Jamison McDaniels C P, Jensen L T, Srinivasan C, Winge D R, Tullius T D
Department of Chemistry, The Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Biol Chem. 1999 Sep 17;274(38):26962-7. doi: 10.1074/jbc.274.38.26962.
Mac1 is a metalloregulatory protein that regulates expression of the high affinity copper transport system in the yeast Saccharomyces cerevisiae. Under conditions of high copper concentration, Mac1 represses transcription of genes coding for copper transport proteins. Mac1 binds to DNA sequences called copper response elements (CuREs), which have the consensus sequence 5'-TTTGC(T/G)C(A/G)-3'. Mac1 contains two zinc binding sites, a copper binding site, and the sequence motif RGRP, which has been found in other proteins to mediate binding to the minor groove of A/T-rich sequences in DNA. We have used hydroxyl radical footprinting, missing nucleoside, and methylation interference experiments to investigate the structure of the complex of the DNA binding domain of Mac1 (called here Mac1(t)) with the two CuRE sites found in the yeast CTR1 promoter. We conclude from these experiments that Mac1(t) binds in a modular fashion to DNA, with its RGRP AT-hook motif interacting with the TTT sequence at the 5' end of the CTR1 CuRE site, and with another DNA-binding module(s) binding in the adjacent major groove in the GCTCA sequence.
Mac1是一种金属调节蛋白,可调节酿酒酵母中高亲和力铜转运系统的表达。在高铜浓度条件下,Mac1会抑制编码铜转运蛋白的基因的转录。Mac1与称为铜反应元件(CuREs)的DNA序列结合,其共有序列为5'-TTTGC(T/G)C(A/G)-3'。Mac1包含两个锌结合位点、一个铜结合位点以及序列基序RGRP,在其他蛋白质中发现该基序可介导与DNA中富含A/T序列的小沟结合。我们利用羟基自由基足迹法、缺失核苷和甲基化干扰实验,研究了Mac1的DNA结合结构域(此处称为Mac1(t))与酵母CTR1启动子中发现的两个CuRE位点形成的复合物的结构。我们从这些实验中得出结论,Mac1(t)以模块化方式与DNA结合,其RGRP AT钩基序与CTR1 CuRE位点5'端的TTT序列相互作用,另一个DNA结合模块在GCTCA序列的相邻大沟中结合。