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Structure and gating of CLC channels and exchangers

机译:CLC通道和交换器的结构和门控

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Since their serendipitous discovery the CLC family of Cl-transporting proteins has been a never ending source of surprises. From their double-barrelled architecture to their complex structure and divergence as channels and transporters, the CLCs never cease to amaze biophysicists, biochemists and physiologists alike. These unusual functional properties allow the CLCs to fill diverse physiological niches, regulating processes that range from muscle contraction to acidification of intracellular organelles, nutrient accumulation and survival of bacteria to environmental stresses. Over the last 15 years, the availability of atomic-level information on the structure of the CLCs, coupled to the discovery that the family is divided into passive channels and secondary active transporters, has revolutionized our understanding of their function. These breakthroughs led to the identification of the key structural elements regulating gating, transport, selectivity and regulation by ligands. Unexpectedly, many lines of evidence indicate that the CLC exchangers function according to a non-conventional transport mechanism that defies the fundamental tenets of the alternating-access paradigm for exchange transport, paving the way for future unexpected insights into the principles underlying active transport and channel gating.
机译:自他们偶然发现以来,CLC转运蛋白家族一直是惊喜无穷的来源。从双管结构到复杂的结构以及作为渠道和转运蛋白的分歧,CLC从未间断让生物物理学家,生物化学家和生理学家赞叹不已。这些不寻常的功能特性使CLC可以填补各种生理生态位,调节过程从肌肉收缩到细胞内细胞器的酸化,营养物积累和细菌生存到环境压力。在过去的15年中,有关CLC结构的原子级信息的可获得性,再加上该家族被分为被动通道和次级主动转运蛋白的发现,彻底改变了我们对其功能的理解。这些突破导致确定了通过配体调节门控,转运,选择性和调节的关键结构元素。出乎意料的是,许多证据表明,CLC交换器是根据非常规运输机制运行的,该机制违背了交换运输交替访问范式的基本原则,为将来对主动运输和渠道原理的意外见解铺平了道路门控。

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