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在细胞分裂过程中,Ephexin4第41位丝氨酸的磷酸化通过激活RhoG促进染色体排列。

Phosphorylation of Ephexin4 at Ser-41 contributes to chromosome alignment via RhoG activation in cell division.

作者信息

Yasutake Ryuji, Kuwajima Hiroki, Yuki Ryuzaburo, Tanaka Junna, Saito Youhei, Nakayama Yuji

机构信息

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

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

出版信息

J Biol Chem. 2025 Jan;301(1):108084. doi: 10.1016/j.jbc.2024.108084. Epub 2024 Dec 13.

Abstract

Ephexin proteins are guanine nucleotide exchange factors for the Rho GTPases. We reported that Ephexin4 regulates M-phase progression downstream of phosphorylated EphA2, a receptor-type tyrosine kinase, through RhoG activation; however, the regulation of Ephexin4 during M phase remains unknown. In this study, a novel Ephexin4 phosphorylation site was identified at Ser41, exclusively in M phase. Ephexin4 knockdown prolonged the duration of M phase by activating the spindle assembly checkpoint, at which BubR1 was localized at the kinetochores of the misaligned chromosomes. This delay was alleviated by re-expression of wild-type, but not S41A Ephexin4. The Ephexin4 knockdown caused chromosome misalignment and reduced the RhoG localization to the plasma membrane. These phenotypes were rescued by re-expression of wild type and phospho-mimic S41E mutant, but not the S41A mutant. Consistently, S41E mutant enhanced active RhoG levels, even in the interphase. Regardless of the Ephexin4 knockdown, active RhoG-G12V was localized at the plasma membrane. Furthermore, Ephexin4 knockdown exacerbated vincristine-induced chromosome misalignment, which was prevented by re-expressing the wild-type but not S41A Ephexin4. Overexpression of wild type and S41E mutant, but not S41A mutant, resulted in an increased number of Madin-Darby canine kidney cysts with cells inside the lumen, indicating disruption of epithelial morphogenesis by deregulating Ephexin4/RhoG signaling in cell division. Our results suggest that Ephexin4 undergoes phosphorylation at Ser41 in cell division, and the phosphorylation is required for chromosome alignment through RhoG activation. Combined with mitosis-targeting agents, inhibition of Ephexin4 phosphorylation may represent a novel strategy for cancer chemotherapy.

摘要

Ephexin蛋白是Rho GTP酶的鸟嘌呤核苷酸交换因子。我们曾报道,Ephexin4通过RhoG激活在磷酸化的EphA2(一种受体型酪氨酸激酶)下游调节M期进程;然而,M期期间Ephexin4的调节机制仍不清楚。在本研究中,一个新的Ephexin4磷酸化位点在Ser41被鉴定出来,且仅在M期存在。敲低Ephexin4通过激活纺锤体组装检查点延长了M期的持续时间,此时BubR1定位于未对齐染色体的动粒上。野生型Ephexin4的重新表达可缓解这种延迟,但S41A突变体则不能。敲低Ephexin4导致染色体未对齐,并减少了RhoG在质膜上的定位。野生型和磷酸化模拟物S41E突变体的重新表达可挽救这些表型,但S41A突变体则不能。一致的是,即使在间期,S41E突变体也能提高活性RhoG水平。无论Ephexin4是否被敲低,活性RhoG-G12V都定位于质膜上。此外,敲低Ephexin4会加剧长春新碱诱导的染色体未对齐,而重新表达野生型Ephexin4可预防这种情况,但S41A突变体则不能。野生型和S41E突变体的过表达,但不是S41A突变体,导致腔内含细胞的Madin-Darby犬肾囊肿数量增加,表明在细胞分裂中通过解除对Ephexin4/RhoG信号的调控破坏了上皮形态发生。我们的结果表明,Ephexin4在细胞分裂过程中在Ser41处发生磷酸化,且这种磷酸化对于通过RhoG激活实现染色体对齐是必需的。与有丝分裂靶向药物联合使用时,抑制Ephexin4磷酸化可能代表一种新的癌症化疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/210b/11758948/daa634ad7e05/gr1.jpg

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