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NDC80 复合物亚基的共调控决定了纺锤体组装检查点和有丝分裂的保真度。

Coregulation of NDC80 Complex Subunits Determines the Fidelity of the Spindle-Assembly Checkpoint and Mitosis.

机构信息

Division of Life Science, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong.

Department of Pathology, The University of Hong Kong, Hong Kong.

出版信息

Mol Cancer Res. 2024 May 2;22(5):423-439. doi: 10.1158/1541-7786.MCR-23-0828.

Abstract

UNLABELLED

NDC80 complex (NDC80C) is composed of four subunits (SPC24, SPC25, NDC80, and NUF2) and is vital for kinetochore-microtubule (KT-MT) attachment during mitosis. Paradoxically, NDC80C also functions in the activation of the spindle-assembly checkpoint (SAC). This raises an interesting question regarding how mitosis is regulated when NDC80C levels are compromised. Using a degron-mediated depletion system, we found that acute silencing of SPC24 triggered a transient mitotic arrest followed by mitotic slippage. SPC24-deficient cells were unable to sustain SAC activation despite the loss of KT-MT interaction. Intriguingly, our results revealed that other subunits of the NDC80C were co-downregulated with SPC24 at a posttranslational level. Silencing any individual subunit of NDC80C likewise reduced the expression of the entire complex. We found that the SPC24-SPC25 and NDC80-NUF2 subcomplexes could be individually stabilized using ectopically expressed subunits. The synergism of SPC24 downregulation with drugs that promote either mitotic arrest or mitotic slippage further underscored the dual roles of NDC80C in KT-MT interaction and SAC maintenance. The tight coordinated regulation of NDC80C subunits suggests that targeting individual subunits could disrupt mitotic progression and provide new avenues for therapeutic intervention.

IMPLICATIONS

These results highlight the tight coordinated regulation of NDC80C subunits and their potential as targets for antimitotic therapies.

摘要

未标记

NDC80 复合物(NDC80C)由四个亚基(SPC24、SPC25、NDC80 和 NUF2)组成,对有丝分裂过程中动粒-微管(KT-MT)的附着至关重要。矛盾的是,NDC80C 也在纺锤体组装检查点(SAC)的激活中起作用。这就提出了一个有趣的问题,即在 NDC80C 水平受损时,如何调节有丝分裂。使用去稳定域介导的耗尽系统,我们发现 SPC24 的急性沉默会引发短暂的有丝分裂停滞,随后是有丝分裂滑溜。尽管失去了 KT-MT 相互作用,SPC24 缺陷细胞无法维持 SAC 的激活。有趣的是,我们的结果表明,NDC80C 的其他亚基在翻译后水平上与 SPC24 一起被共同下调。沉默 NDC80C 的任何一个亚基同样会降低整个复合物的表达。我们发现,使用异位表达的亚基可以分别稳定 SPC24-SPC25 和 NDC80-NUF2 亚复合物。SPC24 下调与促进有丝分裂停滞或有丝分裂滑溜的药物协同作用进一步强调了 NDC80C 在 KT-MT 相互作用和 SAC 维持中的双重作用。NDC80C 亚基的紧密协调调节表明,针对单个亚基可能会破坏有丝分裂进程,并为治疗干预提供新途径。

意义

这些结果强调了 NDC80C 亚基的紧密协调调节及其作为抗有丝分裂治疗靶点的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5129/11063766/49b2fae9e4e9/423fig1.jpg

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