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酶与单核苷酸的相互作用:三种不同的折叠结构共享用于识别ATP的共同结构元件。

Enzyme-mononucleotide interactions: three different folds share common structural elements for ATP recognition.

作者信息

Denessiouk K A, Lehtonen J V, Johnson M S

机构信息

Department of Biochemistry and Pharmacy, Abo Akademi University, Turku, Finland.

出版信息

Protein Sci. 1998 Aug;7(8):1768-71. doi: 10.1002/pro.5560070811.

Abstract

Three ATP-dependent enzymes with different folds, cAMP-dependent protein kinase, D-Ala:D-Ala ligase and the alpha-subunit of the alpha2beta2 ribonucleotide reductase, have a similar organization of their ATP-binding sites. The most meaningful similarity was found over 23 structurally equivalent residues in each protein and includes three strands each from their beta-sheets, in addition to a connecting loop. The equivalent secondary structure elements in each of these enzymes donate four amino acids forming key hydrogen bonds responsible for the common orientation of the "AMP" moieties of their ATP-ligands. One lysine residue conserved throughout the three families binds the alpha-phosphate in each protein. The common fragments of structure also position some, but not all, of the equivalent residues involved in hydrophobic contacts with the adenine ring. These examples of convergent evolution reinforce the view that different proteins can fold in different ways to produce similar structures locally, and nature can take advantage of these features when structure and function demand it, as shown here for the common mode of ATP-binding by three unrelated proteins.

摘要

三种具有不同折叠方式的ATP依赖性酶,即环磷酸腺苷依赖性蛋白激酶、D-丙氨酸:D-丙氨酸连接酶和α2β2核糖核苷酸还原酶的α亚基,它们的ATP结合位点具有相似的结构组织。在每种蛋白质的23个结构等效残基上发现了最有意义的相似性,除了一个连接环外,还包括各自β折叠中的三条链。这些酶中每一种的等效二级结构元件贡献四个氨基酸,形成负责其ATP配体“AMP”部分共同取向的关键氢键。在这三个家族中都保守的一个赖氨酸残基在每种蛋白质中结合α磷酸基团。结构的共同片段也定位了一些(但不是全部)与腺嘌呤环进行疏水接触的等效残基。这些趋同进化的例子强化了这样一种观点,即不同的蛋白质可以以不同的方式折叠,从而在局部产生相似的结构,并且当结构和功能需要时,自然界可以利用这些特征,就像这里展示的三种不相关蛋白质的ATP结合常见模式一样。

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