首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Antigen-antibody interactions: elucidation of the epitope and strain-specificity of a monoclonal antibody directed against the pilin protein adherence binding domain of Pseudomonas aeruginosa strain K.
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Antigen-antibody interactions: elucidation of the epitope and strain-specificity of a monoclonal antibody directed against the pilin protein adherence binding domain of Pseudomonas aeruginosa strain K.

机译:抗原抗体相互作用:针对铜绿假单胞菌菌株K的菌毛蛋白粘附结合域的单克隆抗体的表位和菌株特异性的阐明。

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摘要

The C-terminal region of Pseudomonas aeruginosa strain K (PAK) pilin comprises both an epitope for the strain-specific monoclonal antibody PK99H, which blocks pilus-mediated adherence, and the adherence binding domain for buccal and tracheal epithelial cells. The PK99H epitope was located in sequence 134-140 (Asp-Glu-Gln-Phe-Ile-Pro-Lys) by using a single alanine replacement analysis on the 17-residue synthetic peptide corresponding to the PAK C-terminal sequence 128-144. Indeed, a 7-residue peptide corresponding to this sequence was shown to have a similar binding affinity to that of the native conformationally constrained (disulfide bridged) 17-residue peptide. This epitope was found to contain two critical residues (Phe137 and Lys140) and one nonessential residue (Gln136). Interestingly, the peptide, Phe-Ile-Pro-Lys, which constitutes the four most important side chains for antibody binding did not bind to PK99H. It was of interest to investigate the structural basis of the strain-specificity of PK99H utilizing naturally occurring pilin sequences. Therefore, all different residues found in the sequence corresponding to the PK99H epitope of the four other strains (PAO, CD4, K122-4, and KB7) were substituted one at a time in the PAK sequence and the changes in binding affinity of these analogs to the antibody PK99H were determined by competitive ELISA. The strain-specificity of PK99H for strains PAO, K122-4, and KB7 can be explained by the accumulated sequence changes in these strains, and at least two amino acid changes were required to explain the strain-specificity of PK99H. Similarly, cross-reactivity of PK99H with CD4 can be explained by the fact that there was only one side chain responsible for decreasing binding affinity compared to the PAK sequence.
机译:铜绿假单胞菌K(PAK)菌毛蛋白的C端区域既包含菌株特异性单克隆抗体PK99H的表位,后者阻断菌毛介导的粘附,又包含颊和气管上皮细胞的粘附结合域。通过对与PAK C端序列128-144相对应的17个残基合成肽进行单个丙氨酸置换分析,将PK99H表位定位在序列134-140(Asp-Glu-Gln-Phe-Ile-Pro-Lys)中。实际上,显示出对应于该序列的7残基肽具有与天然构象约束的(二硫键桥接的)17残基肽相似的结合亲和力。发现该表位包含两个关键残基(Phe137和Lys140)和一个非必需残基(Gln136)。有趣的是,构成抗体结合的四个最重要侧链的肽Phe-Ile-Pro-Lys不与PK99H结合。利用天然存在的菌毛蛋白序列研究PK99H的菌株特异性的结构基础是令人感兴趣的。因此,在对应于其他四个菌株(PAO,CD4,K122-4和KB7)的PK99H表位的序列中发现的所有不同残基一次被替换为PAK序列中的一个,并且这些类似物的结合亲和力发生了变化通过竞争性ELISA确定抗PK99H的抗体。 PA99,K122-4和KB7菌株对PK99H的菌株特异性可以通过这些菌株中累积的序列变化来解释,并且至少需要两个氨基酸变化才能解释PK99H的菌株特异性。同样,PK99H与CD4的交叉反应性可以通过以下事实来解释:与PAK序列相比,只有一条侧链负责降低结合亲和力。

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