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On the mechanism of chaperone activity of the small heat-shock protein ofMethanococcus jannaschii

机译:小分子热激蛋白伴侣蛋白活性的机理研究詹氏甲烷球菌

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摘要

The small heat-shock protein (sHSP) from Methanococcus jannaschii (Mj HSP16.5) forms a homomeric complex of 24 subunits and has an overall structure of a multiwindowed hollow sphere with an external diameter of ≈120 Å and an internal diameter of ≈65 Å with six square “windows” of ≈17 Å across and eight triangular windows of ≈30 Å across. This sHSP has been known to protect other proteins from thermal denaturation. Using purified single-chain monellin as a substrate and a series of methods such as protease digestion, antibody binding, and electron microscopy, we show that the substrates bind to Mj HSP16.5 at a high temperature (80°C) on the outside surface of the sphere and are prevented from forming insoluble substrate aggregates in vitro. Circular dichroism studies suggest that a very small, if any, conformational change occurs in sHSP even at 80°C, but substantial conformational changes of the substrate are required for complex formation at 80°C. Furthermore, deletion mutation studies of Mj HSP16.5 suggest that the N-terminal region of the protein has no structural role but may play an important kinetic role in the assembly of the sphere by “preassembly condensation” ofmultiple monomers before final assembly of the sphere.
机译:来自詹氏甲烷球菌(Mj HSP16.5)的小的热休克蛋白(sHSP)形成由24个亚基组成的同分异构体,并具有多窗口空心球的整体结构,其外部直径≈120Å,内径≈65 Å具有六个≈17Å的正方形“窗口”和八个≈30Å的三角形窗口。已知此sHSP可保护其他蛋白质免于热变性。使用纯化的单链monellin作为底物和一系列方法(例如蛋白酶消化,抗体结合和电子显微镜),我们显示了底物在高温(80°C)在外表面上与Mj HSP16.5结合并防止在体外形成不溶性底物聚集体。圆二色性研究表明,即使在80°C时,sHSP也会发生很小的构象变化,但在80°C形成复合物时,底物的构象也需要大量变化。此外,对Mj HSP16.5的缺失突变研究表明,该蛋白的N末端区域没有结构作用,但可能通过“预组装缩合”在球的组装中起重要的动力学作用。最终组装球体之前先添加多种单体。

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