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DNA methylation regulates phenotype-dependent transcriptional activity in Candida albicans

机译:DNA甲基化调节白色念珠菌的表型依赖性转录活性

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DNA methylation is a common epigenetic signaling mechanism associated with silencing of repeated DNA and transcriptional regulation in eukaryotes. Here we report that DNA methylation in the human fungal pathogen Candida albicans is primarily localized within structural genes and modulates transcriptional activity. Major repeat sequences and multigene families are largely free of DNA methylation. Among the genes subject to DNA methylation are those associated with dimorphic transition between yeast and hyphal forms, switching between white and opaque cells, and iron metabolism. Transcriptionally repressed methylated loci showed increased frequency of C-to-T transitions during asexual growth, an evolutionary stable pattern of repression associated mutation that could bring about genetic alterations under changing environmental or host conditions. Dynamic differential DNA methylation of structural genes may be one factor contributing to morphological plasticity that is cued by nutrition and host interaction.
机译:DNA甲基化是与真核生物中重复DNA沉默和转录调控相关的常见表观遗传信号传导机制。在这里我们报道人类真菌病原体白色念珠菌中的DNA甲基化主要位于结构基因内,并调节转录活性。主要的重复序列和多基因家族基本上没有DNA甲基化。 DNA甲基化的基因包括那些与酵母和菌丝形式之间的双态转变,白细胞和不透明细胞之间的转换以及铁代谢有关的基因。转录抑制的甲基化基因座在无性生长过程中显示出C到T转换的频率增加,这是与抑制相关的突变的进化稳定模式,可以在环境或宿主条件变化的情况下引起遗传改变。结构基因的动态差异DNA甲基化可能是营养和宿主相互作用所导致的形态可塑性的一个因素。

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