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Overview of DNA Repair in Trypanosoma cruzi Trypanosoma brucei and Leishmania major

机译:克氏锥虫布鲁氏锥虫和大利什曼原虫的DNA修复概述

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摘要

A wide variety of DNA lesions arise due to environmental agents, normal cellular metabolism, or intrinsic weaknesses in the chemical bonds of DNA. Diverse cellular mechanisms have evolved to maintain genome stability, including mechanisms to repair damaged DNA, to avoid the incorporation of modified nucleotides, and to tolerate lesions (translesion synthesis). Studies of the mechanisms related to DNA metabolism in trypanosomatids have been very limited. Together with recent experimental studies, the genome sequencing of Trypanosoma brucei, Trypanosoma cruzi, and Leishmania major, three related pathogens with different life cycles and disease pathology, has revealed interesting features of the DNA repair mechanism in these protozoan parasites, which will be reviewed here.
机译:由于环境因素,正常的细胞代谢或DNA的化学键固有的弱点,会引起各种各样的DNA损伤。已经发展了多种细胞机制来维持基因组稳定性,包括修复受损的DNA,避免掺入修饰的核苷酸和耐受损伤(损伤合成)的机制。关于锥虫的DNA代谢相关机制的研究非常有限。与最近的实验研究一起,具有不同生命周期和疾病病理的三种相关病原体布鲁氏锥虫,克鲁斯锥虫和大利什曼原虫的基因组测序揭示了这些原生动物寄生虫中DNA修复机制的有趣特征,将在这里进行综述。 。

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