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25 种果蝇细胞系的转录多样性。

The transcriptional diversity of 25 Drosophila cell lines.

机构信息

Center for Genomics and Bioinformatics, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

Genome Res. 2011 Feb;21(2):301-14. doi: 10.1101/gr.112961.110. Epub 2010 Dec 22.

Abstract

Drosophila melanogaster cell lines are important resources for cell biologists. Here, we catalog the expression of exons, genes, and unannotated transcriptional signals for 25 lines. Unannotated transcription is substantial (typically 19% of euchromatic signal). Conservatively, we identify 1405 novel transcribed regions; 684 of these appear to be new exons of neighboring, often distant, genes. Sixty-four percent of genes are expressed detectably in at least one line, but only 21% are detected in all lines. Each cell line expresses, on average, 5885 genes, including a common set of 3109. Expression levels vary over several orders of magnitude. Major signaling pathways are well represented: most differentiation pathways are "off" and survival/growth pathways "on." Roughly 50% of the genes expressed by each line are not part of the common set, and these show considerable individuality. Thirty-one percent are expressed at a higher level in at least one cell line than in any single developmental stage, suggesting that each line is enriched for genes characteristic of small sets of cells. Most remarkable is that imaginal disc-derived lines can generally be assigned, on the basis of expression, to small territories within developing discs. These mappings reveal unexpected stability of even fine-grained spatial determination. No two cell lines show identical transcription factor expression. We conclude that each line has retained features of an individual founder cell superimposed on a common "cell line" gene expression pattern.

摘要

黑腹果蝇细胞系是细胞生物学家的重要资源。在这里,我们对 25 条细胞系的外显子、基因和未注释的转录信号进行了编目。未注释的转录是大量存在的(通常占常染色质信号的 19%)。保守地说,我们鉴定了 1405 个新的转录区域;其中 684 个似乎是邻近基因的新外显子,这些基因通常距离较远。64%的基因在至少一条细胞系中可检测到表达,但只有 21%的基因在所有细胞系中都能检测到。每条细胞系平均表达 5885 个基因,包括 3109 个常见基因。表达水平跨越几个数量级变化。主要的信号通路得到了很好的体现:大多数分化途径处于“关闭”状态,而生存/生长途径处于“开启”状态。大约 50%的基因在每条细胞系中表达,而不是常见基因集中的一部分,这些基因具有相当大的个体性。其中 31%的基因在至少一条细胞系中的表达水平高于任何单个发育阶段,这表明每条细胞系都富含特定于小细胞群的基因。最显著的是, imaginal disc 衍生的细胞系通常可以根据表达情况,被分配到发育中的 disc 内的小区域。这些映射揭示了即使是细微的空间决定因素也具有出人意料的稳定性。没有两条细胞系表现出相同的转录因子表达。我们得出的结论是,每条细胞系都保留了其个体创始细胞的特征,叠加在一个共同的“细胞系”基因表达模式上。

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