Deis Lindsay N, Wu Qinglin, Wang You, Qi Yang, Daniels Kyle G, Zhou Pei, Oas Terrence G
Department of Biochemistry, Duke University, Durham, NC 27710.
Department of Biochemistry, Duke University, Durham, NC 27710
Proc Natl Acad Sci U S A. 2015 Jul 21;112(29):9028-33. doi: 10.1073/pnas.1424724112. Epub 2015 Jul 8.
Staphylococcal protein A (SpA) is an important virulence factor from Staphylococcus aureus responsible for the bacterium's evasion of the host immune system. SpA includes five small three-helix-bundle domains that can each bind with high affinity to many host proteins such as antibodies. The interaction between a SpA domain and the Fc fragment of IgG was partially elucidated previously in the crystal structure 1FC2. Although informative, the previous structure was not properly folded and left many substantial questions unanswered, such as a detailed description of the tertiary structure of SpA domains in complex with Fc and the structural changes that take place upon binding. Here we report the 2.3-Å structure of a fully folded SpA domain in complex with Fc. Our structure indicates that there are extensive structural rearrangements necessary for binding Fc, including a general reduction in SpA conformational heterogeneity, freezing out of polyrotameric interfacial residues, and displacement of a SpA side chain by an Fc side chain in a molecular-recognition pocket. Such a loss of conformational heterogeneity upon formation of the protein-protein interface may occur when SpA binds its multiple binding partners. Suppression of conformational heterogeneity may be an important structural paradigm in functionally plastic proteins.
葡萄球菌蛋白A(SpA)是金黄色葡萄球菌的一种重要毒力因子,负责该细菌对宿主免疫系统的逃避。SpA包含五个小三螺旋束结构域,每个结构域都能与许多宿主蛋白(如抗体)高亲和力结合。先前在晶体结构1FC2中已部分阐明了SpA结构域与IgG的Fc片段之间的相互作用。尽管该先前结构提供了一些信息,但折叠不正确,仍留下许多重要问题未得到解答,例如与Fc结合的SpA结构域的三级结构的详细描述以及结合时发生的结构变化。在此,我们报道了与Fc结合的完全折叠的SpA结构域的2.3埃结构。我们的结构表明,结合Fc需要广泛的结构重排,包括SpA构象异质性普遍降低、多聚体界面残基的冻结以及分子识别口袋中SpA侧链被Fc侧链取代。当SpA结合其多个结合伴侣时,在形成蛋白质-蛋白质界面时可能会发生这种构象异质性的丧失。构象异质性的抑制可能是功能可塑性蛋白质中的一种重要结构模式。