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拓展研究。确定并延长阿拉伯糖操纵子调节蛋白(AraC蛋白)中的结构域间连接子。

Reaching out. Locating and lengthening the interdomain linker in AraC protein.

作者信息

Eustance R J, Bustos S A, Schleif R F

机构信息

Biology Department, Johns Hopkins University, Baltimore, MD.

出版信息

J Mol Biol. 1994 Sep 30;242(4):330-8. doi: 10.1006/jmbi.1994.1584.

Abstract

A genetic method was developed to determine, in proteins, areas which are tolerant of insertions and deletions. Attractive candidates for these areas are linker regions. Such a region was found to include positions 171 to 178 in the Escherichia coli regulatory protein AraC. Independent biochemical methods identified amino acid residues 11 to 170 as the minimal dimerization domain of AraC, and amino acid residues 178 to 286 out of the 291 residue protein as the minimal DNA-binding domain. Hence, by both the genetic and biochemical approaches, the interdomain linking region was determined to include amino acid residues 171 to 177. The properties of altered proteins were examined using templates with AraC half-sites more widely separated than in the wild-type case. Both AraC protein containing an insertion in the interdomain linker region and a protein consisting of the minimal functional dimerization and DNA-binding domains separated by a 39 amino acid residue linker were able to bind to and function on such a DNA site. In vitro, the proteins with longer linkers bound substantially more stably than wild-type AraC to the DNA containing half-sites for AraC separated by an extra two helical turns of DNA. In vivo on an ara promoter with the more widely separated AraC half-sites, the proteins could activate transcription much better than wild-type AraC.

摘要

已开发出一种遗传方法来确定蛋白质中耐受插入和缺失的区域。这些区域的理想候选者是连接区。发现这样一个区域包括大肠杆菌调节蛋白AraC中的第171至178位。独立的生化方法确定氨基酸残基11至170为AraC的最小二聚化结构域,在291个残基的蛋白质中,氨基酸残基178至286为最小DNA结合结构域。因此,通过遗传和生化方法,确定结构域间连接区域包括氨基酸残基171至177。使用与野生型情况相比AraC半位点间隔更宽的模板来检查改变的蛋白质的性质。在结构域间连接区含有插入的AraC蛋白以及由被39个氨基酸残基的连接子隔开的最小功能性二聚化和DNA结合结构域组成的蛋白质,都能够结合到这样的DNA位点并在其上发挥功能。在体外,具有更长连接子的蛋白质比野生型AraC与含有被额外两圈DNA隔开的AraC半位点的DNA结合得更稳定。在体内,在具有间隔更宽的AraC半位点的ara启动子上,这些蛋白质比野生型AraC能更好地激活转录。

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