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KIF15上调通过促进USP15介导的DEK去泛素化来促进平滑肌肉瘤细胞生长。

KIF15 upregulation promotes leiomyosarcoma cell growth via promoting USP15-mediated DEK deubiquitylation.

作者信息

Ge Weiming, Chen Yuxuan, Guo Yusheng, Zhao Dawei, Mu Ling, Zhang Kun, Zhuo Wenkun

机构信息

Foot and Ankle Surgery, Luoyang Orthopedic Hospital of Henan Province, Orthopedic Hospital of Henan Province, Luoyang, Henan, China.

Center of Traumatic Orthopedics, People's Liberation Army 990 Hospital, Xinyang, Henan, China.

出版信息

Biochem Biophys Res Commun. 2021 Sep 17;570:117-124. doi: 10.1016/j.bbrc.2021.07.042. Epub 2021 Jul 16.

Abstract

Kinesin Family Member 15 (KIF15) is a plus end-directed microtubule motor, which exerts complex regulations in cancer biology. This study aimed to explore the functional role of KIF15 in leiomyosarcoma (LMS). Bioinformatic analysis was carried out using data from The Cancer Genome Atlas (TCGA)-Sarcoma (SARC). LMS cell lines SK-UT-1 and SK-LMS-1 were used as in vitro cell models. Results showed that LMS patients with high KIF15 expression had significantly worse survival than the low KIF15 expression counterparts. KIF15 knockdown slowed, while KIF15 overexpression increased the proliferation of SK-UT-1 and SK-LMS-1 cells. Co-IP assay confirmed mutual interaction between endogenous KIF15 and DEK (encoded by DEK proto-oncogene). KIF15 knockdown facilitated DEK degradation, while KIF15 overexpression slowed DEK degradation. In ubiquitination assay, a significant increase in DEK polyubiquitylation was observed when KIF15 expression was suppressed. USP15 physically interacted with both DEK and KIF15 in the cells. USP15 knockdown decreased DEK protein stability and canceled KIF15-mediated DEK stabilization. USP15 overexpression enhanced DEK stability, the effect of which was impaired by KIF15 knockdown. USP15 overexpression reduced DEK polyubiquitination. USP15 knockdown increased DEK polyubiquitination and canceled the effect of KIF15 overexpression on reducing DEK polyubiquitination. DEK overexpression enhanced the proliferation of SK-UT-1 and SK-LMS-1 cells. DEK knockdown decreased cell proliferation and canceled the effect of KIF15 overexpression on cell proliferation. In conclusion, this study revealed a novel mechanism that KIF15 enhances LMS cell proliferation via preventing DEK protein from degradation by increasing USP15 mediated deubiquitylation.

摘要

驱动蛋白家族成员15(KIF15)是一种正向微管马达蛋白,在癌症生物学中发挥着复杂的调控作用。本研究旨在探讨KIF15在平滑肌肉瘤(LMS)中的功能作用。利用来自癌症基因组图谱(TCGA)-肉瘤(SARC)的数据进行生物信息学分析。LMS细胞系SK-UT-1和SK-LMS-1用作体外细胞模型。结果显示,KIF15高表达的LMS患者的生存率明显低于KIF15低表达的患者。敲低KIF15会减缓SK-UT-1和SK-LMS-1细胞的增殖,而过表达KIF15则会增加其增殖。免疫共沉淀实验证实内源性KIF15与DEK(由DEK原癌基因编码)之间存在相互作用。敲低KIF15促进DEK降解,而过表达KIF15则减缓DEK降解。在泛素化实验中,当KIF15表达被抑制时,观察到DEK多聚泛素化显著增加。USP15在细胞内与DEK和KIF15均存在物理相互作用。敲低USP15会降低DEK蛋白稳定性,并消除KIF15介导的DEK稳定作用。过表达USP15可增强DEK稳定性,但敲低KIF15会削弱该作用。过表达USP15可减少DEK多聚泛素化。敲低USP15会增加DEK多聚泛素化,并消除过表达KIF15对减少DEK多聚泛素化的作用。过表达DEK可增强SK-UT-1和SK-LMS-1细胞的增殖。敲低DEK会降低细胞增殖,并消除过表达KIF15对细胞增殖的作用。总之,本研究揭示了一种新机制,即KIF15通过增加USP15介导的去泛素化作用,防止DEK蛋白降解,从而增强LMS细胞增殖。

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