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WRN-FEN-1功能相互作用的生化特性

Biochemical characterization of the WRN-FEN-1 functional interaction.

作者信息

Brosh Robert M, Driscoll Henry C, Dianov Grigory L, Sommers Joshua A

机构信息

Laboratory of Molecular Gerontology, National Institute on Aging, National Institutes of Health, 5600 Nathan Shock Drive, Baltimore, MD 21224, USA.

出版信息

Biochemistry. 2002 Oct 8;41(40):12204-16. doi: 10.1021/bi026031j.

Abstract

Werner Syndrome is a premature aging disorder characterized by chromosomal instability. Recently we reported a novel interaction of the WRN gene product with human 5' flap endonuclease/5'-3' exonuclease (FEN-1), a DNA structure-specific nuclease implicated in pathways of DNA metabolism that are important for genomic stability. To characterize the mechanism for WRN stimulation of FEN-1 cleavage, we have determined the effect of WRN on the kinetic parameters of the FEN-1 cleavage reaction. WRN enhanced the efficiency of FEN-1 cleavage rather than DNA substrate binding. WRN effectively stimulated FEN-1 cleavage on a flap DNA substrate with streptavidin bound to the terminal 3' nucleotide at the end of the upstream duplex, indicating that WRN does not require a free upstream end to stimulate FEN-1 cleavage of the 5' flap substrate. These results indicate that the mechanism whereby WRN stimulates FEN-1 cleavage is distinct from that proposed for the functional interaction between proliferating cell nuclear antigen and FEN-1. To understand the potential importance of the WRN-FEN-1(1) interaction in DNA replication, we have tested the effect of WRN on FEN-1 cleavage of several DNA substrate intermediates that may arise during Okazaki fragment processing. WRN stimulated FEN-1 cleavage of flap substrates with a terminal monoribonucleotide, a long 5' ssDNA tract, and a pseudo-Y structure. The ability of WRN to facilitate FEN-1 cleavage of DNA replication/repair intermediates may be important for the role of WRN in the maintenance of genomic stability.

摘要

沃纳综合征是一种以染色体不稳定为特征的早衰性疾病。最近我们报道了WRN基因产物与人类5' 瓣状核酸内切酶/5'-3' 核酸外切酶(FEN-1)之间的一种新型相互作用,FEN-1是一种DNA结构特异性核酸酶,参与对基因组稳定性很重要的DNA代谢途径。为了表征WRN刺激FEN-1切割的机制,我们确定了WRN对FEN-1切割反应动力学参数的影响。WRN提高了FEN-1切割的效率,而不是DNA底物结合效率。WRN有效地刺激了FEN-1对瓣状DNA底物的切割,其中链霉亲和素与上游双链末端的末端3' 核苷酸结合,这表明WRN不需要游离的上游末端来刺激FEN-1对5' 瓣状底物的切割。这些结果表明,WRN刺激FEN-1切割的机制与增殖细胞核抗原和FEN-1之间功能相互作用所提出的机制不同。为了了解WRN-FEN-1(1)相互作用在DNA复制中的潜在重要性,我们测试了WRN对几种可能在冈崎片段加工过程中出现的DNA底物中间体的FEN-1切割的影响。WRN刺激了FEN-1对具有末端单核糖核苷酸、长5' 单链DNA片段和假Y结构的瓣状底物的切割。WRN促进FEN-1对DNA复制/修复中间体切割的能力可能对WRN在维持基因组稳定性中的作用很重要。

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