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DR1769 是一种具有 N 端 β 三叶螺旋桨重复序列和低复杂度亲水尾巴的蛋白质,在耐干燥的 Deinococcus radiodurans 中发挥作用。

DR1769, a protein with N-terminal beta propeller repeats and a low-complexity hydrophilic tail, plays a role in desiccation tolerance of Deinococcus radiodurans.

机构信息

Molecular Biology Division, Bhabha Atomic Research Centre, Mumbai, India.

出版信息

J Bacteriol. 2013 Sep;195(17):3888-96. doi: 10.1128/JB.00418-13. Epub 2013 Jun 21.

Abstract

The Deinococcus radiodurans genome encodes five putative quinoproteins. Among these, the Δdr2518 and Δdr1769 mutants became sensitive to gamma radiation. DR2518 with beta propeller repeats in the C-terminal domain was characterized as a radiation-responsive serine/threonine protein kinase in this bacterium. DR1769 contains beta propeller repeats at the N terminus, while its C-terminal domain is a proline-rich disordered structure and constitutes a low-complexity hydrophilic region with aliphatic-proline dipeptide motifs. The Δdr1769 mutant showed nearly a 3-log cycle sensitivity to desiccation at 5% humidity compared to that of the wild type. Interestingly, the gamma radiation and mitomycin C (MMC) resistance in mutant cells also dropped by ∼1-log cycle at 10 kGy and ∼1.5-fold, respectively, compared to those in wild-type cells. But there was no effect of UV (254 nm) exposure up to 800 J · m(-2). These cells showed defective DNA double-strand break repair, and the average size of the nucleoid in desiccated wild-type and Δdr1769 cells was reduced by approximately 2-fold compared to that of respective controls. However, the nucleoid in wild-type cells returned to a size almost similar to that of the untreated control, which did not happen in mutant cells, at least up to 24 h postdesiccation. These results suggest that DR1769 plays an important role in desiccation and radiation resistance of D. radiodurans, possibly by protecting genome integrity under extreme conditions.

摘要

耐辐射球菌基因组编码五个推定的醌蛋白。其中,Δdr2518 和 Δdr1769 突变体对γ辐射变得敏感。DR2518 在 C 末端结构域中具有β 三叶螺旋重复序列,在该细菌中被表征为辐射响应丝氨酸/苏氨酸蛋白激酶。DR1769 在 N 末端含有β 三叶螺旋重复序列,而其 C 末端结构域是富含脯氨酸的无序结构,构成了具有脂肪族-脯氨酸二肽基序的低复杂度亲水区域。与野生型相比,Δdr1769 突变体在 5%湿度下的干燥敏感性增加了近 3 个对数周期。有趣的是,与野生型细胞相比,突变细胞中的γ辐射和丝裂霉素 C(MMC)抗性在 10 kGy 和 1.5 倍时也分别下降了约 1 个对数周期。但是,紫外线(254nm)暴露至 800 J·m(-2) 时没有影响。这些细胞显示出 DNA 双链断裂修复缺陷,干燥的野生型和Δdr1769 细胞的核体平均大小与各自的对照相比减少了约 2 倍。然而,在野生型细胞中,核体恢复到与未处理对照几乎相似的大小,而在突变细胞中则没有发生这种情况,至少在干燥后 24 小时内没有发生这种情况。这些结果表明,DR1769 在耐辐射球菌的干燥和辐射抗性中发挥重要作用,可能通过在极端条件下保护基因组完整性。

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