首页> 外文期刊>Frontiers in Physiology >Depletion of ATP-Citrate Lyase (ATPCL) Affects Chromosome Integrity Without Altering Histone Acetylation in Drosophila Mitotic Cells
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Depletion of ATP-Citrate Lyase (ATPCL) Affects Chromosome Integrity Without Altering Histone Acetylation in Drosophila Mitotic Cells

机译:ATP-柠檬酸酯裂解酶(ATPCL)的耗竭会影响染色体完整性,而不改变<斜视>果蝇/斜体>有丝分裂细胞中的组蛋白乙酰化

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The Citrate Lyase (ACL) is the main cytosolic enzyme that converts the citrate exported from mitochondria by the SLC25A1 carrier in Acetyl Coenzyme A (acetyl-CoA) and oxaloacetate. Acetyl-CoA is a high-energy intermediate common to a large number of metabolic processes including protein acetylation reactions. This renders ACL a key regulator of histone acetylation levels and gene expression in diverse organisms including humans. We have found that depletion of ATPCL, the Drosophila ortholog of human ACL, reduced levels of Acetyl CoA but, unlike its human counterpart, does not affect global histone acetylation and gene expression. Nevertheless, reduced ATPCL levels caused evident, although moderate, mitotic chromosome breakage suggesting that this enzyme plays a partial role in chromosome stability. These defects did not increase upon X-ray irradiation, indicating that they are not dependent on an impairment of DNA repair. Interestingly, depletion of ATPCL drastically increased the frequency of chromosome breaks (CBs) associated to mutations in scheggia , which encodes the ortholog of the mitochondrial citrate carrier SLC25A1 that is also required for chromosome integrity and histone acetylation. Our results indicate that ATPCL has a dispensable role in histone acetylation and prevents massive chromosome fragmentation when citrate efflux is altered.
机译:柠檬酸裂解酶(ACL)是将SLC25A1载体在乙酰辅酶A(乙酰-COA)和草氟乙酸酯中转化从线粒体出口的柠檬酸盐的主要细胞溶质酶。乙酰-CoA是大量代谢过程的高能量中间体,包括蛋白质乙酰化反应。这使ACL在包括人类的不同生物中的组蛋白乙酰化水平和基因表达的关键调节器。我们发现ATPCL的耗尽,人ACL的果蝇,降低乙酰COA水平,但与其人的对应不同,不影响全球组蛋白乙酰化和基因表达。然而,降低ATPCL水平导致明显,虽然中等,有丝分裂染色体破裂表明该酶在染色体稳定性中起着部分作用。这些缺陷在X射线照射时没有增加,表明它们不依赖于DNA修复的损害。有趣的是,ATPCL的耗尽大大增加了与施政血糖中突变相关的染色体破裂(CBS)的频率,其编码了对染色体完整性和组蛋白乙酰化所需的线粒体柠檬酸盐载体SLC25A1的矫正。我们的结果表明,ATPCL在组蛋白乙酰化中具有可分配的作用,并在柠檬酸盐流出改变时防止大量染色体碎裂。

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