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The role of the molecular chaperone CCT in protein folding and mediation of cytoskeleton-associated processes: implications for cancer cell biology

机译:分子伴侣CCT在蛋白质折叠和细胞骨架相关过程的介导中的作用:对癌细胞生物学的影响

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The chaperonin-containing tailless complex polypeptide 1 (CCT) is required in vivo for the folding of newly synthesized tubulin and actin proteins and is thus intrinsically connected to all cellular processes that rely on the microtubule and actin filament components of the cytoskeleton, both of which are highly regulated and dynamic assemblies. In addition to CCT acting as a protein folding oligomer, further modes of CCT action mediated either by the CCT oligomer itself or via CCT subunits in their monomeric forms can influence processes associated with assembled actin filaments and microtubules. Thus, there is an extended functional role for CCT with regard to its major folding substrates with a complex interplay between CCT as folding machine for tubulin/actin and as a modulator of processes involving the assembled cytoskeleton. As cell division, directed cell migration, and invasion are major drivers of cancer development and rely on the microtubule and actin filament components of the cytoskeleton, CCT activity is fundamentally linked to cancer. Furthermore, the CCT oligomer also folds proteins connected to cell cycle progression and interacts with several other proteins that are linked to cancer such as tumor-suppressor proteins and regulators of the cytoskeleton, while CCT monomer function can influence cell migration. Thus, understanding CCT activity is important for many aspects of cancer cell biology and may reveal new ways to target tumor growth and invasion.
机译:体内需要含有伴侣蛋白的无尾复合多肽1(CCT)才能折叠新合成的微管蛋白和肌动蛋白,因此固有地与依赖于细胞骨架的微管和肌动蛋白丝成分的所有细胞过程相关,两者是高度规范和动态的程序集。除了充当蛋白质折叠寡聚体的CCT以外,由CCT寡聚体本身或通过单体形式的CCT亚基介导的其他CCT作用模式也可能影响与组装的肌动蛋白丝和微管有关的过程。因此,关于CCT的主要折叠底物,CCT具有扩展的功能作用,CCT作为微管蛋白/肌动蛋白的折叠机和涉及组装的细胞骨架的过程的调节剂之间具有复杂的相互作用。由于细胞分裂,定向细胞迁移和侵袭是癌症发展的主要驱动力,并且依赖于细胞骨架的微管和肌动蛋白丝成分,因此CCT活性与癌症基本相关。此外,CCT寡聚物还会折叠与细胞周期进程相关的蛋白质,并与其他与癌症相关的蛋白质相互作用,例如肿瘤抑制蛋白和细胞骨架调节剂,而CCT单体功能会影响细胞迁移。因此,了解CCT活性对于癌细胞生物学的许多方面都很重要,并且可能揭示靶向肿瘤生长和侵袭的新方法。

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