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Decoding the molecular design principles underlying Ca 2+ binding to βγ-crystallin motifs

机译:解释Ca 2+与βγ-晶状蛋白基序结合的分子设计原理

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摘要

Numerous proteins belonging to the recently expanded βγ- crystallin superfamily bind Ca 2+ at the double-clamp N/D-N/D-X 1-X 2-S/T-S motif. However, there have been no attempts to understand the intricacies involving Ca 2+ binding, such as the determinants of Ca 2+-binding affinity and their contributions to gain in stability. This work is an in-depth analysis of understanding the modes and determinants of Ca 2+ binding to βγ-crystallin motifs. We have performed extensive naturally occurring substitutions from related proteins on the βγ-crystallin domains of flavollin, a low-affinity Ca 2+-binding protein, and clostrillin, a moderate-affinity protein. We monitored the consequences of these modifications on Ca 2+ binding by isothermal titration calorimetry, thermal stability and conformational and crystal structure analyses. We demonstrate that Ca 2+ binding to the two sites of a βγ-domain is interdependent and that the presence of Arg at the fifth position disables a site. A change from Thr to Ser, or vice versa, influences Ca 2+-binding affinity, highlighting the basis of diversity found in these domains. A subtle change in the first site has a greater influence on Ca 2+ binding than a similar alteration in the second site. Thus, the second site is more variable in nature. Replacing an acidic or hydrophobic residue in a binding site alters the Ca 2+-binding properties drastically. While it appears from their binding site sequence that these domains have evolved randomly, our examination illustrates the subtlety in the design of these modules. Decoding such design schemes would aid in our understanding of the functional themes underlying differential Ca 2+ binding and in predicting these in emerging sequence information.
机译:属于最近扩展的βγ-晶状蛋白超家族的许多蛋白质在双钳位N / D-N / D-X 1-X 2-S / T-S基序上结合Ca 2+。但是,尚未尝试了解涉及Ca 2+结合的复杂性,例如Ca 2+结合亲和力的决定因素及其对获得稳定性的贡献。这项工作是深入了解Ca 2+与βγ-晶状蛋白基序结合的方式和决定因素的深入分析。我们已经在黄素蛋白(一种低亲和力的Ca 2+结合蛋白)和clostrillin(一种中等亲和力的蛋白)的βγ-晶状蛋白域上进行了相关蛋白的广泛天然替代。我们通过等温滴定热分析,热稳定性以及构象和晶体结构分析监测了这些修饰对Ca 2+结合的影响。我们证明,Ca 2+与βγ-结构域的两个位点的结合是相互依赖的,并且在第五个位置上Arg的存在会禁用一个位点。从Thr变为Ser或反之亦然,这会影响Ca 2+结合亲和力,突出显示了在这些域中发现的多样性基础。与第二位置的类似变化相比,第一位置的细微变化对Ca 2+结合的影响更大。因此,第二个站点本质上更具可变性。取代结合位点的酸性或疏水残基会大大改变Ca 2+的结合特性。从它们的结合位点序列来看,这些域是随机进化的,但我们的研究表明,这些模块的设计很微妙。解码此类设计方案将有助于我们理解差异Ca 2+结合的功能主题,并有助于预测新兴序列信息中的这些主题。

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