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内向整流钾(Kir)通道的磷酸肌醇调节

Phosphoinositide regulation of inward rectifier potassium (Kir) channels.

作者信息

Fürst Oliver, Mondou Benoit, D'Avanzo Nazzareno

机构信息

Groupe d'étude des Protéines Membranaires (GÉPROM), Physiologie, Université de Montréal Montréal, QC, Canada.

出版信息

Front Physiol. 2014 Jan 8;4:404. doi: 10.3389/fphys.2013.00404.

Abstract

Inward rectifier potassium (Kir) channels are integral membrane proteins charged with a key role in establishing the resting membrane potential of excitable cells through selective control of the permeation of K(+) ions across cell membranes. In conjunction with secondary anionic phospholipids, members of this family are directly regulated by phosphoinositides (PIPs) in the absence of other proteins or downstream signaling pathways. Different Kir isoforms display distinct specificities for the activating PIPs but all eukaryotic Kir channels are activated by PI(4,5)P2. On the other hand, the bacterial KirBac1.1 channel is inhibited by PIPs. Recent crystal structures of eukaryotic Kir channels in apo and lipid bound forms reveal one specific binding site per subunit, formed at the interface of N- and C-terminal domains, just beyond the transmembrane segments and clearly involving some of the key residues previously identified as controlling PI(4,5)P2 sensitivity. Computational, biochemical, and biophysical approaches have attempted to address the energetic determinants of PIP binding and selectivity among Kir channel isoforms, as well as the conformational changes that trigger channel gating. Here we review our current understanding of the molecular determinants of PIP regulation of Kir channel activity, including in context with other lipid modulators, and provide further discussion on the key questions that remain to be answered.

摘要

内向整流钾(Kir)通道是整合膜蛋白,通过选择性控制钾离子跨细胞膜的渗透,在建立可兴奋细胞的静息膜电位中起关键作用。与次级阴离子磷脂一起,该家族成员在没有其他蛋白质或下游信号通路的情况下直接受磷酸肌醇(PIP)调节。不同的Kir亚型对激活的PIP表现出不同的特异性,但所有真核生物的Kir通道都由PI(4,5)P2激活。另一方面,细菌KirBac1.1通道受PIP抑制。最近真核生物Kir通道的无apo和脂质结合形式的晶体结构显示每个亚基有一个特定的结合位点,形成于N端和C端结构域的界面,就在跨膜片段之外,并且明显涉及一些先前被确定为控制PI(4,5)P2敏感性的关键残基。计算、生化和生物物理方法试图解决Kir通道亚型中PIP结合和选择性的能量决定因素,以及触发通道门控的构象变化。在这里,我们综述了目前对Kir通道活性的PIP调节分子决定因素的理解,包括与其他脂质调节剂相关的情况,并对有待回答的关键问题进行了进一步讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3605/3884141/3644738b5f68/fphys-04-00404-g0001.jpg

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