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Circular Dichroism reveals evidence of coupling between immunoglobulin constant and variable region secondary structure.

机译:圆二色性揭示了免疫球蛋白恒定区和可变区二级结构之间偶联的证据。

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Antibodies (Ab) are bifunctional molecules with two domains, a constant region (C) that confers effector properties and a variable (V) region responsible of antigen (Ag) binding. Historically the C and V regions were considered to be functionally independent, with Ag specificity being solely determined by the V region. However, recent studies suggest that the C region can affect Ab fine specificity. This has led to the proposal that the C(H) domain influences the structure of the V region, thus affecting Ab affinity and fine specificity. An inference from this proposal is that V region identical monoclonal Abs (mAbs) differing in C region (eg isotype) would manifest different secondary structures arising from isotype-induced variation in the V-C regions after Ag binding. We hypothesized that such effects could translate into differences in Circular Dichroism (CD) upon Ag-Ab complexes formation. Consequently we studied the interaction of a set of V region identical IgG(1), IgG(2a), IgG(2b) and IgG(3) mAbs with glucuronoxylomannan (GXM). The native CD spectra of the pairs IgG(1)/IgG(2a) and IgG(3)/IgG(2b) were strikingly similar, implying similar secondary structure content. GXM binding by IgG(1), IgG(2a), IgG(2b) and IgG(3) produced different CD changes, with the pairs IgG(1)/IgG(2a) and IgG(3)/IgG(2b) again manifesting qualitatively similar trends in secondary structure changes. The magnitude of the changes differed among the isotypes with IgG(2a)>IgG(3)>IgG(2b)>IgG(1). These differences in CD changes were interpreted to reflect differences in V-C secondary structures.
机译:抗体(Ab)是具有两个域的双功能分子,一个恒定区(C)赋予效应子特性,另一个可变区(V)负责抗原(Ag)结合。历史上,C和V区被认为是功能独立的,而Ag特异性仅由V区决定。但是,最近的研究表明,C区可以影响Ab的特异性。这导致了一个建议,即C(H)域会影响V区的结构,从而影响Ab亲和力和优良的特异性。该提议的推论是,在C区(例如同种型)不同的V区相同的单克隆抗体(mAb)将表现出不同的二级结构,这种二级结构是由Ag结合后同型诱导的V-C区变异引起的。我们假设这样的影响可以转化为Ag-Ab复合物形成时圆二色性(CD)的差异。因此,我们研究了一组V区相同的IgG(1),IgG(2a),IgG(2b)和IgG(3)mAb与葡糖醛酸甘露聚糖(GXM)的相互作用。 IgG(1)/ IgG(2a)和IgG(3)/ IgG(2b)对的天然CD光谱非常相似,表明相似的二级结构含量。 IgG(1),IgG(2a),IgG(2b)和IgG(3)的GXM结合产生了不同的CD变化,再次是IgG(1)/ IgG(2a)和IgG(3)/ IgG(2b)对在二级结构变化中出现定性相似的趋势。在同种型中,IgG(2a)> IgG(3)> IgG(2b)> IgG(1)的变化幅度不同。 CD变化的这些差异被解释为反映V-C二级结构的差异。

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