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首页> 外文期刊>Genes to cells : >A molecular mechanism for autoinhibition of the tandem SH3 domains of p47phox, the regulatory subunit of the phagocyte NADPH oxidase.
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A molecular mechanism for autoinhibition of the tandem SH3 domains of p47phox, the regulatory subunit of the phagocyte NADPH oxidase.

机译:自抑制吞噬细胞NADPH氧化酶的调节亚基p47phox的串联SH3域的分子机制。

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摘要

The phagocyte NADPH oxidase is a multisubunit enzyme responsible for the production of reactive oxygen species. p47(phox) is a cytosolic component of the NADPH oxidase and plays an important role in the assembly of the activated complex. The structural determination of the tandem SH3 domains of p47(phox) is crucial for elucidation of the molecular mechanism of the activation of p47(phox). We determined the X-ray crystal structure of the tandem SH3 domains with the polybasic/autoinhibitory region (PBR/AIR) of p47(phox). The GAPPR sequence involved in PBR/AIR forms a left-handed polyproline type-II helix (PPII) and interacts with the conserved SH3 binding surfaces of the SH3 domains simultaneously. These SH3 domains are related by a 2-fold pseudosymmetry axis at the centre of the binding groove and interact with the single PPII helix formed by the GAPPR sequence with opposite orientation. In addition, a number of intra-molecular interactions among the SH3 domains, PBR/AIR and the linker tightly hold the architecture of the tandem SH3 domains into the compact structure and stabilize the autoinhibited form synergistically. Phosphorylation of the serine residues in PBR/AIR could destabilize and successively release the intra-molecular interactions. Thus, the overall structure could be rearranged from the autoinhibitory conformation to the active conformation and the PPII ligand binding surfaces on the SH3 domains are now unmasked, which enables their interaction with the target sequence in p22(phox).
机译:吞噬细胞NADPH氧化酶是负责产生活性氧的多亚基酶。 p47(phox)是NADPH氧化酶的胞质成分,在活化复合物的组装中起重要作用。 p47(phox)的串联SH3域的结构确定对于阐明p47(phox)激活的分子机制至关重要。我们确定了串联的SH3域的X射线晶体结构,其中具有p47(phox)的多元/自抑制区(PBR / AIR)。参与PBR / AIR的GAPPR序列形成左旋多脯氨酸II型螺旋(PPII),并同时与SH3域的保守SH3结合表面相互作用。这些SH3结构域在结合槽的中心与2倍假对称轴相关,并且与由GAPPR序列形成的具有相反方向的单个PPII螺旋​​相互作用。另外,SH3结构域,PBR / AIR和接头之间的许多分子内相互作用将串联SH3结构域的结构紧密地保持为紧凑结构,并协同稳定了自抑制形式。 PBR / AIR中丝氨酸残基的磷酸化可能会破坏稳定性,并随后释放分子内相互作用。因此,整体结构可以从自身抑制构象重新排列为活性构象,并且SH3域上的PPII配体结合表面现在已被掩盖,这使其能够与p22(phox)中的靶序列相互作用。

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