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首页> 外文期刊>Journal of Molecular Biology >A key hydrophobic patch identified in an AAA+ protein essential for its in trans inhibitory regulation
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A key hydrophobic patch identified in an AAA+ protein essential for its in trans inhibitory regulation

机译:在AAA +蛋白中鉴定出的关键疏水性补丁对其反式抑制调节至关重要

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摘要

Bacterial enhancer binding proteins (bEBPs) are a subclass of the AAA + (ATPases Associated with various cellular Activities) protein family. They are responsible for σ54-dependent transcription activation during infection and function under many stressful growth conditions. The majority of bEBPs are regulated in their formation of ring-shaped hexameric self-assemblies via an amino-terminal domain through its phosphorylation or ligand binding. In contrast, the Escherichia coli phage shock protein F (PspF) is negatively regulated in trans by phage shock protein A (PspA). Up to six PspA subunits suppress PspF hexamer action. Here, we present biochemical evidence that PspA engages across the side of a PspF hexameric ring. We identify three key binding determinants located in a surface-exposed 'W56 loop' of PspF, which form a tightly packed hydrophobic cluster, the 'YLW' patch. We demonstrate the profound impact of the PspF W56 loop residues on ATP hydrolysis, the σ54 binding loop 1, and the self-association interface. We infer from single-chain studies that for complete PspF inhibition to occur, more than three PspA subunits need to bind a PspF hexamer with at least two binding to adjacent PspF subunits. By structural modelling, we propose that PspA binds to PspF via its first two helical domains. After PspF binding-induced conformational changes, PspA may then share structural similarities with a bEBP regulatory domain.
机译:细菌增强剂结合蛋白(bEBP)是AAA +(与各种细胞活性相关的ATPase)蛋白家族的一个子类。它们负责感染期间σ54依赖性转录激活,并在许多应激性生长条件下起作用。大多数bEBP通过其磷酸化或配体结合,通过氨基末端结构域调节形成环状六聚体自组装体。相反,大肠杆菌噬菌体休克蛋白F(PspF)被噬菌体休克蛋白A(PspA)反式负调控。多达六个PspA亚基抑制PspF六聚体作用。在这里,我们提供生化证据表明PspA跨过PspF六聚环的一侧。我们确定三个关键的绑定决定因素位于表面暴露的PspF的'W56环',形成紧密堆积的疏水簇,'YLW'补丁。我们证明了PspF W56环残基对ATP水解,σ54结合环1和自缔合界面的深远影响。我们从单链研究中推断,要想实现对PspF的完全抑制,需要三个以上的PspA亚基结合至少两个与相邻PspF亚基结合的PspF六聚物。通过结构建模,我们建议PspA通过其前两个螺旋结构域与PspF结合。在PspF结合诱导的构象变化后,PspA可能与bEBP调节域共享结构相似性。

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