首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Programmed Cell Death Protein 5 Interacts with the Cytosolic Chaperonin Containing Tailless Complex Polypeptide 1 (CCT) to Regulate β-Tubulin Folding
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Programmed Cell Death Protein 5 Interacts with the Cytosolic Chaperonin Containing Tailless Complex Polypeptide 1 (CCT) to Regulate β-Tubulin Folding

机译:程序性细胞死亡蛋白5与包含无尾复合多肽1(CCT)的胞质伴侣蛋白相互作用调节β-管蛋白折叠。

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摘要

Programmed cell death protein 5 (PDCD5) has been proposed to act as a pro-apoptotic factor and tumor suppressor. However, the mechanisms underlying its apoptotic function are largely unknown. A proteomics search for binding partners of phosducin-like protein, a co-chaperone for the cytosolic chaperonin containing tailless complex polypeptide 1 (CCT), revealed a robust interaction between PDCD5 and CCT. PDCD5 formed a complex with CCT and β-tubulin, a key CCT-folding substrate, and specifically inhibited β-tubulin folding. Cryo-electron microscopy studies of the PDCD5·CCT complex suggested a possible mechanism of inhibition of β-tubulin folding. PDCD5 bound the apical domain of the CCTβ subunit, projecting above the folding cavity without entering it. Like PDCD5, β-tubulin also interacts with the CCTβ apical domain, but a second site is found at the sensor loop deep within the folding cavity. These orientations of PDCD5 and β-tubulin suggest that PDCD5 sterically interferes with β-tubulin binding to the CCTβ apical domain and inhibits β-tubulin folding. Given the importance of tubulins in cell division and proliferation, PDCD5 might exert its apoptotic function at least in part through inhibition of β-tubulin folding.
机译:程序性细胞死亡蛋白5(PDCD5)已被提议充当促凋亡因子和肿瘤抑制因子。然而,其凋亡功能的基础机制尚不清楚。蛋白质组学研究了光导蛋白样蛋白(胞质伴侣蛋白的无伴侣复合多肽1(CCT)的伴侣蛋白)的结合伴侣,揭示了PDCD5和CCT之间的牢固相互作用。 PDCD5与CCT和关键的CCT折叠底物β-微管蛋白形成复合物,并特异性抑制β-微管蛋白的折叠。 PDCD5·CCT复合物的低温电子显微镜研究表明抑制β微管蛋白折叠的可能机制。 PDCD5结合CCTβ亚基的顶端结构域,突出到折叠腔上方而没有进入折叠腔。与PDCD5一样,β-微管蛋白也与CCTβ顶端结构域相互作用,但是在折叠腔内深处的传感器环处发现了第二个位点。 PDCD5和β-微管蛋白的这些方向表明,PDCD5在空间上干扰β-微管蛋白与CCTβ顶端结构域的结合,并抑制β-微管蛋白折叠。考虑到微管蛋白在细胞分裂和增殖中的重要性,PDCD5可能至少部分通过抑制β-微管蛋白折叠来发挥其凋亡功能。

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