首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 62 毫秒
1.
跨膜蛋白63A(transmembrane protein 63,TMEM63A)是一种机械敏感性离子通道(mechanosensitive ion channel,MSC),在髓鞘形成过程中发挥重要作用。TMEM63A于2019年与髓鞘形成低下性脑白质营养不良19型(hypomyelinating leukodystrophy 19,HLD19)相关联,确定为HLD19的致病基因。髓鞘是神经系统中由少突胶质细胞形成的兼具营养轴突和加速动作电位传导的结构,髓鞘形成障碍可表现为髓鞘形成低下、髓鞘囊性化和髓鞘变性。髓鞘中脂质含量丰富,不同脂质参与髓鞘形成、修复和胶质细胞与轴突识别等重要过程。TMEM63A变异导致的HLD19为髓鞘形成低下性疾病。TMEM63A变异可引起渗透压改变,细胞上TMEM63A跨膜蛋白受机械刺激产生电流,从而影响少突胶质细胞分化、成熟,导致髓鞘形成异常;同时,TMEM63A变异也可引起细胞膜脂质的分布异常,影响脂质正常功能,异常的脂质通过参与不同的髓鞘形成环节最终导致了髓鞘形成障碍。  相似文献   

2.
自从1983年Barish在爪蟾卵母细胞中发现钙激活的Cl–通道以来,此种类型Cl–通道一直在被广泛的研究,其在不同组织中的重要作用也被不断报道。但是,钙激活氯电流的分子机制一直未被阐明。直到2008年,由三个实验室分别发现了构成钙激活Cl–通道的分子基础为跨膜蛋白16A(transmembrane protein 16A,TMEM16A),这一发现使得人为通过基因手段调控钙激活Cl–通道的功能与表达成为可能。该文综述了钙激活Cl–通道在不同组织中的作用、TMEM16A的电生理和药理学特性以及TMEM16A在心肌肥厚和心衰中的可能作用,以及以Cl–通道作为药物作用靶点的研究进展。  相似文献   

3.
钙激活氯通道(calcium-activated chloride channels,CaCCs)是一类在多种细胞中广泛表达的氯离子通道,介导一系列重要的生理功能。TMEM16A(transmembrane protein 16A)于2008年被确认为CaCCs的分子身份之一。TMEM16A在多种病理生理过程中发挥重要的作用,如卵母细胞多重受精、分泌上皮细胞的液体分泌、平滑肌收缩、神经元兴奋、膜电位调节、感官信号传导以及肿瘤的发生和细胞迁移。近年来,TMEM16A在病理生理学中的作用及其在疾病治疗中的药靶地位受到高度重视。本文对TMEM16A研究的最新进展进行综述。  相似文献   

4.
2010年科学家在小鼠神经瘤母细胞中筛选鉴定出Piezo1和Piezo2蛋白.Piezo2是一个由机械刺激直接激活且可将机械刺激转换为电信号进而形成机械敏感性电流通道的蛋白质.Piezo2自发现以来一直受到广泛的关注,在触觉、本体感觉、痛觉、肿瘤癌症等多种生理病理过程中发挥重要作用.本文在前期研究的基础上阐述了机械敏感...  相似文献   

5.
自从1983年Barish在爪蟾卵母细胞中发现钙激活的Cl^–通道以来,此种类型Cl^–通道一直在被广泛的研究,其在不同组织中的重要作用也被不断报道。但是,钙激活氯电流的分子机制一直未被阐明。直到2008年,由三个实验室分别发现了构成钙激活Cl^–通道的分子基础为跨膜蛋白16A(transmembrane protein 16A,TMEM16A),这一发现使得人为通过基因手段调控钙激活Cl^–通道的功能与表达成为可能。该文综述了钙激活Cl^–通道在不同组织中的作用、TMEM16A的电生理和药理学特性以及TMEM16A在心肌肥厚和心衰中的可能作用,以及以Cl^–通道作为药物作用靶点的研究进展。  相似文献   

6.
研究野生型苏云金芽孢杆菌Cry1Aa和Cry1C的毒性变化发现, 不同的pH不但影响这些蛋白质的毒性, 而且影响它们在跨膜过程中形成孔洞的能力. 将Cry1Aa α4螺旋中的15个氨基酸突变后与BBMV结合, 进行光散射分析, 与野生型Cry1Aa相比较, 发现有3个突变体几乎完全失去毒性, 7个突变体毒性明显降低, 5个突变体保持野生型毒性. 采用计算机模拟方法研究了苏云金芽孢杆菌Cry1Aa毒蛋白α4螺旋的三维空间结构, 通过观察15个不同残基定点突变对其功能的影响, 解释了突变体毒性变化的原因, 说明了参与膜孔洞形成氨基酸残基对Cry1Aa昆虫毒杀性的重要作用.  相似文献   

