首页> 美国卫生研究院文献>Infection and Immunity >High-Affinity Interaction between Fibronectin and the Group B Streptococcal C5a Peptidase Is Unaffected by a Naturally Occurring Four-Amino-Acid Deletion That Eliminates Peptidase Activity
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High-Affinity Interaction between Fibronectin and the Group B Streptococcal C5a Peptidase Is Unaffected by a Naturally Occurring Four-Amino-Acid Deletion That Eliminates Peptidase Activity

机译:纤连蛋白和B组链球菌C5a肽酶之间的高亲和力相互作用不受天然消除肽酶活性的四氨基酸缺失的影响。

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摘要

The streptococcal C5a peptidase (ScpB) of group B streptococci (GBS) is found in virtually all clinical GBS isolates and is required for mucosal colonization in a neonatal mouse model. ScpB inhibits neutrophil chemotaxis by enzymatically cleaving the complement component C5a. We previously identified a second function of ScpB as a fibronectin (Fn) adhesin using phage display. However, phage display can identify low-affinity interactions. We therefore measured the affinity of both full-length recombinant ScpB (FL-ScpB) and the 110-amino-acid phage display fragment (Scp-PDF) for immobilized Fn using surface plasmon resonance. The affinity for Fn was very high for both FL-ScpB (equilibrium dissociation constant [KD] = 4.0 nM) and Scp-PDF (KD = 4.4 nM) and is consistent with a biologically significant role for the adhesin activity of ScpB. We also studied the Fn adhesin activity of a common natural variant of ScpB (ScpBΔ) that contains a 4-amino-acid deletion that eliminates peptidase activity. The integrity of scpB is otherwise maintained, suggesting that the Fn adhesin activity of ScpB may be responsible for its conservation in these strains. The affinities of both FL-ScpBΔ (KD = 2.4 nM) and ScpBΔ-PDF (KD = 1.4 nM) for Fn are unaffected by the deletion. Complementation in trans by both scpB and scpBΔ corrected the Fn-binding defect of an scpB deletion mutant GBS strain to an identical degree. The high affinity of ScpB for Fn and the maintenance of this affinity in ScpBΔ support our hypothesis that the Fn adhesin activity of scpB plays a role in virulence.
机译:B组链球菌(GBS)的链球菌C5a肽酶(ScpB)实际上在所有临床GBS分离物中都发现,并且是新生小鼠模型中粘膜定植所必需的。 ScpB通过酶切补体成分C5a抑制嗜中性粒细胞趋化性。我们先前使用噬菌体展示确定了ScpB的第二个功能是纤连蛋白(Fn)粘附素。但是,噬菌体展示可以识别低亲和力相互作用。因此,我们利用表面等离子体共振测量了全长重组ScpB(FL-ScpB)和110个氨基酸的噬菌体展示片段(Scp-PDF)对固定化Fn的亲和力。 Fn的亲和力对于FL-ScpB(平衡解离常数[KD] = 4.0 nM)和Scp-PDF(KD = 4.4 nM)都非常高,并且与ScpB的粘附素活性具有重要的生物学意义。我们还研究了ScpB(ScpBΔ)的常见自然变异的Fn粘附素活性,该变异包含一个消除了肽酶活性的4-氨基酸缺失。否则,将保持scpB的完整性,这表明ScpB的Fn粘附素活性可能是这些菌株中其保守性的原因。 FL-ScpBΔ(KD = 2.4 nM)和ScpBΔ-PDF(KD = 1.4 nM)对Fn的亲和力均不受删除的影响。 scpB和scpBΔ的反式互补可将scpB缺失突变型GBS菌株的Fn结合缺陷纠正到相同程度。 ScpB对Fn的高亲和力以及在ScpBΔ中保持这种亲和力支持了我们的假设,即scpB的Fn粘附素活性在毒力中起作用。

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