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通过同源扫描诱变确定的Im9与核酸内切酶毒素大肠杆菌素E9的蛋白质-蛋白质相互作用特异性。

Protein-protein interaction specificity of Im9 for the endonuclease toxin colicin E9 defined by homologue-scanning mutagenesis.

作者信息

Li W, Dennis C A, Moore G R, James R, Kleanthous C

机构信息

School of Biological Sciences, University of East Anglia, Norwich, NR4 7TJ, United Kingdom.

出版信息

J Biol Chem. 1997 Aug 29;272(35):22253-8. doi: 10.1074/jbc.272.35.22253.

DOI:10.1074/jbc.272.35.22253
PMID:9268373
Abstract

The colicin DNase-specific immunity proteins interact with the endonuclease domain of the bacterial toxin colicin E9 with dissociation constants that span the millimolar to femtomolar affinity range. Among the non-cognate interactions Im2 shows the strongest binding toward the E9 DNase domain with a Kd of 10(-8) M, 6 orders of magnitude weaker than that of the cognate immunity protein Im9. Based on a NMR structure of Im9 that shows it to be a 4-helix protein, we have conducted a mutagenic scan in which elements of Im9 secondary structure were substituted into Im2 to precisely delineate regions that define specificity. Eleven chimeras were constructed, and their biological cross-reactivity toward colicins E2 and E9 was evaluated. From this set of mutants seven proteins were purified, and the Kd for their interaction with the E9 DNase domain was measured by a combination of stopped-flow fluorescence and subunit exchange kinetics. Our results show that immunity specificity is dominated by residues on helix II, accounting for 5 orders of magnitude binding specificity relative to Im2, and that packing interactions of helix II with its neighbor helix I and the loop connecting helix III with helix IV play minor roles. The conformational stability of these chimeric proteins was also determined. Proteins displaying an Im9 phenotype were all more stable than the parent Im2 protein, and surprisingly some chimeras were significantly more stable than either Im2 or Im9.

摘要

大肠杆菌素脱氧核糖核酸酶特异性免疫蛋白与细菌毒素大肠杆菌素E9的内切核酸酶结构域相互作用,其解离常数范围跨越毫摩尔至飞摩尔亲和力范围。在非同源相互作用中,Im2对E9脱氧核糖核酸酶结构域表现出最强的结合,解离常数为10^(-8) M,比同源免疫蛋白Im9弱6个数量级。基于Im9的核磁共振结构显示它是一种4螺旋蛋白,我们进行了诱变扫描,将Im9二级结构元件替换到Im2中,以精确描绘定义特异性的区域。构建了11个嵌合体,并评估了它们对大肠杆菌素E2和E9的生物学交叉反应性。从这组突变体中纯化了7种蛋白,并通过停流荧光和亚基交换动力学相结合的方法测量了它们与E9脱氧核糖核酸酶结构域相互作用的解离常数。我们的结果表明,免疫特异性主要由螺旋II上的残基决定,相对于Im2,其结合特异性占5个数量级,并且螺旋II与其相邻螺旋I以及连接螺旋III和螺旋IV的环的堆积相互作用起次要作用。还测定了这些嵌合蛋白的构象稳定性。表现出Im9表型的蛋白都比亲本Im2蛋白更稳定,令人惊讶的是,一些嵌合体比Im2或Im9都更稳定。

相似文献

1
Protein-protein interaction specificity of Im9 for the endonuclease toxin colicin E9 defined by homologue-scanning mutagenesis.通过同源扫描诱变确定的Im9与核酸内切酶毒素大肠杆菌素E9的蛋白质-蛋白质相互作用特异性。
J Biol Chem. 1997 Aug 29;272(35):22253-8. doi: 10.1074/jbc.272.35.22253.
2
Dual recognition and the role of specificity-determining residues in colicin E9 DNase-immunity protein interactions.双重识别以及特异性决定残基在大肠杆菌素E9脱氧核糖核酸酶-免疫蛋白相互作用中的作用。
Biochemistry. 1998 Aug 25;37(34):11771-9. doi: 10.1021/bi9808621.
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Specificity in protein-protein recognition: conserved Im9 residues are the major determinants of stability in the colicin E9 DNase-Im9 complex.蛋白质-蛋白质识别中的特异性:保守的Im9残基是大肠杆菌素E9 DNase-Im9复合物稳定性的主要决定因素。
Biochemistry. 1998 Jan 13;37(2):476-85. doi: 10.1021/bi971884a.
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Protein-protein interactions in colicin E9 DNase-immunity protein complexes. 2. Cognate and noncognate interactions that span the millimolar to femtomolar affinity range.大肠杆菌素E9核酸酶-免疫蛋白复合物中的蛋白质-蛋白质相互作用。2. 跨越毫摩尔至飞摩尔亲和力范围的同源和非同源相互作用。
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Highly discriminating protein-protein interaction specificities in the context of a conserved binding energy hotspot.在保守的结合能热点背景下高度特异的蛋白质-蛋白质相互作用特异性
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Identification of critical residues in the colicin E9 DNase binding region of the Im9 protein.鉴定Im9蛋白的大肠杆菌素E9脱氧核糖核酸酶结合区域中的关键残基。
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Experimental and computational analyses of the energetic basis for dual recognition of immunity proteins by colicin endonucleases.大肠杆菌素核酸内切酶对免疫蛋白双重识别的能量基础的实验与计算分析。
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J Mol Biol. 1996 Aug 2;260(5):731-42. doi: 10.1006/jmbi.1996.0433.

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