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Selectivity mechanisms in MscS-like channels

机译:类MscS通道中的选择性机制

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The E. coli mechanosensitive (MS) channel of small conductance (EcMscS) is the prototype of a diverse family of channels present in all domains of life. While EcMscS has been extensively studied, recent developments show that MscS may display some characteristics not widely conserved in this protein subfamily. With numerous members now electrophysiologically characterized, this subfamily of channels displays a breadth of ion selectivity with both anion and cation selective members. The selectivity of these channels may be relatively weak in comparison to voltage-gated channels but their selectivity mechanisms represent great novelty. Recent studies have identified unexpected residues important for selectivity in these homologs revealing different selectivity mechanisms than those employed by voltage gated K~(+), Na~(+), Ca~(2+) and Cl~(-) channels whose selectivity filters are housed within their transmembrane pores. This commentary looks at what is currently known about MscS subfamily selectivity and begins to unravel the potential physiological relevance of these differences.
机译:E。小电导率的大肠杆菌机械敏感(MS)通道是生活各个领域中存在的各种通道家族的原型。尽管已经对EcMscS进行了广泛研究,但最近的进展表明MscS可能显示出在该蛋白亚家族中未广泛保守的某些特征。如今,许多成员具有电生理学特征,因此该通道亚家族对阴离子和阳离子选择性成员都具有广泛的离子选择性。与电压门控通道相比,这些通道的选择性可能相对较弱,但是它们的选择性机制代表了很大的新颖性。最近的研究已经确定了这些同源物中对选择性重要的意外残基,这些残基揭示了与电压门控K〜(+),Na〜(+),Ca〜(2+)和Cl〜(-)通道所采用的选择性机制不同的选择性机制。被安置在其跨膜毛孔内。这篇评论着眼于当前对MscS亚家族选择性的了解,并开始揭示这些差异的潜在生理相关性。

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