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Functional link between mitochondria and Rnr3 the minor catalytic subunit of yeast ribonucleotide reductase

机译:线粒体和酵母核糖核苷酸还原酶的次要催化亚基Rnr3之间的功能联系

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摘要

Ribonucleotide reductase (RNR) is an essential holoenzyme required for de novo synthesis of dNTPs. The Saccharomyces cerevisiae genome encodes for two catalytic subunits, Rnr1 and Rnr3. While Rnr1 is required for DNA replication and DNA damage repair, the function(s) of Rnr3 is unknown. Here, we show that carbon source, an essential nutrient, impacts Rnr1 and Rnr3 abundance: Non-fermentable carbon sources or limiting concentrations of glucose down regulate Rnr1 and induce Rnr3 expression. Oppositely, abundant glucose induces Rnr1 expression and down regulates Rnr3. The carbon source dependent regulation of Rnr3 is mediated by Mec1, the budding yeast ATM/ATR checkpoint response kinase. Unexpectedly, this regulation is independent of all currently known components of the Mec1 DNA damage response network, including Rad53, Dun1, and Tel1, implicating a novel Mec1 signalling axis. rnr3Δ leads to growth defects under respiratory conditions and rescues temperature sensitivity conferred by the absence of Tom6, a component of the mitochondrial TOM (translocase of outer membrane) complex responsible for mitochondrial protein import. Together, these results unveil involvement of Rnr3 in mitochondrial functions and Mec1 in mediating the carbon source dependent regulation of Rnr3.
机译:核糖核苷酸还原酶(RNR)是dNTP从头合成所需的必需全酶。酿酒酵母基因组编码两个催化亚基,Rnr1和Rnr3。尽管Rnr1是DNA复制和DNA损伤修复所必需的,但Rnr3的功能尚不清楚。在这里,我们表明碳源是一种重要的养分,会影响Rnr1和Rnr3的丰度:不可发酵的碳源或葡萄糖浓度的下调会调节Rnr1并诱导Rnr3的表达。相反,丰富的葡萄糖诱导Rnr1表达并下调Rnr3。 Rnr3的碳源依赖调节是由Mec1介导的,Mec1是出芽的酵母ATM / ATR检查点反应激酶。出乎意料的是,该法规独立于Mec1 DNA损伤响应网络的所有当前已知组件,包括Rad53,Dun1和Tel1,暗示了新的Mec1信号转导轴。 rnr3Δ会导致呼吸条件下的生长缺陷,并通过不存在负责线粒体蛋白质输入的线粒体TOM(外膜的转位酶)复合物的成分Tom6来挽救温度敏感性。总之,这些结果揭示了Rnr3参与线粒体功能,而Mec1参与了碳源依赖的Rnr3调控。

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