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Structure of a Blm10 complex reveals common mechanisms for proteasome binding and gate opening.

机译:Blm10复合物的结构揭示了蛋白酶体结合和门打开的常见机制。

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摘要

The proteasome is an abundant protease that is critically important for numerous cellular pathways. Proteasomes are activated in vitro by three known classes of proteins/complexes, including Blm10/PA200. Here, we report a 3.4 A resolution crystal structure of a proteasome-Blm10 complex, which reveals that Blm10 surrounds the proteasome entry pore in the 1.2 MDa complex to form a largely closed dome that is expected to restrict access of potential substrates. This architecture and the observation that Blm10 induces a disordered proteasome gate structure challenge the assumption that Blm10 functions as an activator of proteolysis in vivo. The Blm10 C terminus binds in the same manner as seen for 11S activators and inferred for 19S/PAN activators and indicates a unified model for gate opening. We also demonstrate that Blm10 acts to maintain mitochondrial function. Consistent with the structural data, the C-terminal residues of Blm10 are needed for this activity.
机译:蛋白酶体是一种丰富的蛋白酶,对于许多细胞途径至关重要。蛋白酶体在体外被三类已知的蛋白质/复合物激活,包括Blm10 / PA200。在这里,我们报告了蛋白酶体-Blm10复合物的3.4 A分辨率晶体结构,该结构揭示了Blm10围绕1.2 MDa复合物中的蛋白酶体进入孔,形成了一个基本上封闭的圆顶,该圆顶有望限制潜在底物的进入。 Blm10诱导无序的蛋白酶体门结构的这种体系结构和观察结果挑战了Blm10充当体内蛋白水解激活剂的假设。 Blm10 C末端以与11S激活子相同的方式结合,并推断出19S / PAN激活子的方式,并表示统一的门打开模型。我们还证明了Blm10起到维持线粒体功能的作用。与结构数据一致,该活性需要Blm10的C末端残基。

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