7.
植物水通道蛋白生理功能的研究进展   总被引:1,自引:0,他引:1  
自1992年第一个水通道蛋白AQP1被人们认识以来,从植物中分离得到了大量AQPs基因。AQPs在植物体内形成选择性运输水及一些小分子溶质和气体的膜通道,参与介导多个植物生长发育的生理活动,如细胞伸长、气孔运动、种子发育、开花繁殖和逆境胁迫等。就植物水通道蛋白的生理功能进行概述。  相似文献   

8.
《昆虫知识》2008,45(3):488
在从蠕虫到人类在内的很多生物中,嗅觉提示是由7种跨膜受体的大家族来探测的,这些受体此前一直被划分为G-蛋白耦合受体。然而,昆虫形成了非常简单而有效的嗅觉,在这种嗅觉中,气味受体需要第二个成分才能正确发挥功能,该成分便是“铁通道形成伴护蛋白Or83b”。Sato等人发现,这些  相似文献   

9.
跨膜蛋白16A:钙激活氯通道的最新进展   总被引:2,自引:0,他引:2  
钙激活氯离子通道(calcium-activated chloride channels,CaCCs)介导了众多生理过程,包括跨上皮离子与液体分泌、心肌和神经兴奋、感觉传导、平滑肌收缩和受精过程等,但目前对于其分子基础等重要问题尚未研究清楚.综述了最新报道的CaCCs分子基础跨膜蛋白16A(TMEM16A)的发现过程、基因结构和功能、离子通道电生理特性、相关病理与药理功能的一些热点问题,并展望了该研究领域的发展趋势.  相似文献   

10.
水通道蛋白(Aquaporin,AQP)是一类选择性高效转运水分子的细胞膜通道蛋白,广泛存在于原核和真核生物细胞的细胞膜上,主要介导自由水分子的被动跨膜转运,对保持细胞内外液环境的稳态平衡起着重要的作用.  相似文献   

11.
Osmoreception is essential for systemic osmoregulation, a process to stabilize the tonicity and volume of the extracellular fluid through regulating the ingestive behaviour, sympathetic outflow and renal function. The sensation of osmotic changes by osmoreceptor neurons is mediated by ion channels that detect the change of osmolarity in extracellular fluid. However, the molecular identity of these channels remains mysterious. AtCSC1and OSCA1,two closely related paralogues from Arabidopsis, have been demonstrated to form hyperosmolarity activated ion channels, which makes their mammalian orthologues—the members of TMEM63 proteins, possible candidates for osmoreceptor transduction channel. To test this possibility, we cloned the cDNAs of all the three members of the mouse TMEM63 family, TMEM63A, TMEM63B and TMEM63C from the mRNA from mouse brain. When all of the three subtypes of TMEM63 proteins were co‐expressed in HEK293 cells, we recorded membrane currents evoked by hypertonic stimulation in these cells. However, the cells expressing the combinations of any two subtypes of TMEM63 proteins could not exhibit any hyperosmolarity evoked currents. Thus, all the three members of TMEM63 proteins are required to constitute a hyperosmolarity activated ion channel. We propose that the TMEM63 proteins may serve as an osmolarity sensitive ion channel for the osmoreception. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

12.
Lung cancer has the highest mortality among cancers worldwide due to its high incidence and lack of the effective cures. We have previously demonstrated that the membrane ion channel TMEM16A is a potential drug target for the treatment of lung adenocarcinoma and have identified a pocket of inhibitor binding that provides the basis for screening promising new inhibitors. However, conventional drug discovery strategies are lengthy and costly, and the unpredictable side effects lead to a high failure rate in drug development. Therefore, finding new therapeutic directions for already marketed drugs may be a feasible strategy to obtain safe and effective therapeutic drugs. Here, we screened a library of over 1400 Food and Drug Administration–approved drugs through virtual screening and activity testing. We identified a drug candidate, Zafirlukast (ZAF), clinically approved for the treatment of asthma, that could inhibit the TMEM16A channel in a concentration-dependent manner. Molecular dynamics simulations and site-directed mutagenesis experiments showed that ZAF can bind to S387/N533/R535 in the nonselective inhibitor binding pocket, thereby blocking the channel pore. Furthermore, we demonstrate ZAF can target TMEM16A channel to inhibit the proliferation and migration of lung adenocarcinoma LA795 cells. In vivo experiments showed that ZAF can significantly inhibit lung adenocarcinoma tumor growth in mice. Taken together, we identified ZAF as a novel TMEM16A channel inhibitor with excellent anticancer activity, and as such, it represents a promising candidate for future preclinical and clinical studies.  相似文献   

