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Functional characterization of chaperonin containing T-complex polypeptide-1 and its conserved and novel substrates in Arabidopsis

机译:含有T-复合物多肽-1的伴侣素的功能表征及其拟南芥中的保守和新底物

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摘要

Chaperonin containing T-complex polypeptide-1 (CCT) is an evolutionarily conserved chaperonin multi-subunit complex that mediates protein folding in eukaryotes. It is essential for cell growth and survival in yeast and mammals, with diverse substrate proteins. However, only a few studies on plant CCT have been reported to date, due to the essentiality of CCT subunit genes and the large size of the complex. Here, we have investigated the structure and function of the Arabidopsis CCT complex in detail. The plant CCT consisted of eight subunits that assemble to form a high-molecular-mass protein complex, shown by diverse methods. CCT-deficient cells exhibited depletion of cortical microtubules, accompanied by a reduction in cellular alpha- and beta-tubulin levels due to protein degradation. Cycloheximide-chase assays suggested that CCT is involved in the folding of tubulins in plants. Furthermore, CCT interacted with PPX1, the catalytic subunit of protein phosphatase 4, and may participate in the folding of PPX1 as its substrate. CCT also interacted with Tap46, a regulatory subunit of PP2A family phosphatases, but Tap46 appeared to function in PPX1 stabilization, rather than as a CCT substrate. Collectively, our findings reveal the essential functions of CCT chaperonin in plants and its conserved and novel substrates.
机译:含有T-复合物多肽-1(CCT)的伴侣素是一种进化的伴侣蛋白多亚基复合物,其在真核生物中介导蛋白质折叠。对于酵母和哺乳动物的细胞生长和生存至关重要,具有不同的底物蛋白。然而,由于CCT亚基基因的基本和复合物的大尺寸,迄今为止仅迄今为止迄今为止迄今为止的植物CCT的研究。在这里,我们详细研究了拟南芥CCT复合体的结构和功能。植物CCT由八个亚单元组成,该亚单元组装以形成高分子肿块蛋白质复合物,通过各种方法所示。 CCT缺陷细胞表现出皮质微管的耗竭,伴随着蛋白质降解引起的细胞α和β-微管蛋白水平的降低。环己酰亚胺序列测定表明CCT参与植物中管蛋白的折叠。此外,CCT与PPX1相互作用,蛋白质磷酸酶4的催化亚基,并且可以参与PPX1作为其基材的折叠。 CCT还与TaP46相互作用,PP2A家族磷酸酶的调节亚基,但TAP46似乎在PPX1稳定中起作用,而不是CCT衬底。集体,我们的研究结果揭示了CCT伴侣在植物及其保守和新的基材中的基本功能。

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