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去SUMO化异肽酶1参与精确的染色体分离和长春新碱敏感性。

DeSUMOylating isopeptidase 1 participates in the faithful chromosome segregation and vincristine sensitivity.

作者信息

Ikeda Yuki, Yuki Ryuzaburo, Saito Youhei, Nakayama Yuji

机构信息

Laboratory of Biochemistry & Molecular Biology, Kyoto Pharmaceutical University, Kyoto, Japan.

出版信息

FASEB J. 2024 Dec 13;38(24):e70261. doi: 10.1096/fj.202401560RR.

Abstract

SUMOylation, the modification of proteins with a small ubiquitin-like modifier (SUMO), is known to regulate various cellular events, including cell division. This process is dynamic, with its status depending on the balance between SUMOylation and deSUMOylation. While the regulation of cell division by sentrin-specific protease (SENP) family proteins through deSUMOylation has been investigated, the role of another deSUMOylase, deSUMOylating isopeptidase 1 (DESI1), remains unknown. In this study, we explored DESI1's role in cell division. Knockdown of DESI1 accelerated cell division progression, leading to a significant increase in abnormal chromosome segregation. These phenotypes were rescued by re-expression of wild-type DESI1, but not catalytically inactive DESI1. DESI1 knockdown reduced the mitotic arrest caused by nocodazole, suggesting DESI1's involvement in the spindle assembly checkpoint (SAC). Localization of Aurora B, a key SAC regulator, at the metaphase chromosomes was reduced due to decreased Aurora B expression upon DESI1 knockdown. Consistently, DESI1 knockdown reduced transcription of FoxM1 target genes, such as Aurora B, cyclin B1, and CENP-F. The TCGA database showed that both decreased and increased DESI1 expression levels are associated with poor prognosis in patients with certain cancer types. Importantly, we found that DESI1 knockdown reduced sensitivity to vincristine by inducing mitotic slippage. These results suggest that DESI1 is required for faithful chromosome segregation via regulating FoxM1 transcriptional activity and thereby SAC activity in an isopeptidase activity-dependent manner. Our findings identified DESI1 as a novel regulator of cell division and a factor affecting cancer chemotherapy.

摘要

SUMO化修饰是指用一种小泛素样修饰物(SUMO)对蛋白质进行修饰,已知该修饰可调节包括细胞分裂在内的各种细胞活动。这一过程是动态的,其状态取决于SUMO化修饰与去SUMO化修饰之间的平衡。虽然已对泛素样修饰特异性蛋白酶(SENP)家族蛋白通过去SUMO化修饰对细胞分裂的调节作用进行了研究,但另一种去SUMO化酶——去SUMO化异肽酶1(DESI1)的作用仍不清楚。在本研究中,我们探究了DESI1在细胞分裂中的作用。敲低DESI1会加速细胞分裂进程,导致异常染色体分离显著增加。野生型DESI1的重新表达可挽救这些表型,但催化失活的DESI1则不能。敲低DESI1可减少诺考达唑引起的有丝分裂停滞,表明DESI1参与纺锤体组装检查点(SAC)。由于敲低DESI1后Aurora B表达下降,SAC关键调节因子Aurora B在中期染色体上的定位减少。一致地,敲低DESI1会降低FoxM1靶基因(如Aurora B、细胞周期蛋白B1和CENP - F)的转录。TCGA数据库显示,DESI1表达水平降低和升高均与某些癌症类型患者的不良预后相关。重要的是,我们发现敲低DESI1会通过诱导有丝分裂滑脱降低对长春新碱的敏感性。这些结果表明,DESI1通过以异肽酶活性依赖的方式调节FoxM1转录活性从而调节SAC活性,是忠实进行染色体分离所必需的。我们的研究结果确定DESI1是细胞分裂的一种新型调节因子,也是影响癌症化疗的一个因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5252/11656513/10dc08d60deb/FSB2-38-e70261-g004.jpg

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