Archaeal DNA Polymerase-B as a DNA Template Guardian: Links between Polymerases and Base/Alternative Excision Repair Enzymes in Handling the Deaminated Bases Uracil and Hypoxanthine

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2016-09-19 DOI:10.1155/2016/1510938
J. Abellón-Ruiz, S. Ishino, Y. Ishino, B. Connolly
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引用次数: 4

Abstract

In Archaea repair of uracil and hypoxanthine, which arise by deamination of cytosine and adenine, respectively, is initiated by three enzymes: Uracil-DNA-glycosylase (UDG, which recognises uracil); Endonuclease V (EndoV, which recognises hypoxanthine); and Endonuclease Q (EndoQ), (which recognises both uracil and hypoxanthine). Two archaeal DNA polymerases, Pol-B and Pol-D, are inhibited by deaminated bases in template strands, a feature unique to this domain. Thus the three repair enzymes and the two polymerases show overlapping specificity for uracil and hypoxanthine. Here it is demonstrated that binding of Pol-D to primer-templates containing deaminated bases inhibits the activity of UDG, EndoV, and EndoQ. Similarly Pol-B almost completely turns off EndoQ, extending earlier work that demonstrated that Pol-B reduces catalysis by UDG and EndoV. Pol-B was observed to be a more potent inhibitor of the enzymes compared to Pol-D. Although Pol-D is directly inhibited by template strand uracil, the presence of Pol-B further suppresses any residual activity of Pol-D, to near-zero levels. The results are compatible with Pol-D acting as the replicative polymerase and Pol-B functioning primarily as a guardian preventing deaminated base-induced DNA mutations.
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古细菌DNA聚合酶- b作为DNA模板守护者:聚合酶和碱基/替代切除修复酶在处理脱胺碱基尿嘧啶和次黄嘌呤中的联系
在古细菌中,尿嘧啶和次黄嘌呤分别由胞嘧啶和腺嘌呤脱胺作用产生,它们的修复是由三种酶启动的:尿嘧啶- dna -糖基化酶(UDG,识别尿嘧啶);内切酶V (EndoV,识别次黄嘌呤);和内切酶Q (EndoQ)(它能识别尿嘧啶和次黄嘌呤)。两个古细菌DNA聚合酶,Pol-B和Pol-D,被模板链中的脱胺碱基抑制,这是该结构域独有的特征。因此,三种修复酶和两种聚合酶对尿嘧啶和次黄嘌呤表现出重叠的特异性。结果表明,Pol-D与含有脱胺碱基的引物模板结合可抑制UDG、EndoV和EndoQ的活性。类似地,Pol-B几乎完全关闭了EndoQ,扩展了早期的工作,证明Pol-B降低了UDG和EndoV的催化作用。与Pol-D相比,Pol-B是一种更有效的酶抑制剂。尽管Pol-D被模板链尿嘧啶直接抑制,但Pol-B的存在进一步抑制了Pol-D的残留活性,使其接近于零水平。结果与Pol-D作为复制聚合酶和Pol-B主要作为防止脱胺碱基诱导的DNA突变的守护者相一致。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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