Hennecke Gerrit, Nolte Jessica, Volkmer-Engert Rudolf, Schneider-Mergener Jens, Behrens Susanne
Abteilung Molekulare Genetik und Präparative Molekularbiologie, Institut für Mikrobiologie und Genetik, Georg-August-Universität, Grisebachstrasse 8, D-37077 Göttingen, Germany.
J Biol Chem. 2005 Jun 24;280(25):23540-8. doi: 10.1074/jbc.M413742200. Epub 2005 Apr 19.
The Escherichia coli periplasmic chaperone and peptidyl-prolyl isomerase (PPIase) SurA facilitates the maturation of outer membrane porins. Although the PPIase activity exhibited by one of its two parvulin-like domains is dispensable for this function, the chaperone activity residing in the non-PPIase regions of SurA, a sizable N-terminal domain and a short C-terminal tail, is essential. Unlike most cytoplasmic chaperones SurA is selective for particular substrates and recognizes outer membrane porins synthesized in vitro much more efficiently than other proteins. Thus, SurA may be specialized for the maturation of outer membrane proteins. We have characterized the substrate specificity of SurA based on its natural, biologically relevant substrates by screening cellulose-bound peptide libraries representing outer membrane proteins. We show that two features are critical for peptide binding by SurA: specific patterns of aromatic residues and the orientation of their side chains, which are found more frequently in integral outer membrane proteins than in other proteins. For the first time this sufficiently explains the capability of SurA to discriminate between outer membrane protein and non-outer membrane protein folding intermediates. Furthermore, peptide binding by SurA requires neither an active PPIase domain nor the presence of proline, indicating that the observed substrate specificity relates to the chaperone function of SurA. Finally, we show that SurA is capable of associating with the outer membrane. Together, our data support a model in which SurA is specialized to interact with non-native periplasmic outer membrane protein folding intermediates and to assist in their maturation from early to late outer membrane-associated steps.
大肠杆菌周质伴侣蛋白和肽基脯氨酰异构酶(PPIase)SurA促进外膜孔蛋白的成熟。尽管其两个类细小菌素结构域之一所表现出的PPIase活性对于该功能并非必需,但SurA的非PPIase区域(一个相当大的N端结构域和一个短的C端尾巴)中存在的伴侣活性却是必不可少的。与大多数细胞质伴侣蛋白不同,SurA对特定底物具有选择性,并且在体外识别合成的外膜孔蛋白比其他蛋白质更有效。因此,SurA可能专门用于外膜蛋白的成熟。我们通过筛选代表外膜蛋白的纤维素结合肽文库,基于其天然的、生物学相关的底物对SurA的底物特异性进行了表征。我们表明,两个特征对于SurA结合肽至关重要:芳香族残基的特定模式及其侧链的取向,这些在整合外膜蛋白中比在其他蛋白质中更频繁地出现。这首次充分解释了SurA区分外膜蛋白和非外膜蛋白折叠中间体的能力。此外,SurA结合肽既不需要活性PPIase结构域也不需要脯氨酸的存在,这表明观察到的底物特异性与SurA的伴侣功能有关。最后,我们表明SurA能够与外膜结合。总之,我们的数据支持一个模型,即SurA专门与非天然周质外膜蛋白折叠中间体相互作用,并协助它们从早期到晚期外膜相关步骤的成熟。