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从含有紫外线损伤光产物的DNA双链体结构分析中获得的功能见解。

Functional insights gained from structural analyses of DNA duplexes that contain UV-damaged photoproducts.

作者信息

Park Chin-Ju, Lee Joon-Hwa, Choi Byong-Seok

机构信息

Department of Chemistry, National Creative Initiative Center, KAIST (Korea Advanced Institute of Science and Technology), Guseong-dong, Yuseong-gu, Daejon, Korea.

出版信息

Photochem Photobiol. 2007 Jan-Feb;83(1):187-95. doi: 10.1562/2006-02-28-IR-820.

Abstract

Ultraviolet photolesions endow DNA with distinct structural and dynamic properties. Biophysical studies of photoproduct-containing DNA have shown that these lesions affect the mutagenic properties of DNA and damage recognition by DNA repair systems. Recently obtained high-resolution cocrystal structures of damaged DNA bound to either DNA polymerase or DNA repair enzymes have enriched our understanding of the mechanisms by which DNA lesions are bypassed or recognized by DNA metabolizing proteins. Here, we summarize the results of these structural studies and discuss their implications for DNA metabolism.

摘要

紫外线光损伤赋予DNA独特的结构和动力学特性。对含有光产物的DNA进行的生物物理研究表明,这些损伤会影响DNA的诱变特性以及DNA修复系统对损伤的识别。最近获得的与DNA聚合酶或DNA修复酶结合的受损DNA的高分辨率共晶体结构,丰富了我们对DNA损伤被DNA代谢蛋白绕过或识别机制的理解。在此,我们总结这些结构研究的结果,并讨论它们对DNA代谢的影响。

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