The versatile regulation of K2P channels by polyanionic lipids of the phosphoinositide and fatty acid metabolism.

The Journal of General Physiology Pub Date : 2022-02-07 Epub Date: 2021-12-20 DOI:10.1085/jgp.202112989
Elena B Riel, Björn C Jürs, Sönke Cordeiro, Marianne Musinszki, Marcus Schewe, Thomas Baukrowitz
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引用次数: 6

Abstract

Work over the past three decades has greatly advanced our understanding of the regulation of Kir K+ channels by polyanionic lipids of the phosphoinositide (e.g., PIP2) and fatty acid metabolism (e.g., oleoyl-CoA). However, comparatively little is known regarding the regulation of the K2P channel family by phosphoinositides and by long-chain fatty acid-CoA esters, such as oleoyl-CoA. We screened 12 mammalian K2P channels and report effects of polyanionic lipids on all tested channels. We observed activation of members of the TREK, TALK, and THIK subfamilies, with the strongest activation by PIP2 for TRAAK and the strongest activation by oleoyl-CoA for TALK-2. By contrast, we observed inhibition for members of the TASK and TRESK subfamilies. Our results reveal that TASK-2 channels have both activatory and inhibitory PIP2 sites with different affinities. Finally, we provided evidence that PIP2 inhibition of TASK-1 and TASK-3 channels is mediated by closure of the recently identified lower X-gate as critical mutations within the gate (i.e., L244A, R245A) prevent PIP2-induced inhibition. Our findings establish that K+ channels of the K2P family are highly sensitive to polyanionic lipids, extending our knowledge of the mechanisms of lipid regulation and implicating the metabolism of these lipids as possible effector pathways to regulate K2P channel activity.

Abstract Image

Abstract Image

Abstract Image

多阴离子脂质对磷酸肌肽和脂肪酸代谢的K2P通道的多功能调节。
过去三十年的研究工作极大地促进了我们对磷酸肌肽(如PIP2)和脂肪酸代谢(如油酰辅酶a)的聚阴离子脂质对Kir K+通道的调节的理解。然而,关于磷酸肌苷和长链脂肪酸辅酶a酯(如油基辅酶a)对K2P通道家族的调控,我们所知相对较少。我们筛选了12个哺乳动物的K2P通道,并报告了聚阴离子脂质对所有测试通道的影响。我们观察到TREK、TALK和THIK亚家族成员的激活,其中PIP2对TRAAK的激活最强,而油酰辅酶a对TALK-2的激活最强。相比之下,我们观察到TASK和TRESK亚家族的成员受到抑制。我们的研究结果表明,TASK-2通道具有不同亲和力的激活和抑制PIP2位点。最后,我们提供的证据表明,PIP2对TASK-1和TASK-3通道的抑制是通过关闭最近发现的下x门介导的,因为门内的关键突变(即L244A, R245A)阻止了PIP2诱导的抑制。我们的研究结果表明,K2P家族的K+通道对多阴离子脂质高度敏感,扩展了我们对脂质调节机制的认识,并暗示这些脂质代谢可能是调节K2P通道活性的效应途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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