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首页> 外文期刊>Molecular cell >ClpX-mediated remodeling of mu transpososomes: selective unfolding of subunits destabilizes the entire complex.
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ClpX-mediated remodeling of mu transpososomes: selective unfolding of subunits destabilizes the entire complex.

机译:ClpX介导的mu转座体的重塑:亚基的选择性展开会破坏整个复合物的稳定性。

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摘要

E. coli ClpX, a member of the Clp/Hsp100 family of ATPases, remodels multicomponent complexes and facilitates ATP-dependent degradation. Here, we analyze the mechanism by which ClpX destabilizes the exceedingly stable Mu transpososome, a natural substrate for remodeling rather than degradation. We find that ClpX has the capacity to globally unfold transposase monomers, the building blocks of the transpososome. A biochemical probe for protein unfolding reveals that ClpX also unfolds MuA subunits during remodeling reactions, but that not all subunits have their structure extensively modified. In fact, direct recognition and unfolding of a single transposase subunit are sufficient for ClpX to destabilize the entire transpososome. Thus, the ability of ClpX to unfold proteins is sufficient to explain its role in both complex destabilization and ATP-dependent proteolysis.
机译:大肠杆菌ClpX是Clp / Hsp100 ATPase家族的成员,可重塑多组分复合物并促进ATP依赖性降解。在这里,我们分析了ClpX破坏极其稳定的Mu转座体的机制,Mu转座体是重塑而不是降解的天然底物。我们发现,ClpX具有全局展开转座酶单体(转座体的组成部分)的能力。蛋白质解折叠的生化探针显示,ClpX在重塑反应期间也解折叠了MuA亚基,但并非所有亚基的结构都得到了广泛修饰。实际上,单个转座酶亚基的直接识别和展开足以使ClpX破坏整个转座体的稳定性。因此,ClpX展开蛋白质的能力足以解释其在复杂去稳定化和ATP依赖性蛋白水解中的作用。

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