihypertensive drugs based on drug repositioning.
Ying-xi LIANG ; Yu-su HE ; Lu-di JIANG ; Qiao-xin YUE ; Shuai CUI ; Li BIN ; Xiao-tong YE ; Xiao-hua ZHANG ; Yang-ling ZHANG
China Journal of Chinese Materia Medica 2015;40(18):3650-3654
This study was amid to construct the pharmacophore model of L-type calcium channel antagonist in the application of screening Drugbank and TCMD. This paper repositions the approved drugs resulting from virtual screening and discusses the relocation-based drug discovery methods, screening antihypertensive drugs with L-type calcium channel function from TCMD. Qualitative hypotheses wre generated by HipHop separately on the basis of 12 compounds with antagonistic action on L-type calcium channel expressed in rabbit cardiac muscle. Datebase searching method was used to evaluate the generated hypotheses. The optimum hypothesis was used to search Drugbank and TCMD. This paper repositions the approved drugs and evaluates the antihypertensive effect of the chemical constituent of traditional Chinese medicine resulting from virtual screening by the matching score and literature. The results showed that optimum qualitative hypothesis is with six features, which were two hydrogen-bond acceptors, four hydrophobic groups, and the CAI value of 2.78. Screening Drugbank achieves 93 approved drugs. Screening TCMD achieves 285 chemical constituents of traditional Chinese medicine. It was concluded that the hypothesis is reliable and can be used to screen datebase. The approved drugs resulting from virtual screening, such as pravastatin, are potentially L-type calcium channels inhibitors. The chemical constituents of traditional Chinese medicine, such as Arctigenin III and Arctigenin are potentially antihypertensive drugs. It indicates that Drug Repositioning based on hypothesis is possible.
Animals
;
Antihypertensive Agents
;
chemistry
;
pharmacology
;
Calcium Channel Blockers
;
chemistry
;
pharmacology
;
Calcium Channels, L-Type
;
genetics
;
metabolism
;
Drug Repositioning
;
methods
;
Molecular Structure
;
Myocardium
;
metabolism
;
Rabbits
9.Downregulation of Orai1 expression in the airway alleviates murine allergic rhinitis.
Yi WANG ; Lin LIN ; Chunquan ZHENG
Experimental & Molecular Medicine 2012;44(3):177-190
Orai1 is the key subunit of the Ca2+-release-activated Ca2+ channel. Our previous report has demonstrated that Orai1 expression in the airway was upregulated in the ovalbumin (OVA)-induced allergic rhinitis (AR) mouse models. To observe whether inhibition of Orai1 expression in the airway could suppress symptoms in a murine model of AR and to assess the impacts of this inhibition on the responses of local and systemic immunocytes, we administered recombinant lentivirus vectors that encoded shRNA against ORAI1 (lenti-ORAI1) into the nostrils of OVA-sensitized mice before the challenges, and analyzed its effect on allergic responses, as compared with the unsensitized mice and untreated AR mice. Administration of lenti-ORAI1 into the nasal cavity successfully infected cells in the epithelial layer of the nasal mucosa, and significantly decreased the frequencies of sneezing and nasal rubbing of the mice. Protein levels of leukotriene C4, OVA-specific IgE, and IL-4 in the nasal lavage fluid and serum and eosinophil cation protein in the serum were also significantly reduced by lenti-ORAI1, as were the mRNA levels of these factors in the nasal mucosa and spleen. These data suggested that administration of lenti-ORAI1 into the nasal cavity effectively decreased Orai1 expression in the nasal mucosa, alleviated AR symptoms, and partially inhibited the hyperresponsiveness of the local and systemic immune cells including T cells, B cells, mast cells and eosinophils that are involved in the pathogenesis of AR.
Animals
;
Calcium Channels/analysis/*genetics/immunology
;
*Down-Regulation
;
Eosinophil Cationic Protein/blood/genetics
;
Glutathione Transferase/blood/genetics/immunology
;
Immunoglobulin E/blood/genetics/immunology
;
Interleukin-4/blood/genetics/immunology
;
Lentivirus/genetics
;
Mice
;
Mice, Inbred BALB C
;
Nasal Mucosa/immunology/metabolism
;
Ovalbumin/immunology
;
RNA, Messenger/genetics
;
RNA, Small Interfering/*administration & dosage/genetics
;
Rhinitis, Allergic, Perennial/*genetics/immunology
;
Spleen/immunology/metabolism
;
*Transfection
10.Effect of CCH1 or MID1 gene disruption on drug tolerance and pathogenesis of Candida albicans.
Hui WANG ; Guangqing LU ; Baopeng YANG ; Fan WANG ; Qilin YU ; Ning XU ; Xinxin CHENG ; Laijun XING ; Mingchun LI
Chinese Journal of Biotechnology 2012;28(6):726-736
The calcium gate encoded by CCH1 and MID1 genes is the main channel for external calcium absorption. As one of the important secondary messengers, the elevation of calcium concentration could activate some pathways to take part in various cell processes. In this study, we used CCH1 and MID1 mutant strains and also constructed their complementary strains to study the effect of drug tolerance and virulence of Candida albicans after CCH1 or MID1 deletion. By drug plate sensitivity assay and the broth microdilution method, we compared the changes between different strains. Moreover, we added calcium channel blocker and inhibitors to analyze the effect of calcium concentration on drug action. After the deletion of CCH1 or MID1 gene, the strain exhibited an obvious sensitivity to FLUC and ITRA, and the drug action was regulated by the calcium concentration. In a mouse model of intravenous infection, we found that attenuated virulence of cch1delta/delta or mid1delta/delta strain is specifically due to a loss of CCH1 or MID1 gene.
Animals
;
Calcineurin
;
genetics
;
metabolism
;
Calcium
;
metabolism
;
Calcium Channels
;
metabolism
;
Candida albicans
;
drug effects
;
genetics
;
pathogenicity
;
Candidiasis
;
microbiology
;
Drug Resistance, Fungal
;
genetics
;
Female
;
Fungal Proteins
;
genetics
;
metabolism
;
Gene Deletion
;
Mice
;
Mice, Inbred ICR
;
Virulence

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