首页> 外文期刊>Neoplasia: an international journal for oncology research >CAND1 Promotes PLK4-Mediated Centriole Overduplication and Is Frequently Disrupted in Prostate Cancer
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CAND1 Promotes PLK4-Mediated Centriole Overduplication and Is Frequently Disrupted in Prostate Cancer

机译:Cand1促进PLK4介导的拐杖过度统计,经常在前列腺癌中扰乱

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Centrosomes play a crucial role in the maintenance of genome stability by orchestrating bipolar mitotic spindle formation. The centrosome normally duplicates precisely once before mitosis in a process that is extensively regulated by protein degradation including SKP1-Cullin 1 (CUL1)-F-box (SCF) E3 ubiquitin ligase activity. The core SCF component CUL1 has recently been found to be required to suppress the formation of supernumerary centrosomes and centrioles, the core-forming units of centrosomes. Here, we identify the CUL1-interacting protein cullin-associated and neddylation-dissociated 1 (CAND1) as a novel centrosomal protein with a role in centriole duplication control. CAND1 was found to synergize with Polo-like kinase 4 (PLK4), a master regulator of centriole biogenesis, in the induction of centriole overduplication. We provide evidence that CAND1 functions in this process by increasing PLK4 protein stability. Furthermore, mutants of CUL1 that lack the ability to interact with CAND1 and are unable to assemble functional E3 ubiquitin ligase complexes were impaired in their ability to restrain aberrant daughter centriole synthesis. To corroborate a role of CAND1 in human carcinogenesis, we analyzed a series of prostate adenocarcinomas and found altered expression of CAND1 on the mRNA or protein level in 52.9% and 40.8%, respectively, of the tumor samples analyzed. These results highlight the role of altered SCF components in cancer in general and encourage further studies to explore the SCF-CAND1 axis for the development of novel predictive biomarkers and therapeutic approaches in prostate cancer.
机译:CentroSomes通过协调双极性纺织纺锤体形成在维持基因组稳定性方面发挥至关重要的作用。在通过蛋白质降解,包括SKP1-CULLIN 1(CUL1)-F盒(SCF)E3泛素连接酶活性的蛋白质降解,在菌丝病的过程中,在菌丝中的过程中通常正常重复一次。最近发现核心SCF组分CUL1抑制了富含叠加中心的形成,以核心成形单元的中心的形成。在此,我们将Cul1与Centrosomal蛋白相关和NeDdylation - 解离的1(Cand1)鉴定为新的Centrosomal蛋白,其作用在拐子重复控制中。发现Cand1在诱导Centriole过度销的诱导中,用Polo样激酶4(PLK4)和厘氢生物发生器的母型调节器进行促进。我们通过增加PLK4蛋白质稳定性,提供证据表明CAND1在该过程中的功能。此外,缺乏与CANC1相互作用的能力的CUL1的突变体在其抑制异常子厘氢合成的能力中受到损害的能力。为了证实Cand1在人类致癌中的作用,我们分析了一系列前列腺腺癌,发现分析肿瘤样品的mRNA或蛋白质水平的MRNA或蛋白质水平的Cand1的改变表达。这些结果突出了癌症中改变的SCF组分的作用,并鼓励进一步研究,探讨SCF-Cand1轴,以便开发新型预测生物标志物和前列腺癌中治疗方法。

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