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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Crystal structure of human proteasome assembly chaperone PAC4 involved in proteasome formation
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Crystal structure of human proteasome assembly chaperone PAC4 involved in proteasome formation

机译:人类蛋白酶组件伴侣伴蛋白质组合伴侣蛋白组合伴蛋白酶体形成的晶体结构

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Abstract The 26S proteasome is a large protein complex, responsible for degradation of ubiquinated proteins in eukaryotic cells. Eukaryotic proteasome formation is a highly ordered process that is assisted by several assembly chaperones. The assembly of its catalytic 20S core particle depends on at least five proteasome‐specific chaperones, i.e., proteasome‐assembling chaperons 1–4 (PAC1–4) and proteasome maturation protein (POMP). The orthologues of yeast assembly chaperones have been structurally characterized, whereas most mammalian assembly chaperones are not. In the present study, we determined a crystal structure of human PAC4 at 1.90‐? resolution. Our crystallographic data identify a hydrophobic surface that is surrounded by charged residues. The hydrophobic surface is complementary to that of its binding partner, PAC3. The surface also exhibits charge complementarity with the proteasomal α4–5 subunits. This will provide insights into human proteasome‐assembling chaperones as potential anticancer drug targets.
机译:摘要26s蛋白酶体是一种大蛋白质复合物,负责真核细胞中悬垂的蛋白质的降解。真核蛋白酶体形成是一种高度有序的方法,由几个组装伴侣辅助。其催化20s核颗粒的组装取决于至少五个蛋白酶体特异性伴侣,即蛋白酶体组装伴侣1-4(PAC1-4)和蛋白酶体成熟蛋白(PAMPOM)。酵母组件伴侣的正交性是在结构上表现出来的,而大多数哺乳动物组件伴侣则不是。在本研究中,我们确定了1.90-的人PAC4的晶体结构。解析度。我们的晶体数据识别由带电残余物包围的疏水性表面。疏水表面与其结合配偶体的互补性PAC3。表面还与蛋白酶α4-5亚基表现出电荷互补性。这将为人类蛋白酶体组装伴侣提供洞察,作为潜在的抗癌药物靶标。

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