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纺锤体 3/旋转体稳定索那拉和促进细胞存活。

Anastral Spindle 3/Rotatin Stabilizes Sol narae and Promotes Cell Survival in .

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Korea.

Present address: Center for Bioanalysis, Korea Research Institute of Standard and Science, Daejeon 34113, Korea.

出版信息

Mol Cells. 2021 Jan 31;44(1):13-25. doi: 10.14348/molcells.2020.0244.

Abstract

Apoptosis and compensatory proliferation, two intertwined cellular processes essential for both development and adult homeostasis, are often initiated by the mis-regulation of centrosomal proteins, damaged DNA, and defects in mitosis. Fly Anastral spindle 3 (Ana3) is a member of the pericentriolar matrix proteins and known as a key component of centriolar cohesion and basal body formation. We report here that is a suppressor of lethality induced by the overexpression of Sol narae (Sona), a metalloprotease in a disintegrin and metalloprotease with thrombospondin motif (ADAMTS) family. has a nonsense mutation that truncates the highly conserved carboxyl terminal region containing multiple Armadillo repeats. Lethality induced by Sona overexpression was completely rescued by knockdown of Ana3, and the small and malformed wing and hinge phenotype induced by the knockdown of Ana3 was also normalized by Sona overexpression, establishing a mutually positive genetic interaction between and p35 inhibited apoptosis and rescued the small wing and hinge phenotype induced by knockdown of . Furthermore, overexpression of Ana3 increased the survival rate of irradiated flies and reduced the number of dying cells, demonstrating that Ana3 actively promotes cell survival. Knockdown of Ana3 decreased the levels of both intra- and extracellular Sona in wing discs, while overexpression of Ana3 in S2 cells dramatically increased the levels of both cytoplasmic and exosomal Sona due to the stabilization of Sona in the lysosomal degradation pathway. We propose that one of the main functions of Ana3 is to stabilize Sona for cell survival and proliferation.

摘要

细胞凋亡和代偿性增殖是两个相互交织的细胞过程,对于发育和成年期的稳态都至关重要,它们通常是由中心体蛋白、受损 DNA 和有丝分裂缺陷的失调引发的。果蝇无丝分裂纺锤体 3(Ana3)是中心粒周围基质蛋白的成员,是中心粒黏合和基底体形成的关键组成部分。我们在此报告,是一种抑制 Sol narae(Sona)过表达诱导的致死性的抑制因子,Sona 是一种具有解整合素和金属蛋白酶结构域的金属蛋白酶(ADAMTS)家族成员。Ana3 发生无义突变,截断包含多个 Armadillo 重复的高度保守的羧基末端区域。Sona 过表达诱导的致死性完全被 Ana3 的敲低挽救,而 Ana3 的敲低诱导的小而畸形的翅膀和铰链表型也被 Sona 的过表达正常化,建立了 和 p35 之间的相互正遗传相互作用抑制了细胞凋亡,并挽救了由 敲低引起的小翅膀和铰链表型。此外,Ana3 的过表达增加了辐照果蝇的存活率并减少了死亡细胞的数量,表明 Ana3 积极促进细胞存活。Ana3 的敲低降低了翅膀盘中的内源性和外源性 Sona 的水平,而 Ana3 在 S2 细胞中的过表达由于 Sona 在溶酶体降解途径中的稳定而显著增加了细胞质和外泌体 Sona 的水平。我们提出,Ana3 的主要功能之一是稳定 Sona 以促进细胞存活和增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f35/7854181/520b772b8c4d/molce-44-013-f1.jpg

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