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Crystal structures of an archaeal class I CCA-adding enzyme and its nucleotide complexes.

机译:一种古细菌I类CCA添加酶的晶体结构及其核苷酸复合物。

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摘要

CCA-adding enzymes catalyze the addition of CCA onto the 3' terminus of immature tRNAs without using a nucleic acid template and have been divided into two classes based on their amino acid sequences. We have determined the crystal structures of a class I CCA-adding enzyme from Archeoglobus fulgidus (AfCCA) and its complexes with ATP, CTP, or UTP. Although it and the class II bacterial Bacillus stearothermophilus CCA enzyme (BstCCA) have similar dimensions and domain architectures (head, neck, body, and tail), only the polymerase domain is structurally homologous. Moreover, the relative orientation of the head domain with respect to the body and tail domains, which appear likely to bind tRNA, differs significantly between the two enzyme classes. Unlike the class II BstCCA, this enzyme binds nucleotides nonspecifically in the absence of bound tRNA. The shape and electrostatic charge distribution of the AfCCA enzyme suggests a model for tRNA binding that accounts for the phosphates that are protected from chemical modification by tRNA binding to AfCCA. The structures of the AfCCA enzyme and the eukaryotic poly(A) polymerase are very similar, implying a close evolutionary relationship between them.
机译:不使用核酸模板,添加CCA的酶催化将CCA添加到未成熟tRNA的3'末端,并且已根据其氨基酸序列分为两类。我们已经确定了来自始祖鸟(AfCCA)的I类添加CCA的酶的晶体结构及其与ATP,CTP或UTP的复合物。尽管它和II类细菌嗜热脂肪芽孢杆菌CCA酶(BstCCA)具有相似的尺寸和域结构(头,颈部,身体和尾巴),但只有聚合酶域在结构上是同源的。而且,似乎与tRNA结合的头部结构域相对于身体结构域和尾部结构域的相对取向在两种酶类别之间显着不同。与II类BstCCA不同,该酶在不存在结合的tRNA的情况下非特异性结合核苷酸。 AfCCA酶的形状和静电荷分布表明了tRNA结合的模型,该模型说明了通过tRNA与AfCCA结合而被保护免受磷酸盐化学修饰的磷酸盐。 AfCCA酶和真核聚(A)聚合酶的结构非常相似,这表明它们之间存在密切的进化关系。

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