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A new zinc binding fold underlines the versatility of zinc binding modules in protein evolution

机译:新的锌结合折叠突显了锌结合模块在蛋白质进化中的多功能性

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摘要

Many different zinc binding modules have been identified. Their abundance and variety suggests that the formation of zinc binding folds might be relatively common. We have determined the structure of CH1(1), a 27-residue peptide derived from the first cysteine/histidine-rich region (CH1) of CREB binding protein (CBP). This peptide forms a highly ordered zinc-dependent fold that is distinct from known folds. The structure differs from a subsequently determined structure of a larger region from the CH3 region of CBP, and the CH1(1) fold probably represents a nonphysiologically active form. Despite this, the fold is thermostable and tolerant to both multiple alanine mutations and changes in the zinc-ligand spacing. Our data support the idea that zinc binding domains may arise frequently. Additionally, such structures may prove useful as scaffolds for protein design, given their stability and robustness. [References: 33]
机译:已经鉴定出许多不同的锌结合模块。它们的丰度和多样性表明锌结合折叠的形成可能是相对普遍的。我们已经确定了CH1(1)的结构,CH1(1)是一种27个残基的肽,源自CREB结合蛋白(CBP)的第一个富含半胱氨酸/组氨酸的区域(CH1)。该肽形成与已知折叠不同的高度有序的锌依赖性折叠。该结构不同于随后确定的CBP CH3区域较大区域的结构,并且CH1(1)折叠可能代表了非生理活性形式。尽管如此,该折叠是热稳定的,并且对多种丙氨酸突变和锌-配体间距的变化均具有耐受性。我们的数据支持锌结合域可能频繁出现的想法。另外,鉴于其结构的稳定性和鲁棒性,这些结构可能被证明可用作蛋白质设计的支架。 [参考:33]

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