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DNA修复酶核酸内切酶IV的结构及其与DNA的复合物:无碱基位点的双核苷酸翻转和三金属离子催化

Structure of the DNA repair enzyme endonuclease IV and its DNA complex: double-nucleotide flipping at abasic sites and three-metal-ion catalysis.

作者信息

Hosfield D J, Guan Y, Haas B J, Cunningham R P, Tainer J A

机构信息

Department of Molecular Biology, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Cell. 1999 Aug 6;98(3):397-408. doi: 10.1016/s0092-8674(00)81968-6.

Abstract

Endonuclease IV is the archetype for a conserved apurinic/apyrimidinic (AP) endonuclease family that primes DNA repair synthesis by cleaving the DNA backbone 5' of AP sites. The crystal structures of Endonuclease IV and its AP-DNA complex at 1.02 and 1.55 A resolution reveal how an alpha8beta8 TIM barrel fold can bind dsDNA. Enzyme loops intercalate side chains at the abasic site, compress the DNA backbone, bend the DNA approximately 90 degrees, and promote double-nucleotide flipping to sequester the extrahelical AP site in an enzyme pocket that excludes undamaged nucleotides. These structures suggest three Zn2+ ions directly participate in phosphodiester bond cleavage and prompt hypotheses that double-nucleotide flipping and sharp bending by AP endonucleases provide exquisite damage specificity while aiding subsequent base excision repair pathway progression.

摘要

核酸内切酶IV是保守的脱嘌呤/脱嘧啶(AP)核酸内切酶家族的原型,该家族通过切割AP位点5'端的DNA主链来启动DNA修复合成。核酸内切酶IV及其AP-DNA复合物在1.02 Å和1.55 Å分辨率下的晶体结构揭示了α8β8 TIM桶状折叠如何结合双链DNA。酶环在无碱基位点插入侧链,压缩DNA主链,使DNA弯曲约90度,并促进双核苷酸翻转,以将螺旋外的AP位点隔离在一个排除未受损核苷酸的酶口袋中。这些结构表明三个Zn2+离子直接参与磷酸二酯键的切割,并促使人们提出假设,即AP核酸内切酶的双核苷酸翻转和急剧弯曲在帮助随后的碱基切除修复途径进展的同时,提供了精确的损伤特异性。

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