Department of Clinical Pharmacology and Visceral Research, University of Berne, Berne, Switzerland.
FEMS Microbiol Lett. 2010 Jan;302(1):69-75. doi: 10.1111/j.1574-6968.2009.01833.x. Epub 2009 Oct 26.
Intracellular copper routing in Enterococcus hirae is accomplished by the CopZ copper chaperone. Under copper stress, CopZ donates Cu(+) to the CopY repressor, thereby releasing its bound zinc and abolishing repressor-DNA interaction. This in turn induces the expression of the cop operon, which encodes CopY and CopZ, in addition to two copper ATPases, CopA and CopB. To gain further insight into the function of CopZ, the yeast two-hybrid system was used to screen for proteins interacting with the copper chaperone. This led to the identification of Gls24, a member of a family of stress response proteins. Gls24 is part of an operon containing eight genes. The operon was induced by a range of stress conditions, but most notably by copper. Gls24 was overexpressed and purified, and was shown by surface plasmon resonance analysis to also interact with CopZ in vitro. Circular dichroism measurements revealed that Gls24 is partially unstructured. The current findings establish a novel link between Gls24 and copper homeostasis.
肠球菌属细胞内铜的运输是由 CopZ 铜伴侣蛋白完成的。在铜胁迫下,CopZ 将 Cu(+) 捐赠给 CopY 阻遏物,从而释放其结合的锌并消除阻遏物-DNA 相互作用。这反过来又诱导 cop 操纵子的表达,该操纵子除了编码 CopY 和 CopZ 外,还编码两个铜 ATP 酶 CopA 和 CopB。为了更深入地了解 CopZ 的功能,使用酵母双杂交系统筛选与铜伴侣蛋白相互作用的蛋白质。这导致了鉴定应激反应蛋白家族的成员 Gls24。Gls24 是包含八个基因的操纵子的一部分。该操纵子受到多种应激条件的诱导,但最显著的是铜。Gls24 被过表达和纯化,并通过表面等离子体共振分析表明它也在体外与 CopZ 相互作用。圆二色性测量显示 Gls24 部分无结构。目前的研究结果确立了 Gls24 与铜稳态之间的新联系。