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NudC-like protein 2 restrains centriole amplification by stabilizing HERC2

机译:NUDC样蛋白2通过稳定HERC2来限制厘米扩增

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摘要

Centriole duplication is tightly controlled to occur once per cell cycle, and disruption of this synchrony causes centriole amplification, which is frequently observed in many cancers. Our previous work showed that nuclear distribution gene C (NudC)-like protein 2 (NudCL2) localizes to centrosomes; however, little is known about the role of NudCL2 in the regulation of centrosome function. Here, we find that NudCL2 is required for accurate centriole duplication by stabilizing the E3 ligase HECT domain and RCC1-like domain-containing protein 2 (HERC2). Knockout (KO) of NudCL2 using CRISPR/Cas9-based genome editing or depletion of NudCL2 using small interfering RNA causes significant centriole amplification. Overexpression of NudCL2 significantly suppresses hydroxyurea-induced centriole overduplication. Quantitative proteomic analysis reveals that HERC2 is downregulated in NudCL2 KO cells. NudCL2 is shown to interact with and stabilize HERC2. Depletion of HERC2 leads to the similar defects to that in NudCL2-downregulated cells, and ectopic expression of HERC2 effectively rescues the centriole amplification caused by the loss of NudCL2, whereas the defects induced by HERC2 depletion cannot be reversed by exogenous expression of NudCL2. Either loss of NudCL2 or depletion of HERC2 leads to the accumulation of ubiquitin-specific peptidase 33 (USP33), a centrosomal protein that positively regulates centriole duplication. Moreover, knockdown of USP33 reverses centriole amplification in both NudCL2 KO and HERC2-depleted cells. Taken together, our data suggest that NudCL2 plays an important role in maintaining the fidelity of centriole duplication by stabilizing HERC2 to control USP33 protein levels, providing a previously undescribed mechanism restraining centriole amplification.
机译:将离心重复紧密控制,以每种细胞周期发生一次,并且这种同步的破坏会导致沿拐角扩增,这在许多癌症中经常观察到。我们以前的作品表明,核分布基因C(NUDC) - 样蛋白2(NUDCL2)定位为CENTOSOMES;然而,关于Nudcl2在Centosome功能调节中的作用很少。在这里,我们发现通过稳定E3连接酶的统计结构域和RCC1样域2(HERC2)来精确离心重复所需的Nudcl2。使用小干扰RNA使用基于CRISPR / CAS9的基因组的Nudcl2基因组编辑或耗尽Nudcl2的Nudcl2敲除引起了显着的沿离心放大。 NUDCL2的过度表达显着抑制羟基脲诱导的离心机过度统计。定量蛋白质组学分析表明,HERC2在NUDCL2 KO细胞中下调。 Nudcl2显示与Herc2相互作用并稳定。 HERC2的耗竭导致与Nudcl2下调的细胞中的类似缺陷,HERC2的异位表达有效地抵押由NUDCL2损失引起的离心扩增,而HERC2耗竭诱导的缺陷不能通过NUDCL2的外源表达逆转。无论是Nudcl2还是Herc2的衰退都会导致泛素特异性肽酶33(USP33)的积累,即积极调节离心重复的中心蛋白。此外,USP33的敲低逆转Nudcl2 KO和HERC2耗尽细胞中的Centriole扩增。我们的数据表明,Nudcl2通过稳定Herc2来控制USP33蛋白水平来维持沿离心重复的保真度,提供先前未描述的机制抑制厘米抑制厘米扩增的机制。

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