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SSNA1 稳定动态微管并检测微管损伤。

SSNA1 stabilizes dynamic microtubules and detects microtubule damage.

机构信息

Department of Cell and Developmental Biology, Vanderbilt University, Nashville, United States.

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, United States.

出版信息

Elife. 2021 Dec 31;10:e67282. doi: 10.7554/eLife.67282.

Abstract

Sjögren's syndrome nuclear autoantigen-1 (SSNA1/NA14) is a microtubule-associated protein with important functions in cilia, dividing cells, and developing neurons. However, the direct effects of SSNA1 on microtubules are not known. We employed in vitro reconstitution with purified proteins and TIRF microscopy to investigate the activity of human SSNA1 on dynamic microtubule ends and lattices. Our results show that SSNA1 modulates all parameters of microtubule dynamic instability-slowing down the rates of growth, shrinkage, and catastrophe, and promoting rescue. We find that SSNA1 forms stretches along growing microtubule ends and binds cooperatively to the microtubule lattice. Furthermore, SSNA1 is enriched on microtubule damage sites, occurring both naturally, as well as induced by the microtubule severing enzyme spastin. Finally, SSNA1 binding protects microtubules against spastin's severing activity. Taken together, our results demonstrate that SSNA1 is both a potent microtubule-stabilizing protein and a novel sensor of microtubule damage; activities that likely underlie SSNA1's functions on microtubule structures in cells.

摘要

干燥综合征核抗原 1(SSNA1/NA14)是一种微管相关蛋白,在纤毛、分裂细胞和发育中的神经元中具有重要功能。然而,SSNA1 对微管的直接作用尚不清楚。我们采用体外重组纯化蛋白和 TIRF 显微镜技术,研究了人 SSNA1 对动态微管末端和晶格的作用。结果表明,SSNA1 调节微管动力学不稳定性的所有参数,减缓生长、收缩和崩溃的速度,并促进恢复。我们发现 SSNA1 在生长中的微管末端形成伸展,并与微管晶格协同结合。此外,SSNA1 富集在微管损伤部位,既存在于自然状态下,也存在于微管切割酶 spastin 诱导的状态下。最后,SSNA1 结合保护微管免受 spastin 的切割活性。总之,我们的结果表明,SSNA1 既是一种有效的微管稳定蛋白,也是一种新的微管损伤传感器;这些活性可能是 SSNA1 在细胞中微管结构上发挥作用的基础。

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