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机械敏感离子通道MSL8、MSL9和MSL10具有对环境敏感的内在无序区域,在体外具有独特的生物物理特性。

Mechanosensitive ion channels MSL8, MSL9, and MSL10 have environmentally sensitive intrinsically disordered regions with distinct biophysical characteristics in vitro.

作者信息

Flynn Aidan J, Miller Kari, Codjoe Jennette M, King Matthew R, Haswell Elizabeth S

机构信息

Department of Biology Washington University in St. Louis St. Louis Missouri USA.

NSF Center for Engineering Mechanobiology, Department of Biology Washington University in St. Louis St. Louis Missouri USA.

出版信息

Plant Direct. 2023 Aug 3;7(8):e515. doi: 10.1002/pld3.515. eCollection 2023 Aug.

Abstract

Intrinsically disordered protein regions (IDRs) are highly dynamic sequences that rapidly sample a collection of conformations over time. In the past several decades, IDRs have emerged as a major component of many proteomes, comprising ~30% of all eukaryotic protein sequences. Proteins with IDRs function in a wide range of biological pathways and are notably enriched in signaling cascades that respond to environmental stresses. Here, we identify and characterize intrinsic disorder in the soluble cytoplasmic N-terminal domains of MSL8, MSL9, and MSL10, three members of the MscS-like (MSL) family of mechanosensitive ion channels. In plants, MSL channels are proposed to mediate cell and organelle osmotic homeostasis. Bioinformatic tools unanimously predicted that the cytosolic N-termini of MSL channels are intrinsically disordered. We examined the N-terminus of MSL10 (MSL10) as an exemplar of these IDRs and circular dichroism spectroscopy confirms its disorder. MSL10 adopted a predominately helical structure when exposed to the helix-inducing compound trifluoroethanol (TFE). Furthermore, in the presence of molecular crowding agents, MSL10 underwent structural changes and exhibited alterations to its homotypic interaction favorability. Lastly, interrogations of collective behavior via in vitro imaging of condensates indicated that MSL8, MSL9, and MSL10 have sharply differing propensities for self-assembly into condensates, both inherently and in response to salt, temperature, and molecular crowding. Taken together, these data establish the N-termini of MSL channels as intrinsically disordered regions with distinct biophysical properties and the potential to respond uniquely to changes in their physiochemical environment.

摘要

内在无序蛋白区域(IDR)是高度动态的序列,随着时间的推移会迅速采样一系列构象。在过去几十年中,IDR已成为许多蛋白质组的主要组成部分,占所有真核生物蛋白质序列的约30%。具有IDR的蛋白质在广泛的生物途径中发挥作用,并且在响应环境压力的信号级联反应中显著富集。在这里,我们鉴定并表征了机械敏感离子通道的MscS样(MSL)家族的三个成员MSL8、MSL9和MSL10的可溶性细胞质N端结构域中的内在无序。在植物中,MSL通道被认为介导细胞和细胞器的渗透稳态。生物信息学工具一致预测MSL通道的胞质N端是内在无序的。我们以这些IDR的一个例子研究了MSL10(MSL10)的N端,圆二色光谱证实了其无序性。当暴露于诱导螺旋的化合物三氟乙醇(TFE)时,MSL10主要采用螺旋结构。此外,在存在分子拥挤剂的情况下,MSL10发生了结构变化,并表现出其同型相互作用亲和力的改变。最后,通过对凝聚物的体外成像对集体行为进行的研究表明,MSL8、MSL9和MSL10在固有以及对盐、温度和分子拥挤的响应方面,自组装成凝聚物的倾向有很大差异。综上所述,这些数据表明MSL通道 的N端是具有独特生物物理特性的内在无序区域,并且有可能对其物理化学环境的变化做出独特的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfd0/10400277/790f8d441928/PLD3-7-e515-g005.jpg

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