Matson Dzebo Maria, Blockhuys Stéphanie, Valenzuela Sebastian, Celauro Emanuele, Esbjörner Elin K, Wittung-Stafshede Pernilla
Department of Biology and Biological Engineering, Chalmers University of Technology, 412 96 Gothenburg, Sweden.
Comput Struct Biotechnol J. 2018 Oct 31;16:443-449. doi: 10.1016/j.csbj.2018.10.018. eCollection 2018.
The anaphase-promoting complex (APC) is involved in several processes in the cell cycle, most prominently it facilitates the separation of the sister chromatids during mitosis, before cell division. Because of the key role in the cell cycle, APC is suggested as a putative target for anticancer agents. We here show that the copper chaperone Atox1, known for shuttling copper in the cytoplasm from Ctr1 to ATP7A/B in the secretory pathway, interacts with several APC subunits. Atox1 interactions with APC subunits were discovered by mass spectrometry of co-immunoprecipitated samples and further confirmed using proximity ligation assays in HEK293T cells. Upon comparing wild-type cells with those in which the Atox1 gene had been knocked out, we found that in the absence of Atox1 protein, cells have prolonged G/M phases and a slower proliferation rate. Thus, in addition to copper transport for loading of copper-dependent enzymes, Atox1 may modulate the cell cycle by interacting with APC subunits.
后期促进复合物(APC)参与细胞周期中的多个过程,最显著的是在细胞分裂前的有丝分裂过程中,它促进姐妹染色单体的分离。由于在细胞周期中起关键作用,APC被认为是抗癌药物的一个潜在靶点。我们在此表明,铜伴侣蛋白Atox1,以在细胞质中从分泌途径中的Ctr1向ATP7A/B转运铜而闻名,它与多个APC亚基相互作用。通过对共免疫沉淀样品的质谱分析发现了Atox1与APC亚基的相互作用,并在HEK293T细胞中使用邻近连接分析法进一步证实。将野生型细胞与Atox1基因被敲除的细胞进行比较后,我们发现,在没有Atox1蛋白的情况下,细胞的G/M期延长,增殖速率减慢。因此,除了为依赖铜的酶加载铜的转运作用外,Atox1可能通过与APC亚基相互作用来调节细胞周期。