Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, FL 32610, USA.
Genes (Basel). 2013 Mar 26;4(2):134-51. doi: 10.3390/genes4020134.
In all domains of life, sliding clamps tether DNA polymerases to DNA to increase the processivity of synthesis. Clamp loaders load clamps onto DNA in a multi-step process that requires ATP binding and hydrolysis. Like other AAA+ proteins, clamp loaders contain conserved Walker A and Walker B sequence motifs, which participate in ATP binding and hydrolysis, respectively. Mutation of the glutamate residue in Walker B motifs (or DExx-boxes) in AAA+ proteins typically reduces ATP hydrolysis by as much as a couple orders of magnitude, but has no effect on ATP binding. Here, the Walker B Glu in each of the four active ATP sites of the eukaryotic clamp loader, RFC, was mutated to Gln and Ala separately, and ATP binding- and hydrolysis-dependent activities of the quadruple mutant clamp loaders were characterized. Fluorescence-based assays were used to measure individual reaction steps required for clamp loading including clamp binding, clamp opening, DNA binding and ATP hydrolysis. Our results show that the Walker B mutations affect ATP-binding-dependent interactions of RFC with the clamp and DNA in addition to reducing ligand-dependent ATP hydrolysis activity. Here, we show that the Walker B glutamate is required for ATP-dependent ligand binding activity, a previously unknown function for this conserved Glu residue in RFC.
在生命的所有领域中,滑动夹子将 DNA 聚合酶固定在 DNA 上,以提高合成的连续性。夹子加载器通过多步过程将夹子加载到 DNA 上,该过程需要 ATP 结合和水解。与其他 AAA+ 蛋白一样,夹子加载器包含保守的 Walker A 和 Walker B 序列基序,分别参与 ATP 结合和水解。在 AAA+ 蛋白中,Walker B 基序(或 DExx 盒)中的谷氨酸残基突变通常会使 ATP 水解减少多达几个数量级,但对 ATP 结合没有影响。在这里,将真核夹子加载器 RFC 的四个活性 ATP 位点中的每个 Walker B Glu 分别突变为 Gln 和 Ala,并对四重突变夹子加载器的 ATP 结合和水解依赖性活性进行了表征。基于荧光的测定法用于测量夹子加载所需的各个反应步骤,包括夹子结合、夹子打开、DNA 结合和 ATP 水解。我们的结果表明,Walker B 突变除了降低配体依赖性 ATP 水解活性外,还影响 RFC 与夹子和 DNA 的 ATP 结合依赖性相互作用。在这里,我们表明 Walker B 谷氨酸对于 ATP 依赖性配体结合活性是必需的,这是 RFC 中该保守 Glu 残基的先前未知功能。