Pagani Ayelen, Villarreal Laura, Capdevila Mercè, Atrian Sílvia
Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain.
Mol Microbiol. 2007 Jan;63(1):256-69. doi: 10.1111/j.1365-2958.2006.05510.x. Epub 2006 Dec 5.
Crs5 is a Saccharomyces cerevisiae Metallothionein (MT), non-homologous to the paradigmatic Cu-thionein Cup1. Although considered a secondary copper-resistance agent, we show here that it determines survival under zinc overload in a CUP1-null background. Its overexpression prevents the deleterious effects exhibited by CUP1-CRS5-null cells when exposed to combined Zn/Cu, as it does the mouse MT1 Zn-thionein, but not Cup1. The detailed characterization of Crs5 in vivo and in vitro Zn(II)-, Cd(II)- and Cu(I)-binding abilities fully supports its resemblance to mammalian MTs. Hence, Crs5 exhibits a good divalent metal-binding ability, yielding homometallic, highly chiral and stable Zn and Cd complexes when expressed in media enriched with these metal ions. In Cu-supplemented cultures, heterometallic Zn,Cu complexes are recovered, unless aeration is kept to a minimum. These features define a Crs5 dual metal-binding behaviour that is significantly closer to Zn-thioneins than to Cu-thioneins. Protein sequence similarities fully support these findings. Overall, a Crs5 function in global metal cell homeostasis, based on its Zn-binding features, is glimpsed. The comparative evaluation of Crs5 in the framework of MT functional differentiation and evolution allows its consideration as a representative of the primeval eukaryotic forms that progressively evolved to give rise to the Zn-thionein lineage.
Crs5是一种酿酒酵母金属硫蛋白(MT),与典型的铜硫蛋白Cup1不同源。尽管它被认为是一种次要的铜抗性因子,但我们在此表明,在CUP1缺失的背景下,它决定了细胞在锌过载情况下的存活能力。它的过表达可防止CUP1 - CRS5缺失细胞在暴露于锌/铜组合时出现有害影响,就像小鼠MT1锌硫蛋白一样,但Cup1则不能。对Crs5在体内和体外与锌(II)、镉(II)和铜(I)结合能力的详细表征充分支持了它与哺乳动物金属硫蛋白的相似性。因此,Crs5表现出良好的二价金属结合能力,当在富含这些金属离子的培养基中表达时,能产生同金属、高度手性且稳定的锌和镉配合物。在添加铜的培养物中,除非将通气保持在最低限度,否则会回收异金属锌、铜配合物。这些特性定义了Crs5的双重金属结合行为,这种行为与锌硫蛋白的相似性明显高于与铜硫蛋白的相似性。蛋白质序列相似性充分支持了这些发现。总体而言,基于其锌结合特性,可以推测Crs5在细胞整体金属稳态中发挥作用。在金属硫蛋白功能分化和进化的框架内对Crs5进行比较评估,使其被视为原始真核生物形式的代表,这些形式逐渐进化产生了锌硫蛋白谱系。