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Functional roles of carboxylate residues comprising the DNA polymerase active site triad of Ty3 reverse transcriptase

机译:Ty3逆转录酶的DNA聚合酶活性位点三联体的羧酸残基的功能作用

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摘要

Aspartic acid residues comprising the -D-(aa) (n) -Y-L-D-D- DNA polymerase active site triad of reverse transcriptase from the Saccharomyces cerevisiae long terminal repeat-retrotransposon Ty3 (Asp151, Asp213 and Asp214) were evaluated via site-directed mutagenesis. An Asp151-->Glu substitution showed a dramatic decrease in catalytic efficiency and a severe translocation defect following initiation of DNA synthesis. In contrast, enzymes harboring the equivalent alteration at Asp213 and Asp214 retained DNA polymerase activity. Asp151-->Asn and Asp213-->Asn substitutions eliminated both polymerase activities. However, while Asp214 of the triad could be replaced by either Asn or Glu, introducing Gln seriously affected processivity. Mutants of the carboxylate triad at positions 151 and 213 also failed to catalyze pyrophosphorolysis. Finally, alterations to the DNA polymerase active site affected RNase H activity, suggesting a close spatial relationship between these N- and C-terminal catalytic centers. Taken together, our data reveal a critical role for Asp151 and Asp213 in catalysis. In contrast, the second carboxylate of the Y-L-D-D motif (Asp214) is not essential for catalysis, and possibly fulfills a structural role. Although Asp214 was most insensitive to substitution with respect to activity of the recombinant enzyme, all alterations at this position were lethal for Ty3 transposition.
机译:通过定点诱变评估了来自酿酒酵母长末端重复-反转录转座子Ty3(Asp151,Asp213和Asp214)的逆转录酶的-D-(aa)(n)-Y-L-D-D-DNA聚合酶活性位点三联体的天冬氨酸残基。 DNA合成开始后,Asp151-> Glu取代显示出催化效率的急剧下降和严重的易位缺陷。相反,在Asp213和Asp214处具有等效变化的酶保留了DNA聚合酶活性。 Asp151-> Asn和Asp213-> Asn取代消除了两个聚合酶活性。但是,虽然三合一的Asp214可以被Asn或Glu取代,但引入Gln严重影响了合成能力。 151和213位的羧酸盐三联体的突变体也不能催化焦磷酸解。最后,DNA聚合酶活性位点的变化影响了RNase H的活性,表明这些N端和C端催化中心之间存在紧密的空间关系。综上所述,我们的数据揭示了Asp151和Asp213在催化中的关键作用。相反,Y-L-D-D基序的第二个羧酸盐(Asp214)对催化不是必需的,并且可能发挥结构作用。尽管就重组酶的活性而言,Asp214对取代最不敏感,但该位置的所有改变对于Ty3的转座都是致命的。

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