Hill A L, Phelan S A, Loeken M R
Department of Medicine, Harvard Medical School, Boston, MA 02215, USA.
Dev Genes Evol. 1998 May;208(3):128-34. doi: 10.1007/s004270050163.
CDC46/MCM5 encodes a protein that is highly conserved among yeast, plants, and animals. It is found in a complex which exhibits DNA replication licensing activity, which is proposed to regulate the synthesis of DNA once and only once per cell cycle. In yeast, loss of function mutations of CDC46/MCM5 decrease DNA synthesis. Very little is known about the regulation of CDC46/MCM5 in any species. We report here that, in the mouse embryo, expression of cdc46 is increased in unfused portions of the neural tube when the gene encoding the transcription factor, Pax-3, is either nonfunctional or underexpressed. These results were observed both in embryos of diabetic mice, which we have previously shown express significantly reduced levels of Pax-3 mRNA, and in Splotch embryos, which carry loss of function Pax-3 alleles. This indicates that expression of cdc46 is negatively regulated as part of a Pax-3-dependent pathway. Since cdc46 appears to regulate DNA synthesis and cell cycle progression, it is possible that its overexpression is involved in defective embryonic development that is associated with loss of Pax-3 function.
CDC46/MCM5编码一种在酵母、植物和动物中高度保守的蛋白质。它存在于一个具有DNA复制许可活性的复合体中,该活性被认为在每个细胞周期中调控DNA的合成,且仅调控一次。在酵母中,CDC46/MCM5的功能缺失突变会减少DNA合成。关于任何物种中CDC46/MCM5的调控,人们所知甚少。我们在此报告,在小鼠胚胎中,当编码转录因子Pax-3的基因无功能或表达不足时,神经管未融合部分的cdc46表达会增加。在糖尿病小鼠胚胎(我们之前已表明其Pax-3 mRNA水平显著降低)和携带功能缺失Pax-3等位基因的斑点胚胎中均观察到了这些结果。这表明cdc46的表达作为Pax-3依赖途径的一部分受到负调控。由于cdc46似乎调控DNA合成和细胞周期进程,其过表达有可能参与了与Pax-3功能丧失相关的胚胎发育缺陷。