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Modularity of CHIP/LDB transcription complexes regulates cell differentiation.

机译:CHIP / LDB转录复合物的模块化调节细胞分化。

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Transcription is the first step through which the cell operates, via its repertoire of transcription complexes, to direct cellular functions and cellular identity by generating the cell-specific transcriptome. The modularity of the composition of constituents of these complexes allows the cell to delicately regulate its transcriptome. In a recent study we have examined the effects of reducing the levels of specific transcription co-factors on the function of two competing transcription complexes, namely CHIP-AP and CHIP-PNR which regulate development of cells in the thorax of Drosophila. We found that changing the availability of these co-factors can shift the balance between these complexes leading to transition from utilization of CHIP-AP to CHIP-PNR. This is reflected in change in the expression profile of target genes, altering developmental cell fates. We propose that such a mechanism may operate in normal fly development. Transcription complexes analogous to CHIP-AP and CHIP-PNR exist in mammals and we discuss how such a shift in the balance between them may operate in normal mammalian development.
机译:转录是细胞通过其转录复合物库进行操作以通过产生细胞特异性转录组来指导细胞功能和细胞特性的第一步。这些复合物的组成成分的模块化使细胞能够精细地调节其转录组。在最近的一项研究中,我们研究了降低特定转录辅因子水平对两种竞争性转录复合物(即CHIP-AP和CHIP-PNR)功能的影响,它们调节果蝇胸腔中的细胞发育。我们发现,改变这些辅助因子的可用性可以改变这些复合物之间的平衡,从而导致从CHIP-AP的使用过渡到CHIP-PNR。这反映在靶基因表达谱的变化中,改变了发育细胞的命运。我们建议这种机制可能在正常的苍蝇发育中起作用。类似于CHIP-AP和CHIP-PNR的转录复合物存在于哺乳动物中,我们讨论它们之间平衡的这种变化如何在正常的哺乳动物发育中起作用。

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