首页> 外文期刊>The journal of immunology >Mutational Analyses Reveal that the Staphylococcal Immune Evasion Molecule Sbi and Complement Receptor 2 (CR2) Share Overlapping Contact Residues on C3d: Implications for the Controversy Regarding the CR2/C3d Cocrystal Structure
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Mutational Analyses Reveal that the Staphylococcal Immune Evasion Molecule Sbi and Complement Receptor 2 (CR2) Share Overlapping Contact Residues on C3d: Implications for the Controversy Regarding the CR2/C3d Cocrystal Structure

机译:突变分析显示,葡萄球菌免疫逃逸分子Sbi和补体受体2(CR2)在C3d上共有重叠的接触残基:对CR2 / C3d共晶体结构的争议的含义

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We recently characterized an interaction between the Staphylococcus aureus immune evasion molecule Staphylococcus aureus binder of Ig (Sbi) and complement C3, an interaction mediated primarily through the binding of C3d(g) to Sbi domain IV. Events related to these studies prompted us to investigate via mutagenesis the binding interface of C3d for Sbi domain IV (Sbi-IV), as well as to revisit the controversial issue of the complement receptor 2 (CR2) binding site of C3d. Specifically, we had shown that Sbi domains III and IV fragment binding to C3dg inhibited the latter’s binding to CR2. Moreover, a published cocrystal structure of C3d bound to complement inhibitory C-terminal domain of extracellular fibrinogen-binding protein (Efb-C), a structural and functional homolog of Sbi-IV, showed Efb-C binding to a region on the concave face of C3d previously implicated in CR2 binding by our mutagenesis data but not confirmed in the CR2(short consensus repeat [SCR]1–2):C3d cocrystal structure. We have now analyzed by surface plasmon resonance the binding of a series of variant C3dg molecules to biosensor-bound Sbi-IV or CR2(SCR1–2). We found that mutations to the concave face acidic pocket of C3d significantly affected binding to both Sbi-IV and CR2, although there was divergence in which residues were most important in each case. By contrast, no binding defects were seen for mutations made to the sideface of C3d implicated from the cocrystal structure to be involved in binding CR2(SCR1–2). The results with Sbi-IV suggest a mode of binding highly similar to that visualized in the Efb-C:C3d complex. The results with CR2 confirm our earlier mapping studies and cast even further doubt on the physiologic relevance of the complex visualized in the C3d:CR2 cocrystal.
机译:我们最近表征了Ig(Sbi)的金黄色葡萄球菌免疫逃避分子金黄色葡萄球菌结合物与补体C3之间的相互作用,这种相互作用主要是通过C3d(g)与Sbi域IV的结合而介导的。与这些研究相关的事件促使我们通过诱变研究C3d与Sbi域IV(Sbi-IV)的结合界面,并重新审视C3d补体受体2(CR2)结合位点的争议性问题。具体来说,我们已经证明Sbi域III和IV片段与C3dg的结合会抑制后者与CR2的结合。此外,已发表的C3d共晶体结构与胞外纤维蛋白原结合蛋白(Efb-C)的抑制性C末端结构域结合,是Sbi-IV的结构和功能同源物,显示Efb-C结合到凹面上的区域先前通过我们的诱变数据牵涉到CR2结合的C3d的数量,但未在CR2中证实(短共有重复[SCR] 1-2):C3d共晶体结构。现在,我们已经通过表面等离子体共振分析了一系列变体C3dg分子与生物传感器结合的Sbi-IV或CR2(SCR1-2)的结合。我们发现C3d凹面酸性口袋的突变显着影响了与Sbi-IV和CR2的结合,尽管在每种情况下残基最重要。相比之下,对于共晶结构中涉及结合CR2(SCR1-2)的C3d侧面突变,没有发现结合缺陷。 Sbi-IV的结果表明结合的模式与Efb-C:C3d复合物中可见的结合模式非常相似。 CR2的结果证实了我们较早的作图研究,并进一步怀疑了C3d:CR2共晶体中可见的复合物的生理相关性。

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