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Characterization of Fibrinogen Binding by Glycoproteins Srr1 and Srr2 of Streptococcus agalactiae

机译:糖蛋白酶糖蛋白酶结合的纤维蛋白原结合的表征及嗜氨基乳链球菌的SRR2

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The serine-rich repeat glycoproteins of Gram-positive bacteria comprise a large family of cell wall proteins. Streptococcus agalactiae (group B streptococcus, GBS) expresses either Srr1 or Srr2 on its surface, depending on the strain. Srr1 has recently been shown to bind fibrinogen, and this interaction contributes to the pathogenesis of GBS meningitis. Although strains expressing Srr2 appear to be hypervirulent, no ligand for this adhesin has been described. We now demonstrate that Srr2 also binds human fibrinogen and that this interaction promotes GBS attachment to endothelial cells. Recombinant Srr1 and Srr2 bound fibrinogen in vitro, with affinities of KD = 2.1 × 10?5 and 3.7 × 10?6 m, respectively, as measured by surface plasmon resonance spectroscopy. The binding site for Srr1 and Srr2 was localized to tandem repeats 6–8 of the fibrinogen Aα chain. The structures of both the Srr1 and Srr2 binding regions were determined and, in combination with mutagenesis studies, suggest that both Srr1 and Srr2 interact with a segment of these repeats via a “dock, lock, and latch” mechanism. Moreover, properties of the latch region may account for the increased affinity between Srr2 and fibrinogen. Together, these studies identify how greater affinity of Srr2 for fibrinogen may contribute to the increased virulence associated with Srr2-expressing strains.
机译:革兰氏阳性细菌的富含丝氨酸的重复糖蛋白包含大量的细胞壁壁蛋白。链球菌胆碱(B组链球菌,GBS)表达其表面上的SRR1或SRR2,取决于菌株。最近已显示SRR1染色纤维蛋白原,这种相互作用有助于GBS脑膜炎的发病机制。尽管表达SRR2的菌株似乎是超舒密性的,但已经描述了该粘合剂的配体。我们现在证明SRR2还结合人纤维蛋白原,并且该相互作用促进了GBS附着于内皮细胞。通过表面等离子体共振光谱法测量,重组SRR1和SRR2结合的纤维蛋白原,分别具有Kd = 2.1×10·5×5和3.7×10·6μm的亲和力。 SRR1和SRR2的结合位点定位为纤维蛋白原Aα链的串联重复6-8。确定SRR1和SRR2结合区域的结构,并与诱变研究组合,表明SRR1和SRR2通过“码头,锁和锁存器”机构与这些重复的片段相互作用。此外,闩锁区域的性质可以考虑SRR2和纤维蛋白原之间的增加的亲和力。在一起,这些研究确定了SRR2对纤维蛋白原的更大亲和力可以有助于增加与表达SRR2表达菌株相关的毒力。

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