Morgado Leonor, Zeth Kornelius, Burmann Björn M, Maier Timm, Hiller Sebastian
Biozentrum, University of Basel, Basel, Switzerland.
J Biomol NMR. 2015 Apr;61(3-4):333-45. doi: 10.1007/s10858-015-9906-y. Epub 2015 Feb 1.
The insertase BamA is the central protein of the Bam complex responsible for outer membrane protein biogenesis in Gram-negative bacteria. BamA features a 16-stranded transmembrane β-barrel and five periplasmic POTRA domains, with a total molecular weight of 88 kDa. Whereas the structure of BamA has recently been determined by X-ray crystallography, its functional mechanism is not well understood. This mechanism comprises the insertion of substrates from a dynamic, chaperone-bound state into the bacterial outer membrane, and NMR spectroscopy is thus a method of choice for its elucidation. Here, we report solution NMR studies of different BamA constructs in three different membrane mimetic systems: LDAO micelles, DMPC:DiC7PC bicelles and MSP1D1:DMPC nanodiscs. The impact of biochemical parameters on the spectral quality was investigated, including the total protein concentration and the detergent:protein ratio. The barrel of BamA is folded in micelles, bicelles and nanodiscs, but the N-terminal POTRA5 domain is flexibly unfolded in the absence of POTRA4. Measurements of backbone dynamics show that the variable insertion region of BamA, located in the extracellular lid loop L6, features high local flexibility. Our work establishes biochemical preparation schemes for BamA, which will serve as a platform for structural and functional studies of BamA and its role within the Bam complex by solution NMR spectroscopy.
插入酶BamA是Bam复合物的核心蛋白,负责革兰氏阴性菌外膜蛋白的生物合成。BamA具有一个由16条链组成的跨膜β桶和五个周质POTRA结构域,总分子量为88 kDa。尽管最近通过X射线晶体学确定了BamA的结构,但其功能机制仍未完全了解。该机制包括将底物从动态的、与伴侣结合的状态插入细菌外膜,因此核磁共振波谱学是阐明其机制的首选方法。在这里,我们报告了在三种不同的膜模拟系统中对不同BamA构建体的溶液核磁共振研究:LDAO胶束、DMPC:DiC7PC双分子层和MSP1D1:DMPC纳米盘。研究了生化参数对光谱质量的影响,包括总蛋白浓度和去污剂与蛋白的比例。BamA的β桶在胶束、双分子层和纳米盘中折叠,但在没有POTRA4的情况下N端POTRA5结构域灵活展开。主链动力学测量表明,位于细胞外盖子环L6中的BamA可变插入区域具有较高的局部灵活性。我们的工作建立了BamA的生化制备方案,这将作为通过溶液核磁共振波谱学对BamA及其在Bam复合物中的作用进行结构和功能研究的平台。