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Random gene dissection: a tool for the investigation of protein structural organization

机译:基因随机解剖:研究蛋白质结构组织的工具

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摘要

To investigate the domain structure of proteins and the function of individual domains, proteins are usually subjected to limited proteolysis, followed by isolation of protein fragments and determination of their functions. We have developed an approach we call random gene dissection (RGD) for the identification of functional protein domains and their interdomain regions as well as their in vivo complementing fragments. The approach was tested on a two-domain protein, the type IIS restriction endonuclease BfiI. The collection of BfiI insertional mutants was screened for those that are endonucleolytically active and thus induce the SOS DNA repair response. Sixteen isolated mutants of the wild-type specificity contained insertions that were dispersed in a relatively large region of the target recognition domain. They split the gene into two complementing parts that separately were unable to induce the SOS DNA repair response. In contrast, all 19 mutants of relaxed specificity contained the cassette inserted into a very narrow interdomain region that connects BfiI domains responsible for DNA recognition and for cleavage. As expected, only the N-terminal fragment of BfiI was required to induce SOS response. Our results demonstrate that RGD can be used as a general method to identify complementing fragments and functional domains in enzymes.
机译:为了研究蛋白质的结构域结构和单个结构域的功能,通常对蛋白质进行有限的蛋白水解,然后分离蛋白质片段并确定其功能。我们已经开发出一种称为随机基因解剖(RGD)的方法,用于鉴定功能蛋白结构域及其域间区域以及体内互补片段。该方法是在两个域的蛋白质(IIS型限制性内切核酸酶BfiI)上测试的。筛选BfiI插入突变体的集合,以寻找具有内切核酸活性并因此诱导SOS DNA修复反应的突变体。野生型特异性的十六个分离的突变体包含分散在靶标识别域的较大区域中的插入。他们将基因分为两个互补部分,分别无法诱导SOS DNA修复反应。相比之下,所有19种具有松弛特异性的突变体均包含插入非常狭窄的域间区域的盒,该区域连接负责DNA识别和切割的BfiI域。如所期望的,仅需要BfiI的N-末端片段来诱导SOS应答。我们的结果表明,RGD可用作鉴定酶中互补片段和功能域的通用方法。

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