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首页> 外文期刊>Journal of Molecular Biology >Structures of intermediates along the catalytic cycle of terminal deoxynucleotidyltransferase: Dynamical aspects of the two-metal ion mechanism
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Structures of intermediates along the catalytic cycle of terminal deoxynucleotidyltransferase: Dynamical aspects of the two-metal ion mechanism

机译:沿着末端脱氧核苷酸转移酶催化循环的中间体结构:两种金属离子机制的动力学方面

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Terminal deoxynucleotidyltransferase (Tdt) is a non-templated eukaryotic DNA polymerase of the polX family that is responsible for the random addition of nucleotides at the V(D)J junctions of immunoglobulins and T-cell receptors. Here we describe a series of high-resolution X-ray structures that mimic the pre-catalytic state, the post-catalytic state and a competent state that can be transformed into the two other ones in crystallo via the addition of dAMPcPP and Zn2 +, respectively. We examined the effect of Mn2 +, Co2 + and Zn2 + because they all have a marked influence on the kinetics of the reaction. We demonstrate a dynamic role of divalent transition metal ions bound to site A: (i) Zn2 + (or Co 2 +) in Metal A site changes coordination from octahedral to tetrahedral after the chemical step, which explains the known higher affinity of Tdt for the primer strand when these ions are present, and (ii) metal A has to leave to allow the translocation of the primer strand and to clear the active site, a typical feature for a ratchet-like mechanism. Except for Zn 2 +, the sugar puckering of the primer strand 3′ terminus changes from C2′-endo to C3′-endo during catalysis. In addition, our data are compatible with a scheme where metal A is the last component that binds to the active site to complete its productive assembly, as already inferred in human pol beta. The new structures have potential implications for modeling pol mu, a closely related polX implicated in the repair of DNA double-strand breaks, in a complex with a DNA synapsis.
机译:末端脱氧核苷酸转移酶(Tdt)是polX家族的非模板真核DNA聚合酶,负责在免疫球蛋白和T细胞受体的V(D)J连接处随机添加核苷酸。在这里,我们描述了一系列高分辨率的X射线结构,它们模仿了催化前状态,催化后状态和能级状态,可以通过添加dAMPcPP和Zn2 +将其转变为晶体中的另外两个状态,分别。我们检查了Mn2 +,Co2 +和Zn2 +的作用,因为它们都对反应动力学有显着影响。我们证明了绑定到位点A的二价过渡金属离子的动态作用:(i)金属A位点中的Zn2 +(或Co 2 +)在化学步骤后从八面体变为四面体,这解释了Tdt对(ii)金属A必须离开以允许引物链易位并清除活性位点,这是棘轮状机制的典型特征。除Zn 2 +以外,引物链3'末端的糖起皱在催化过程中从C2'-内切变为C3'-内切。此外,我们的数据与以下方案兼容:金属A是最后一个与活性位点结合以完成其生产性组装的成分,正如人类pol beta所推断的那样。这种新结构可能对pol mu建模具有潜在的影响,pol mu是与DNA突触形成复合体,与修复DNA双链断裂密切相关的polX。

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