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两种可遗传细胞类型的转录组阐明了调控其分化的回路。

The transcriptomes of two heritable cell types illuminate the circuit governing their differentiation.

机构信息

Department of Microbiology and Immunology, University of California San Francisco, San Francisco, California, USA.

出版信息

PLoS Genet. 2010 Aug 19;6(8):e1001070. doi: 10.1371/journal.pgen.1001070.

Abstract

The differentiation of cells into distinct cell types, each of which is heritable for many generations, underlies many biological phenomena. White and opaque cells of the fungal pathogen Candida albicans are two such heritable cell types, each thought to be adapted to unique niches within their human host. To systematically investigate their differences, we performed strand-specific, massively-parallel sequencing of RNA from C. albicans white and opaque cells. With these data we first annotated the C. albicans transcriptome, finding hundreds of novel differentially-expressed transcripts. Using the new annotation, we compared differences in transcript abundance between the two cell types with the genomic regions bound by a master regulator of the white-opaque switch (Wor1). We found that the revised transcriptional landscape considerably alters our understanding of the circuit governing differentiation. In particular, we can now resolve the poor concordance between binding of a master regulator and the differential expression of adjacent genes, a discrepancy observed in several other studies of cell differentiation. More than one third of the Wor1-bound differentially-expressed transcripts were previously unannotated, which explains the formerly puzzling presence of Wor1 at these positions along the genome. Many of these newly identified Wor1-regulated genes are non-coding and transcribed antisense to coding transcripts. We also find that 5' and 3' UTRs of mRNAs in the circuit are unusually long and that 5' UTRs often differ in length between cell-types, suggesting UTRs encode important regulatory information and that use of alternative promoters is widespread. Further analysis revealed that the revised Wor1 circuit bears several striking similarities to the Oct4 circuit that specifies the pluripotency of mammalian embryonic stem cells. Additional characteristics shared with the Oct4 circuit suggest a set of general hallmarks characteristic of heritable differentiation states in eukaryotes.

摘要

细胞分化为不同的细胞类型,每个细胞类型都可以遗传多代,这是许多生物学现象的基础。真菌病原体白色念珠菌的白色和不透明细胞就是这样两种可遗传的细胞类型,它们各自被认为适应于宿主内的独特小生境。为了系统地研究它们的差异,我们对白色念珠菌白色和不透明细胞的 RNA 进行了特异性、大规模平行测序。利用这些数据,我们首先对白色念珠菌转录组进行了注释,发现了数百个新的差异表达转录本。使用新的注释,我们比较了两种细胞类型之间转录丰度的差异与白色-不透明转换(Wor1)主调控因子结合的基因组区域。我们发现,经过修正的转录景观极大地改变了我们对调控分化的回路的理解。特别是,我们现在可以解决主调控因子结合和相邻基因差异表达之间的不良一致性问题,这在其他几项细胞分化研究中也观察到了。超过三分之一的 Wor1 结合差异表达转录本以前没有注释,这解释了 Wor1 在基因组上这些位置的存在以前令人费解的原因。许多新鉴定的 Wor1 调控基因是非编码的,并反义转录编码转录本。我们还发现,回路中 mRNA 的 5'和 3'UTR 非常长,并且 5'UTR 在细胞类型之间通常长度不同,这表明 UTR 编码重要的调节信息,并且广泛使用替代启动子。进一步的分析表明,修正后的 Wor1 回路与指定哺乳动物胚胎干细胞多能性的 Oct4 回路具有几个显著的相似之处。与 Oct4 回路共享的其他特征表明,一组与真核生物可遗传分化状态相关的一般特征标志。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a165/2924316/e7076dbbbf73/pgen.1001070.g001.jpg

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