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波形蛋白尾部片段在不同的细胞位置以及对应激反应中呈现出不同程度的暴露。

Vimentin Tail Segments Are Differentially Exposed at Distinct Cellular Locations and in Response to Stress.

作者信息

Lois-Bermejo Irene, González-Jiménez Patricia, Duarte Sofia, Pajares María A, Pérez-Sala Dolores

机构信息

Department of Structural and Chemical Biology, Centro de Investigaciones Biológicas Margarita Salas, CSIC, Madrid, Spain.

出版信息

Front Cell Dev Biol. 2022 Jun 8;10:908263. doi: 10.3389/fcell.2022.908263. eCollection 2022.

Abstract

The intermediate filament protein vimentin plays a key role in cell signaling and stress sensing, as well as an integrator of cytoskeletal dynamics. The vimentin monomer consists of a central rod-like domain and intrinsically disordered head and tail domains. Although the organization of vimentin oligomers in filaments is beginning to be understood, the precise disposition of the tail region remains to be elucidated. Here we observed that electrophilic stress-induced condensation shielded vimentin from recognition by antibodies against specific segments of the tail domain. A detailed characterization revealed that vimentin tail segments are differentially exposed at distinct subcellular locations, both in basal and stress conditions. The 411-423 segment appeared accessible in all cell areas, correlating with vimentin abundance. In contrast, the 419-438 segment was more scantily recognized in perinuclear vimentin and lipoxidative stress-induced bundles, and better detected in peripheral filaments, where it appeared to protrude further from the filament core. These differences persisted in mitotic cells. Interestingly, both tail segments showed closer accessibility in calyculin A-treated cells and phosphomimetic mutants of the C-terminal region. Our results lead us to hypothesize the presence of at least two distinct arrangements of vimentin tail in cells: an "extended" conformation (accessible 419-438 segment), preferentially detected in peripheral areas with looser filaments, and a "packed" conformation (shielded 419-438 segment), preferentially detected at the cell center in robust filaments and lipoxidative stress-induced bundles. These different arrangements could be putatively interconverted by posttranslational modifications, contributing to the versatility of vimentin functions and/or interactions.

摘要

中间丝蛋白波形蛋白在细胞信号传导和应激感知中起关键作用,也是细胞骨架动力学的整合者。波形蛋白单体由一个中央杆状结构域以及内在无序的头部和尾部结构域组成。尽管波形蛋白在细丝中形成的寡聚体的组织方式已开始为人所理解,但尾部区域的确切排列仍有待阐明。在此,我们观察到亲电应激诱导的凝聚使波形蛋白免受针对尾部结构域特定片段的抗体的识别。详细表征显示,波形蛋白尾部片段在基础和应激条件下的不同亚细胞位置上的暴露情况存在差异。411 - 423片段在所有细胞区域似乎都是可及的,这与波形蛋白的丰度相关。相比之下,419 - 438片段在核周波形蛋白和脂氧化应激诱导的束中较难被识别,而在周边细丝中能更好地被检测到,在那里它似乎从细丝核心突出得更远。这些差异在有丝分裂细胞中持续存在。有趣的是,在经花萼海绵诱癌素A处理的细胞和C末端区域的磷酸模拟突变体中,这两个尾部片段都显示出更高的可及性。我们的结果使我们推测细胞中波形蛋白尾部至少存在两种不同的排列方式:一种“伸展”构象(可及的419 - 438片段),优先在细丝较松散的周边区域被检测到;另一种“紧密”构象(被屏蔽的419 - 438片段),优先在细胞中心的粗壮细丝和脂氧化应激诱导的束中被检测到。这些不同的排列方式可能通过翻译后修饰相互转换,从而有助于波形蛋白功能和/或相互作用的多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e51/9235546/15d3ff6bed20/fcell-10-908263-g001.jpg

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