【2h】

Mutational studies on HslU and its docking mode with HslV

机译:HslU的突变研究及其与HslV的对接模式

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摘要

HslVU is an ATP-dependent prokaryotic protease complex. Despite detailed crystal and molecular structure determinations of free HslV and HslU, the mechanism of ATP-dependent peptide and protein hydrolysis remained unclear, mainly because the productive complex of HslV and HslU could not be unambiguously identified from the crystal data. In the crystalline complex, the I domains of HslU interact with HslV. Observations based on electron microscopy data were interpreted in the light of the crystal structure to indicate an alternative mode of association with the intermediate domains away from HslV. By generation and analysis of two dozen HslU mutants, we find that the amidolytic and caseinolytic activities of HslVU are quite robust to mutations on both alternative docking surfaces on HslU. In contrast, HslVU activity against the maltose-binding protein-SulA fusion protein depends on the presence of the I domain and is also sensitive to mutations in the N-terminal and C-terminal domains of HslU. Mutational studies around the hexameric pore of HslU seem to show that it is involved in the recognition/translocation of maltose-binding protein-SulA but not of chromogenic small substrates and casein. ATP-binding site mutations, among other things, confirm the essential role of the “sensor arginine” (R393) and the “arginine finger” (R325) in the ATPase action of HslU and demonstrate an important role for E321. Additionally, we report a better refined structure of the HslVU complex crystallized along with resorufin-labeled casein.
机译:HslVU是ATP依赖的原核蛋白酶复合体。尽管详细测定了游离HslV和HslU的晶体和分子结构,但尚不清楚ATP依赖性肽和蛋白质水解的机理,主要是因为无法从晶体数据中明确鉴定HslV和HslU的生产复合物。在晶体复合物中,HslU的I结构域与HslV相互作用。根据晶体结构解释了基于电子显微镜数据的观察结果,以表明与远离HslV的中间结构域缔合的另一种模式。通过生成和分析两个十二个HslU突变体,我们发现HslVU的酰胺分解和酪蛋白水解活性对于HslU的两个对接表面上的突变都非常强大。相反,HslVU对麦芽糖结合蛋白-SulA融合蛋白的活性取决于I结构域的存在,并且对HslU N末端和C末端结构域的突变也敏感。 HslU六聚体孔周围的突变研究似乎表明,它与麦芽糖结合蛋白-SulA的识别/转运有关,但不参与 生色小底物和酪蛋白。 ATP结合位点突变, 尤其要确认“传感器”的基本作用 精氨酸”(R393)和“精氨酸指”(R325) HslU的ATPase作用并证明对E321具有重要作用。 此外,我们报告了HslVU复合体的更好的改进结构 与间苯二酚标记的酪蛋白一起结晶。

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