Key Laboratory for Nuclear-Agricultural Sciences of Chinese Ministry of Agriculture and Zhejiang Province, Institute of Nuclear-Agricultural Sciences, Zhejiang University 310029, China.
Genomics. 2009 Nov;94(5):333-40. doi: 10.1016/j.ygeno.2009.08.001. Epub 2009 Aug 10.
In Deinococcus radiodurans, there is a unique RecQ homolog (DR1289) with three-tandem HRDC domains. Deletion of drrecQ resulted in a low doubling rate and sensitivity to hydrogen peroxide. Here, we used cDNA microarray and biochemical assays to explore the physiological changes in the drrecQ mutant. The expressions of genes with predicted functions involved in iron homeostasis, antioxidant system, electron transport, and energy metabolism were significantly altered in response to drrecQ disruption. More reactive oxygen species (ROS) was accumulated in drrecQ mutant strain when compared to wild type. In addition, ICP-MS results showed that the intracellular level of iron was relatively higher, whereas the concentration of manganese was lower in drrecQ mutant than in wild type. Furthermore, our microarray data and pulsed-field gel results showed that DNA suffered more damage in drrecQ mutant than in wild type under 20 mM hydrogen peroxide stress. These results suggested that drrecQ is a gene of pleiotropic functions and contributes to the extraordinary resistance of D. radiodurans against stresses.
在耐辐射球菌中,有一种独特的 RecQ 同源物(DR1289),具有三个串联的 HRDC 结构域。 drrecQ 的缺失导致倍增率降低和对过氧化氢敏感。在这里,我们使用 cDNA 微阵列和生化分析来探索 drrecQ 突变体的生理变化。与野生型相比,drrecQ 突变体中预测功能涉及铁稳态、抗氧化系统、电子传递和能量代谢的基因的表达明显改变。 drrecQ 突变菌株中积累了更多的活性氧(ROS)。此外,ICP-MS 结果表明,drrecQ 突变体细胞内铁的水平相对较高,而锰的浓度则低于野生型。此外,我们的微阵列数据和脉冲场凝胶结果表明,在 20mM 过氧化氢胁迫下,drrecQ 突变体的 DNA 损伤比野生型更严重。这些结果表明,drrecQ 是一个具有多种功能的基因,有助于耐辐射球菌对各种应激的非凡抗性。