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Dissecting the dimerization motif of Enterococcus hirae's Zn(II)CopY

机译:解剖平肠球菌的Zn(II)CopY的二聚化基序

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The regulation of the copper homeostasis pathway in Enterococcus hirae is conducted through activity of the zinc metalloprotein Zn(II)CopY, which is a Cu(I)-responsive dimeric repressor (Cobine et al., Biochemistry 41:5822-5829, 2002). Its dimerization domain contains a C-terminal cysteine-rich metal-binding motif used for Cu(I) sensing adjacent to an aliphatic-rich repeating sequence, but it is unclear as to which regions contribute most to the interaction. To accomplish this, a synthetically produced CopY construct (CDG) was fused with solubility enhancement tags so the key components of the elements of the aliphatic repeat and metal-binding site could be probed for their dimerization activity. The resultant fusion constructs were tested using two independent methods. Isothermal titration calorimetry, an in vitro technique, was employed to determine dimer affinity thermodynamically. Protein fragment complementation, an in vivo technique, made it possible to rapidly screen homodimeric and heterodimeric complexes within live cells. The combination of in vivo and in vitro studies enabled the identification of CDG sequences that dimerize and sequences that do not, in addition to deciphering relative dimer affinity between all constructs screened. The in vivo technique allowed the formation of heterodimers to be tested for their ability to form specific complexes between dissimilar CDG analogs.
机译:平直肠球菌中的铜稳态途径的调节是通过锌金属蛋白Zn(II)CopY的活性来进行的,锌金属Zn(II)CopY是一种对Cu(I)有响应的二聚阻遏物(Cobine等人,Biochemistry 41:5822-5829,2002) 。它的二聚结构域包含一个C端富含半胱氨酸的金属结合基序,用于与富含脂肪族的重复序列相邻的Cu(I)传感,但尚不清楚哪个区域对相互作用的贡献最大。为此,将合成产生的CopY构建体(CDG)与溶解度增强标签融合在一起,以便可以探测脂族重复序列和金属结合位点的关键成分的二聚活性。使用两种独立的方法测试所得的融合构建体。等温滴定热量法是一种体外技术,用于热力学确定二聚体亲和力。蛋白质片段互补是一种体内技术,它使得在活细胞内快速筛选同型二聚体和异型二聚体成为可能。体内和体外研究的结合,除了破译所有筛选的构建体之间的相对二聚体亲和力之外,还能够鉴定二聚化的CDG序列和不二聚化的CDG序列。体内技术允许测试异二聚体的形成,以检测它们在不同的CDG类似物之间形成特异性复合物的能力。

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