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The Carboxy-Terminal Domain of Dictyostelium C-Module-Binding Factor Is an Independent Gene Regulatory Entity

机译:Dictyostelium C模块结合因子的羧基末端域是一个独立的基因调控实体。

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摘要

The C-module-binding factor (CbfA) is a multidomain protein that belongs to the family of jumonji-type (JmjC) transcription regulators. In the social amoeba Dictyostelium discoideum, CbfA regulates gene expression during the unicellular growth phase and multicellular development. CbfA and a related D. discoideum CbfA-like protein, CbfB, share a paralogous domain arrangement that includes the JmjC domain, presumably a chromatin-remodeling activity, and two zinc finger-like (ZF) motifs. On the other hand, the CbfA and CbfB proteins have completely different carboxy-terminal domains, suggesting that the plasticity of such domains may have contributed to the adaptation of the CbfA-like transcription factors to the rapid genome evolution in the dictyostelid clade. To support this hypothesis we performed DNA microarray and real-time RT-PCR measurements and found that CbfA regulates at least 160 genes during the vegetative growth of D. discoideum cells. Functional annotation of these genes revealed that CbfA predominantly controls the expression of gene products involved in housekeeping functions, such as carbohydrate, purine nucleosideucleotide, and amino acid metabolism. The CbfA protein displays two different mechanisms of gene regulation. The expression of one set of CbfA-dependent genes requires at least the JmjC/ZF domain of the CbfA protein and thus may depend on chromatin modulation. Regulation of the larger group of genes, however, does not depend on the entire CbfA protein and requires only the carboxy-terminal domain of CbfA (CbfA-CTD). An AT-hook motif located in CbfA-CTD, which is known to mediate DNA binding to A+T-rich sequences in vitro, contributed to CbfA-CTD-dependent gene regulatory functions in vivo.
机译:C模块结合因子(CbfA)是属于jumonji型(JmjC)转录调节子家族的多域蛋白。在社交变形虫盘基网柄菌中,CbfA在单细胞生长阶段和多细胞发育过程中调节基因表达。 CbfA和相关的盘状线虫CbfA样蛋白CbfB,共有一个旁系结构域排列,包括JmjC结构域,可能是染色质重塑活性,以及​​两个锌指状(ZF)基序。另一方面,CbfA和CbfB蛋白具有完全不同的羧基末端结构域,这表明此类结构域的可塑性可能有助于CbfA样转录因子适应双歧硬皮果进化枝中快速的基因组进化。为了支持该假设,我们进行了DNA微阵列和实时RT-PCR测量,发现CbfA在盘实线虫的营养生长过程中至少调控160个基因。这些基因的功能注释显示,CbfA主要控制参与管家功能的基因产物的表达,例如碳水化合物,嘌呤核苷/核苷酸和氨基酸代谢。 CbfA蛋白显示出两种不同的基因调控机制。一组依赖CbfA的基因的表达至少需要CbfA蛋白的JmjC / ZF结构域,因此可能依赖于染色质调节。但是,较大基因组的调节并不取决于整个CbfA蛋白,而仅需要CbfA的羧基末端结构域(CbfA-CTD)。位于CbfA-CTD中的AT钩基序,已知在体外介导DNA与富含A + T的序列的结合,有助于体内CbfA-CTD依赖性基因的调控功能。

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