13.
14.
As a calcium-activated chloride channel regulated by the intracellular Ca2+ concentration and membrane potential, TMEM16A has attracted considerable attention and has been proposed as a novel anticancer drug target. We have previously reported that the pocket above the ion conductance pore could be a nonselective inhibitor-binding pocket. However, whether this pocket is druggable remains unexplored. In this study, we performed virtual screening to target the presumed inhibitor-binding pocket and identified a highly effective TMEM16A inhibitor, theaflavin (TF: a tea polyphenol in black tea). Molecular dynamics simulations revealed that theaflavin adopts a “wedge insertion mode” to block the ion conduction pore and induces pore closure. Moreover, the binding mode showed that the TF pedestal plays an important role in pore blockade, and R515, R535, T539, K603, E623, and E633 were determined to be most likely to interact directly with the pedestal. Mutagenesis experiment results corroborated the mechanism through which TF binds to this pocket. Combined with the quantitative calculation results, our data indicated that the three hydroxyl groups on the pedestal may be the most crucial pharmacophores for TMEM16A inhibition by TF. Finally, antitumor experiments revealed that TF could target TMEM16A to inhibit the proliferation and migration of LA795 cells, indicating the potential therapeutic effect of TF on the growth of lung adenocarcinoma with high TMEM16A expression. The successful application of drug screening strategies based on this binding pocket highlights new directions for discovering superior modulators and contributes to the development of novel therapeutics for lung adenocarcinoma.  相似文献   

15.
酸敏感离子通道(ASICs)属于上皮 Na+ 通道/退化蛋白超家族,对细胞外 H+ 浓度变化敏感,其受多种外源性配体调控,产生 不同生理和病理学效应。越来越多研究发现,ASICs 参与脑缺血、炎症、肿瘤等具有酸化改变的病理过程。简介 ASICs 的结构及其配体 作用位点以及各亚基的组织分布和电生理特性,主要对各类 ASICs 外源性配体的研究进展作一综述。  相似文献   

16.
Recent studies have shown that transmembrane protein 16 A (TMEM16A) is a subunit of calcium-activated chloride channels (CACCs). Pharmacological agents have been used to probe the functional role of CACCs, however their effect on TMEM16A currents has not been systematically investigated. In the present study, we characterized the voltage and concentration-dependent effects of 2 traditional CACC inhibitors (niflumic acid and anthracene-9-carboxcylic acid) and 2 novel CACC / TMEM16A inhibitors (CACCinhA01 and T16AinhA01) on TMEM16A currents. The whole cell patch clamp technique was used to record TMEM16A currents from HEK 293 cells that stably expressed human TMEM16A. Niflumic acid, A-9-C, CACCinhA01 and T16AinhA01 inhibited TMEM16A currents with IC50 values of 12, 58, 1.7 and 1.5 µM, respectively, however, A-9-C and niflumic acid were less efficacious at negative membrane potentials. A-9-C and niflumic acid reduced the rate of TMEM16A tail current deactivation at negative membrane potentials and A-9-C (1 mM) enhanced peak TMEM16A tail current amplitude. In contrast, the inhibitory effects of CACCinhA01 and T16AinhA01 were independent of voltage and they did not prolong the rate of TMEM16A tail current deactivation. The effects of niflumic acid and A-9-C on TMEM16A currents were similar to previous observations on CACCs in vascular smooth muscle, strengthening the hypothesis that they are encoded by TMEM16A. However, CACCinhA01 and T16AinhA01 were more potent inhibitors of TMEM16A channels and their effects were not diminished at negative membrane potentials making them attractive candidates to interrogate the functional role of TMEM16A channels in future studies.  相似文献   

17.
《Cell reports》2020,30(3):870-880.e2
  1. Download : Download high-res image (144KB)
  2. Download : Download full-size image
  相似文献   

18.
钙激活氯离子通道(Ca CCs)是一种广泛存在的氯离子通道,参与众多生理功能,如:上皮细胞的离子分泌、嗅觉传导以及平滑肌收缩等。由于通常情况下很难将Ca CCs介导的电流和钙离子依赖性阳离子流以及非钙离子依赖性氯离子流分开,因此其钙离子依赖性机制的研究远远滞后于其他离子通道。本文综述了最新报道的Ca CCs分子基础跨膜蛋白TMEM16A的发现和确立、结构特点、钙离子结合位点、其电流发生机制,及其相关生理作用以及病理和药理功能的热点问题,并展望该领域的研究发展趋势。  相似文献   

19.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号