Lu A-Lien, Wright Patrick M
Department of Biochemistry and Molecular Biology, School of Medicine, University of Maryland, Baltimore, Maryland 21201, USA.
Biochemistry. 2003 Apr 8;42(13):3742-50. doi: 10.1021/bi0269198.
Escherichia coli MutY is an adenine and a weak guanine DNA glycosylase involved in reducing mutagenic effects of 7,8-dihydro-8-oxoguanine (8-oxoG). The [4Fe-4S] cluster of MutY is ligated by four conserved cysteine residues and has been shown to be important in substrate recognition. Here, we show that the C199A mutant MutY is very insoluble and can be denatured and renatured to regain activity only if iron and sulfur are present in the renaturation steps. The solubility of C199A-MutY can be improved substantially as a fusion protein containing streptococcal protein G (GB1 domain) at its N-terminus. Here, we describe the first biochemical characterization of the purified GB1-C199A-MutY protein which contains a [3Fe-4S] cluster. The apparent dissociation constant (K(d)) values of GB1-C199A-MutY with both A/G and A/8-oxoG mismatches are slightly higher than that of the wild-type protein. The DNA glycosylase activity of GB1-C199A-MutY is comparable to that of the wild-type enzyme. Interestingly, the major difference between the C199A-MutY and wild-type proteins is their trapping activities (formation of Schiff base intermediates). The GB1-C199A-MutY mutant has a weaker trapping activity than the wild-type enzyme. Importantly, highly expressed GB1-C199A-MutY and untagged C199A-MutY can complement mutY mutants; however, GB1-C199A-MutY and untagged C199A-MutY cannot complement mutY mutants in vivo when both proteins are poorly expressed. Therefore, an intact [4Fe-4S] cluster domain is critical for MutY stability and activity.
大肠杆菌MutY是一种腺嘌呤和弱鸟嘌呤DNA糖基化酶,参与降低7,8-二氢-8-氧代鸟嘌呤(8-氧代G)的诱变作用。MutY的[4Fe-4S]簇由四个保守的半胱氨酸残基连接,并且已证明在底物识别中很重要。在这里,我们表明C199A突变体MutY非常不溶,并且只有在复性步骤中存在铁和硫时才能变性并复性以恢复活性。作为在其N端含有链球菌蛋白G(GB1结构域)的融合蛋白,C199A-MutY的溶解度可以大大提高。在这里,我们描述了纯化的含有[3Fe-4S]簇的GB1-C199A-MutY蛋白的首次生化特性。GB1-C199A-MutY与A/G和A/8-氧代G错配的表观解离常数(K(d))值略高于野生型蛋白。GB1-C199A-MutY的DNA糖基化酶活性与野生型酶相当。有趣的是,C199A-MutY和野生型蛋白之间的主要差异在于它们的捕获活性(席夫碱中间体的形成)。GBl-C199A-MutY突变体的捕获活性比野生型酶弱。重要的是,高表达的GB1-C199A-MutY和无标签的C199A-MutY可以互补mutY突变体;然而,当两种蛋白表达不佳时,GB1-C199A-MutY和无标签的C199A-MutY在体内不能互补mutY突变体。因此,完整的[4Fe-4S]簇结构域对于MutY的稳定性和活性至关重要。