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Every OGT Is Illuminated … by Fluorescent and Synchrotron Lights

机译:每个OGT都通过荧光灯和同步加速器灯照明...

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摘要

O6-DNA-alkyl-guanine-DNA-alkyl-transferases (OGTs) are evolutionarily conserved, unique proteins that repair alkylation lesions in DNA in a single step reaction. Alkylating agents are environmental pollutants as well as by-products of cellular reactions, but are also very effective chemotherapeutic drugs. OGTs are major players in counteracting the effects of such agents, thus their action in turn affects genome integrity, survival of organisms under challenging conditions and response to chemotherapy. Numerous studies on OGTs from eukaryotes, bacteria and archaea have been reported, highlighting amazing features that make OGTs unique proteins in their reaction mechanism as well as post-reaction fate. This review reports recent functional and structural data on two prokaryotic OGTs, from the pathogenic bacterium Mycobacterium tuberculosis and the hyperthermophilic archaeon Sulfolobus solfataricus, respectively. These studies provided insight in the role of OGTs in the biology of these microorganisms, but also important hints useful to understand the general properties of this class of proteins.
机译:O 6 -DNA-烷基-鸟嘌呤-DNA-烷基转移酶(OGT)是进化保守的独特蛋白质,可在一步反应中修复DNA中的烷基化损伤。烷基化剂既是环境污染物,也是细胞反应的副产物,但也是非常有效的化学治疗药物。 OGT是抵消此类药物作用的主要参与者,因此它们的作用反过来会影响基因组完整性,挑战条件下生物的存活以及对化学疗法的反应。已经报道了对来自真核生物,细菌和古细菌的OGT的大量研究,这些研究突出了令人惊奇的特征,这些特征使OGT在其反应机理和反应后命运中具有独特的蛋白质。这篇综述报告了两个原核OGTs的最新功能和结构数据,分别来自致病性细菌结核分枝杆菌和嗜热古细菌Sulfolobus solfataricus。这些研究提供了关于OGT在这些微生物生物学中的作用的见解,同时也为理解此类蛋白质的一般性质提供了重要提示。

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