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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The periplasmic domain of Escherichia coli outer membrane protein A can undergo a localized temperature dependent structural transition
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The periplasmic domain of Escherichia coli outer membrane protein A can undergo a localized temperature dependent structural transition

机译:大肠杆菌外膜蛋白A的周质结构域可以经历局部温度依赖性结构转变

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摘要

Gram-negative bacteria such as Escherichia coli are surrounded by two membranes with a thin peptidoglycan (PG)-layer located in between them in the periplasmic space. The outer membrane protein A (OmpA) is a 325-residue protein and it is the major protein component of the outer membrane of E. coli. Previous structure determinations have focused on the N-terminal fragment (residues 1-171) of OmpA, which forms an eight stranded transmembrane β-barrel in the outer membrane. Consequently it was suggested that OmpA is composed of two independently folded domains in which the N-terminal β-barrel traverses the outer membrane and the C-terminal domain (residues 180-325) adopts a folded structure in the periplasmic space. However, some reports have proposed that full-length OmpA can instead refold in a temperature dependent manner into a single domain forming a larger transmembrane pore. Here, we have determined the NMR solution structure of the C-terminal periplasmic domain of E. coli OmpA (OmpA180-325). Our structure reveals that the C-terminal domain folds independently into a stable globular structure that is homologous to the previously reported PG-associated domain of Neisseria meningitides RmpM. Our results lend credence to the two domain structure model and a PG-binding function for OmpA, and we could indeed localize the PG-binding site on the protein through NMR chemical shift perturbation experiments. On the other hand, we found no evidence for binding of OmpA180-325 with the TonB protein. In addition, we have also expressed and purified full-length OmpA (OmpA1-325) to study the structure of the full-length protein in micelles and nanodiscs by NMR spectroscopy. In both membrane mimetic environments, the recombinant OmpA maintains its two domain structure that is connected through a flexible linker. A series of temperature-dependent HSQC experiments and relaxation dispersion NMR experiments detected structural destabilization in the bulge region of the periplasmic domain of OmpA above physiological temperatures, which may induce dimerization and play a role in triggering the previously reported larger pore formation.
机译:革兰氏阴性细菌如大肠埃希氏菌是由两个膜具有薄的肽聚糖(PG)层位于它们之间在周质空间所包围。外膜蛋白A(OmpA的)是一种325个残基的蛋白,它是大肠杆菌外膜的主要蛋白成分。以前结构测定都集中在菌OmpA的N-末端片段(残基1-171),其形成在所述外膜的八个链跨膜β桶。因此有人建议的OmpA是由在其中的N-末端β桶穿过外膜和C端结构域(残基180-325)采用在周质空间的折叠结构两个可独立折叠的结构域。然而,一些报道已经提出了全长的OmpA可以代替重折叠的温度依赖的方式成一个单一的结构域形成较大的跨膜孔。在这里,我们已经确定大肠杆菌的OmpA(OmpA180-325)的C末端的周质结构域的NMR结构溶液。我们的结构表明,C末端结构域独立地折叠成稳定的球状结构,它是同源的脑膜炎奈瑟氏球菌的RMPM先前报道的PG相关的域。我们的研究结果使人相信这两个域结构模型和一个的OmpA PG-绑定功能,我们确实可以通过本地化NMR化学位移扰动实验蛋白质的PG-结合位点。在另一方面,我们发现与蛋白质的TonB的OmpA180-325结合的证据。此外,我们还表达并纯化的全长的OmpA(OmpA1-325)通过NMR光谱研究全长蛋白在微胶粒和纳米盘的结构。在这两种膜模拟环境中,所述重组的OmpA认为通过柔性接头连接的两个结构域结构。一系列的依赖于温度的HSQC实验和松弛分散NMR实验检测的结构不稳定的OmpA在上述生理温度的周质结构域,其可诱导的二聚化和在触发之前报道较大孔的形成中发挥作用的凸起区域。

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