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SUN2-nesprin-2 LINC 复合物和 KIF20A 在高尔基体分散中发挥作用。

The SUN2-nesprin-2 LINC complex and KIF20A function in the Golgi dispersal.

机构信息

Graduate School of Health Sciences, Ehime Prefectural University of Health Sciences, Ehime, 791-2101, Japan.

Graduate School of Medicine and Health Science, Osaka University, Osaka, 565-0871, Japan.

出版信息

Sci Rep. 2021 Mar 8;11(1):5358. doi: 10.1038/s41598-021-84750-4.

Abstract

The morphology of the Golgi complex is influenced by the cellular context, which strictly correlates with nuclear functions; however, the mechanism underlying this association remains elusive. The inner nuclear membrane SUN proteins, SUN1 and SUN2, have diverse functions together with the outer nuclear membrane nesprin proteins, which comprise the LINC complex. We found that depletion of SUN1 leads to Golgi complex dispersion with maintenance of ministacks and retained function for vesicle transport through the Golgi complex. In addition, SUN2 associates with microtubule plus-end-directed motor KIF20A, possibly via nesprin-2. KIF20A plays a role in the Golgi dispersion in conjunction with the SUN2-nesprin-2 LINC complex in SUN1-depleted cells, suggesting that SUN1 suppresses the function of the SUN2-nesprin-2 LINC complex under a steady-state condition. Further, SUN1-knockout mice, which show impaired cerebellar development and cerebellar ataxia, presented altered Golgi morphology in Purkinje cells. These findings revealed a regulation of the Golgi organization by the LINC complex.

摘要

高尔基复合体的形态受细胞环境的影响,而细胞环境与核功能密切相关;然而,这种关联的机制仍不清楚。核内层膜 SUN 蛋白 SUN1 和 SUN2 与核外层膜 nesprin 蛋白一起具有多种功能,它们构成了 LINC 复合物。我们发现,SUN1 的耗竭导致高尔基复合体分散,但微绒毛保持着小泡运输的功能。此外,SUN2 可能通过 nesprin-2 与微管正极导向的动力蛋白 KIF20A 结合。KIF20A 在 SUN1 耗竭细胞的高尔基分散中与 SUN2-nesprin-2 LINC 复合物一起发挥作用,表明 SUN1 在稳定状态下抑制 SUN2-nesprin-2 LINC 复合物的功能。此外,SUN1 敲除小鼠表现出小脑发育不良和小脑共济失调,在浦肯野细胞中呈现出高尔基形态的改变。这些发现揭示了 LINC 复合物对高尔基组织的调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b99/7940470/e8724fb109d4/41598_2021_84750_Fig1_HTML.jpg

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