首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Lateral Diffusion Function and Expression of the Slow Channel Congenital Myasthenia Syndrome αC418W Nicotinic Receptor Mutation with Changes in Lipid Raft Components
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Lateral Diffusion Function and Expression of the Slow Channel Congenital Myasthenia Syndrome αC418W Nicotinic Receptor Mutation with Changes in Lipid Raft Components

机译:慢通道先天性肌无力综合征αC418W烟碱受体突变与脂质筏成分的变化的横向扩散功能和表达。

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摘要

Lipid rafts, specialized membrane microdomains in the plasma membrane rich in cholesterol and sphingolipids, are hot spots for a number of important cellular processes. The novel nicotinic acetylcholine receptor (nAChR) mutation αC418W, the first lipid-exposed mutation identified in a patient that causes slow channel congenital myasthenia syndrome was shown to be cholesterol-sensitive and to accumulate in microdomains rich in the membrane raft marker protein caveolin-1. The objective of this study is to gain insight into the mechanism by which lateral segregation into specialized raft membrane microdomains regulates the activable pool of nAChRs. We performed fluorescent recovery after photobleaching (FRAP), quantitative RT-PCR, and whole cell patch clamp recordings of GFP-encoding Mus musculus nAChRs transfected into HEK 293 cells to assess the role of cholesterol and caveolin-1 (CAV-1) in the diffusion, expression, and functionality of the nAChR (WT and αC418W). Our findings support the hypothesis that a cholesterol-sensitive nAChR might reside in specialized membrane microdomains that upon cholesterol depletion become disrupted and release the cholesterol-sensitive nAChRs to the pool of activable receptors. In addition, our results in HEK 293 cells show an interdependence between CAV-1 and αC418W that could confer end plates rich in αC418W nAChRs to a susceptibility to changes in cholesterol levels that could cause adverse drug reactions to cholesterol-lowering drugs such as statins. The current work suggests that the interplay between cholesterol and CAV-1 provides the molecular basis for modulating the function and dynamics of the cholesterol-sensitive αC418W nAChR.
机译:脂筏是富含胆固醇和鞘脂的质膜中特化的膜微区,是许多重要细胞过程的热点。新型烟碱型乙酰胆碱受体(nAChR)突变αC418W,是在引起慢通道先天性肌无力综合征的患者中鉴定出的首个脂质暴露突变,对胆固醇敏感,并在富含膜筏标记蛋白Caveolin-1的微区中蓄积。 。这项研究的目的是了解侧向分离成专门的筏膜微区调节nAChRs的可激活库的机制。我们进行了光漂白(FRAP),定量RT-PCR和转染到HEK 293细胞中的GFP编码小家鼠nAChR的全细胞膜片钳记录,以评估胆固醇和小窝蛋白1(CAV-1)在小鼠体内的作用后进行了荧光恢复。 nAChR(WT和αC418W)的扩散,表达和功能。我们的发现支持以下假设:胆固醇敏感的nAChR可能驻留在专门的膜微区中,一旦胆固醇耗尽,该微区就会被破坏并释放胆固醇敏感的nAChRs到可激活的受体池中。此外,我们在HEK 293细胞中的结果显示CAV-1和αC418W之间存在相互依赖性,这可能使富含αC418WnAChRs的终板易受胆固醇水平变化的影响,从而可能引起对他汀类药物等降低胆固醇药物的不良反应。目前的工作表明,胆固醇与CAV-1之间的相互作用为调节胆固醇敏感性αC418WnAChR的功能和动力学提供了分子基础。

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