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Xpf抑制盘基网柄菌吞噬作用的诱变后果。

Xpf suppresses the mutagenic consequences of phagocytosis in Dictyostelium.

作者信息

Pontel Lucas B, Langenick Judith, Rosado Ivan V, Zhang Xiao-Yin, Traynor David, Kay Robert R, Patel Ketan J

机构信息

MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge CB2 0QH, UK

MRC Laboratory of Molecular Biology, Francis Crick Avenue, Cambridge CB2 0QH, UK.

出版信息

J Cell Sci. 2016 Dec 15;129(24):4449-4454. doi: 10.1242/jcs.196337. Epub 2016 Nov 21.

Abstract

As time passes, mutations accumulate in the genomes of all living organisms. These changes promote genetic diversity, but also precipitate ageing and the initiation of cancer. Food is a common source of mutagens, but little is known about how nutritional factors cause lasting genetic changes in the consuming organism. Here, we describe an unusual genetic interaction between DNA repair in the unicellular amoeba Dictyostelium discoideum and its natural bacterial food source. We found that Dictyostelium deficient in the DNA repair nuclease Xpf (xpf) display a severe and specific growth defect when feeding on bacteria. Despite being proficient in the phagocytosis and digestion of bacteria, over time, xpf Dictyostelium feeding on bacteria cease to grow and in many instances die. The Xpf nuclease activity is required for sustained growth using a bacterial food source. Furthermore, the ingestion of this food source leads to a striking accumulation of mutations in the genome of xpf Dictyostelium This work therefore establishes Dictyostelium as a model genetic system to dissect nutritional genotoxicity, providing insight into how phagocytosis can induce mutagenesis and compromise survival fitness.

摘要

随着时间的推移,突变会在所有生物体的基因组中积累。这些变化促进了遗传多样性,但也会加速衰老和引发癌症。食物是诱变剂的常见来源,但关于营养因素如何在食用生物体内引起持久的基因变化,人们却知之甚少。在这里,我们描述了单细胞变形虫盘基网柄菌的DNA修复与其天然细菌食物来源之间一种不同寻常的基因相互作用。我们发现,缺乏DNA修复核酸酶Xpf(xpf)的盘基网柄菌在以细菌为食时表现出严重且特定的生长缺陷。尽管它在吞噬和消化细菌方面能力很强,但随着时间的推移,以细菌为食的xpf盘基网柄菌会停止生长,并且在很多情况下会死亡。使用细菌食物来源实现持续生长需要Xpf核酸酶活性。此外,摄取这种食物来源会导致xpf盘基网柄菌基因组中突变显著积累。因此,这项工作将盘基网柄菌确立为剖析营养基因毒性的模型遗传系统,为吞噬作用如何诱导诱变并损害生存适应性提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8ce/5201022/c47aaca935d2/joces-129-196337-g1.jpg

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