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Voltage-gated and inwardly rectifying potassium channels

机译:电压门控和内部整流钾通道

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摘要

This lecture is dedicated to Max Delbrück and Seymour Benzer. Max Delbrück was our graduate advisor. He introduced us to a variety of biophysical problems, and taught us ways of thinking about these problems by example. Potassium channels was one of the topics included in his journal club in the early seventies; Max also carefully considered the feasibility of purifying potassium channels then. It was in Seymour Benzer's laboratory that we began to look for Drosophila mutants that affect synaptic transmission at the larval neuromuscular junction. Shaker was the first behavioural mutant we tested that gave a robust phenotype, a phenotype that could be mimicked by treating wild-type preparations with a potassium channel blocker. This mutant fly has led us to our subsequent molecular studies of potassium channels.Since we settled in the University of California, San Francisco, and began to study neural development as well as potassium channels, we have settled into the pattern of each attending meetings and presenting our studies on one of these two areas so as to avoid both being away from home and our children at the same time. In following this pattern, I will be presenting the studies of potassium channels as part of our long-term collaboration. In this talk I will first briefly take you through the path that led us to the molecular studies of potassium channels and then discuss the diversity and modulation of these potassium channels at the molecular and physiological level.
机译:本讲座专门针对MaxDelbrück和Seymour Benzer。 MaxDelbrück是我们的研究生顾问。他向我们介绍了各种生物物理问题,并通过示例向我们介绍了解决这些问题的方法。钾离子通道是他70年代初在他的日记俱乐部中包括的主题之一;马克斯还仔细考虑了净化钾通道的可行性。在西摩·本泽(Seymour Benzer)的实验室中,我们开始寻找能影响幼虫神经肌肉接头突触传递的果蝇突变体。摇床是我们测试的第一个行为突变体,可产生强大的表型,该表型可通过用钾通道阻滞剂处理野生型制剂来模仿。自从我们定居于加利福尼亚大学旧金山分校并开始研究神经发育以及钾离子通道以来,这种突变果蝇使我们得以进行钾离子通道的分子研究。介绍我们对这两个领域之一的研究,以避免同时离开家和我们的孩子。按照这种模式,我将介绍钾离子通道的研究,作为我们长期合作的一部分。在本次演讲中,我将首先简要介绍您引导我们进行钾离子通道分子研究的途径,然后在分子和生理学水平上讨论这些钾离子通道的多样性和调控。

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