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人类突变突出了亚基间的阳离子-π 键,该键稳定了 TRPV 通道的关闭但非开放或失活状态。

Human mutations highlight an intersubunit cation-π bond that stabilizes the closed but not open or inactivated states of TRPV channels.

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, Dallas, TX 75390.

Department of Biology, University of Maryland, College Park, MD 20742;

出版信息

Proc Natl Acad Sci U S A. 2019 May 7;116(19):9410-9416. doi: 10.1073/pnas.1820673116. Epub 2019 Apr 22.

Abstract

An adequate response of a living cell to the ever-changing environment requires integration of numerous sensory inputs. In many cases, it can be achieved even at the level of a single receptor molecule. Polymodal transient receptor potential (TRP) channels have been shown to integrate mechanical, chemical, electric, and thermal stimuli. Inappropriate gating can lead to pathologies. Among the >60 known TRP vanilloid subfamily (V) 4 mutations that interfere with bone development are Y602C or R616Q at the S4-S5 linker. A cation-π bond between the conservative residues Y602 and R616 of neighboring subunits appears likely in many homologous channel structures in a closed state. Our experiments with TRPV4 mutants indicate that the resting-closed state remains stable while the bond is substituted by a salt bridge or disulfide bond, whereas disruption of the contact by mutations like Y602C or R616Q produces gain-of-function phenotypes when TRPV4 is heterologously expressed in the oocyte or yeast. Our data indicate that the Y602-R616 cation-π interactions link the four S4-S5 linker helices together, forming a girdle backing the closed gate. Analogous cation-π bonds and the girdle are seen in many closed TRP channel structures. This girdle is not observed in the cryo-EM structure of amphibian TRPV4 (Protein Data Bank ID code 6BBJ), which appears to be in a different impermeable state-we hypothesize this is the inactivated state.

摘要

活细胞对不断变化的环境做出适当反应需要整合众多感觉输入。在许多情况下,即使在单个受体分子水平上也可以实现这一点。多模态瞬时受体电位 (TRP) 通道已被证明可整合机械、化学、电和热刺激。不合适的门控会导致病变。在 >60 种已知的 TRPV4 香草素亚家族 (V) 4 突变中,干扰骨骼发育的突变是 S4-S5 接头处的 Y602C 或 R616Q。在许多同源通道结构的闭态中,相邻亚基的保守残基 Y602 和 R616 之间似乎存在阳离子-π 键。我们对 TRPV4 突变体的实验表明,在盐桥或二硫键取代该键时,静息闭态仍然稳定,而像 Y602C 或 R616Q 这样的突变破坏接触会导致 TRPV4 异源表达在卵母细胞或酵母中产生功能获得表型。我们的数据表明,Y602-R616 阳离子-π 相互作用将四个 S4-S5 接头螺旋连接在一起,形成一个封闭门的支撑环。在许多封闭的 TRP 通道结构中都可以看到类似的阳离子-π 键和环。在两栖动物 TRPV4 的冷冻电镜结构中(蛋白数据库 ID 代码 6BBJ)没有观察到这种环,它似乎处于不同的不可渗透状态-我们假设这是失活状态。

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本文引用的文献

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Structure of the mouse TRPC4 ion channel.小鼠 TRPC4 离子通道的结构。
Nat Commun. 2018 Aug 6;9(1):3102. doi: 10.1038/s41467-018-05247-9.
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Conformational plasticity in the selectivity filter of the TRPV2 ion channel.TRPV2 离子通道选择性过滤器的构象可塑性。
Nat Struct Mol Biol. 2018 May;25(5):405-415. doi: 10.1038/s41594-018-0059-z. Epub 2018 Apr 30.
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Structure of the cold- and menthol-sensing ion channel TRPM8.冷觉和薄荷醇敏感离子通道TRPM8的结构
Science. 2018 Jan 12;359(6372):237-241. doi: 10.1126/science.aan4325. Epub 2017 Dec 7.

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