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来自噬菌体λ的cro蛋白和λ阻遏蛋白结构的比较。

Comparison of the structures of cro and lambda repressor proteins from bacteriophage lambda.

作者信息

Ohlendorf D H, Anderson W F, Lewis M, Pabo C O, Matthews B W

出版信息

J Mol Biol. 1983 Sep 25;169(3):757-69. doi: 10.1016/s0022-2836(83)80169-7.

Abstract

The three-dimensional structures of cro repressor protein and of the amino-terminal domain of lambda repressor protein, both from bacteriophage lambda, are compared. The second and third alpha-helices, alpha 2 and alpha 3, are shown to have essentially identical conformations in the two proteins, confirming the significance of the amino acid sequence homology previously noted between these and other DNA binding proteins in the region corresponding to these helices. The correspondence between the two-helical units in cro and lambda repressor protein is better than the striking agreement noted previously between two-helical units in cro and catabolite gene-activator protein. Parts of the first alpha-helices of repressor and cro show a structural correspondence that suggests a revised sequence homology between the two proteins in their extreme amino-terminal regions. In particular, there is a short loop between the alpha 1 and alpha 2 helices of lambda repressor that is missing from cro. This structural difference may account for the observed differences found with different cros and repressors in the pattern of phosphates whose ethylation prevents the binding of these proteins to their specific recognition sites. Although the two proteins have strikingly similar alpha 2-alpha 3 helical units that are presumed to bind to DNA in an essentially similar manner, stereochemical restrictions prevent the alpha 2-alpha 3 units of the respective proteins aligning on the DNA in exactly the same way.

摘要

对来自噬菌体λ的cro阻遏蛋白和λ阻遏蛋白氨基末端结构域的三维结构进行了比较。结果表明,这两种蛋白质中的第二和第三α螺旋(α2和α3)具有基本相同的构象,这证实了先前在这些螺旋对应区域中这些蛋白质与其他DNA结合蛋白之间所观察到的氨基酸序列同源性的重要性。cro和λ阻遏蛋白中双螺旋单元之间的对应性比先前在cro和分解代谢基因激活蛋白中双螺旋单元之间所观察到的显著一致性更好。阻遏蛋白和cro的第一α螺旋部分显示出结构对应性,这表明这两种蛋白质在其极端氨基末端区域存在经修订的序列同源性。特别是,λ阻遏蛋白的α1和α2螺旋之间有一个短环,而cro中没有。这种结构差异可能解释了在不同的cro和阻遏蛋白中观察到的、其磷酸化阻止这些蛋白质与其特异性识别位点结合的模式差异。尽管这两种蛋白质具有惊人相似的α2 - α3螺旋单元,推测它们以基本相似的方式与DNA结合,但立体化学限制使得各自蛋白质的α2 - α3单元无法以完全相同的方式在DNA上对齐。

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