首页> 外文期刊>The Journal of biological chemistry >Targeted Protein Engineering Provides Insights into Binding Mechanism and Affinities of Bacterial Collagen Adhesins
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Targeted Protein Engineering Provides Insights into Binding Mechanism and Affinities of Bacterial Collagen Adhesins

机译:有针对性的蛋白质工程为细菌胶原蛋白的结合机制和亲和力提供了见解

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The collagen-binding bacterial proteins, Ace and Cna, are well characterized on the biochemical and structural level. Despite overall structural similarity, recombinant forms of the Ace and Cna ligand-binding domains exhibit significantly different affinities and binding kinetics for collagen type I (CI) in vitro. In this study, we sought to understand, in submolecular detail, the bases for these differences. Using a structure-based approach, we engineered Cna and Ace variants by altering specific structural elements within the ligand-binding domains. Surface plasmon resonance-based binding analysis demonstrated that mutations that are predicted to alter the orientation of the Ace and Cna N1 and N2 subdomains significantly affect the interaction between the MSCRAMM (microbial surface components recognizing adhesive matrix molecule) and CI in vitro, including affinity, association/dissociation rates and binding ratio. Moreover, we utilized this information to engineer an Ace variant with an 11,000-fold higher CI affinity than the parent protein. Finally, we noted that several engineered proteins that exhibited a weak interaction with CI recognized more sites on CI, suggesting an inverse correlation between affinity and specificity.
机译:胶原蛋白结合的细菌蛋白,ACE和CNA良好地表征了生物化学和结构水平。尽管总体结构相似性,ACE和CNA配体结合结构域的重组形式表现出显着不同的亲和力和体外胶原I(CI)的粘结动力学。在这项研究中,我们试图在剪报细节中理解这些差异的基础。使用基于结构的方法,通过改变配体结合结构域内的特定结构元素来设计CNA和ACE变体。基于表面等离子体共振的结合分析证明预测改变ACE和CNA N1和N2亚域的取向的突变显着影响MSCRMMM(微生物表面成分识别粘合剂基质分子)和CI体外的CI之间的相互作用,包括亲和力,关联/解离率和结合率。此外,我们利用这些信息来工程,以较高的Ci亲和力更高于母体蛋白质。最后,我们注意到几种具有与CI薄弱相互作用的工程化蛋白质在CI上识别出更多位点,表明亲和力与特异性之间的反比相关性。

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