响应FH2结构域小分子抑制剂(SMIFH2)诱导的亲电应激,Vimentin细胞骨架崩溃。

IF 2.7 3区 生物学 Q3 CELL BIOLOGY
Benjamin Capella, Katia Brock, Christopher E Turner
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引用次数: 0

摘要

III型中间丝蛋白vimentin在纤维化和癌症侵袭期间的细胞稳态和疾病进展中起着不可或缺的作用。先前的研究表明,泛formin抑制剂SMIFH2诱导了vimentin网络的核周崩溃,这表明formmins可能调节vimentin细胞骨架组织。然而,尽管SMIFH2的设计功能是抑制formin FH2结构域-肌动蛋白相互作用,但已经报道了SMIFH2的几个主要脱靶效应,包括抑制肌球蛋白家族atp酶活性。SMIFH2也是高度亲电性的,可能与蛋白质中的亲核残基发生反应。因此,我们试图确定SMIFH2破坏波形蛋白细胞骨架的机制。特异性双胍蛋白的消耗、靶向肌动蛋白细胞骨架破坏或肌球蛋白家族atp酶抑制未能复制SMIFH2对波形蛋白网络的影响。然而,用其他亲电试剂(包括前列腺素A)治疗,可重现smifh2介导的波形蛋白崩溃、f -肌动蛋白细胞骨架变化和Nrf2应激感觉通路的激活。此外,FRAP分析显示SMIFH2抑制了波形蛋白丝动力学,这是通过突变亲核的波形蛋白C328残基来挽救的。因此,SMIFH2由于其作为亲电物质的反应性而破坏了波形蛋白网络。这项研究强化了波形蛋白作为关键应力传感器的作用。[媒体:见文][媒体:见文][媒体:见文][媒体:见文]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vimentin Cytoskeleton Collapses in Response to the Small Molecule Inhibitor of FH2 domains (SMIFH2)-induced Electrophilic Stress.

The type III intermediate filament protein vimentin plays an integral role in cell homeostasis and disease progression during fibrosis and cancer invasion. Previous work demonstrated that the pan-formin inhibitor SMIFH2 induced a perinuclear collapse of the vimentin network, suggesting formins may regulate vimentin cytoskeleton organization. However, despite the designed function of SMIFH2 to inhibit formin FH2 domain-actin interactions, several major off-target effects of SMIFH2 have been reported, including inhibition of myosin family ATPase activity. SMIFH2 is also highly electrophilic, potentially reacting with nucleophilic residues within proteins other than formins. Therefore, we sought to determine the mechanism by which SMIFH2 disrupts the vimentin cytoskeleton. Depletion of specific formin proteins, targeted actin cytoskeleton disruption, or myosin family ATPase inhibition failed to replicate the SMIFH2 effect on the vimentin network. However, treatment with other electrophilic reagents including prostaglandin A, reproduced the SMIFH2-mediated vimentin collapse, F-actin cytoskeletal changes, and activation of the Nrf2 stress sensory pathway. Additionally, FRAP analysis revealed that SMIFH2 inhibits vimentin filament dynamics, which was rescued by mutating the nucleophilic vimentin C328 residue. Thus, SMIFH2 disrupts the vimentin network due to its reactivity as an electrophilic species. This study reinforces the role of vimentin as a key stress sensor. [Media: see text] [Media: see text] [Media: see text] [Media: see text].

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来源期刊
Molecular Biology of the Cell
Molecular Biology of the Cell 生物-细胞生物学
CiteScore
6.00
自引率
6.10%
发文量
402
审稿时长
2 months
期刊介绍: MBoC publishes research articles that present conceptual advances of broad interest and significance within all areas of cell, molecular, and developmental biology. We welcome manuscripts that describe advances with applications across topics including but not limited to: cell growth and division; nuclear and cytoskeletal processes; membrane trafficking and autophagy; organelle biology; quantitative cell biology; physical cell biology and mechanobiology; cell signaling; stem cell biology and development; cancer biology; cellular immunology and microbial pathogenesis; cellular neurobiology; prokaryotic cell biology; and cell biology of disease.
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