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首页> 外文期刊>Science Advances >The insulator functions of the Drosophila polydactyl C2H2 zinc finger protein CTCF: Necessity versus sufficiency
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The insulator functions of the Drosophila polydactyl C2H2 zinc finger protein CTCF: Necessity versus sufficiency

机译:果蝇聚丁基C2H2锌指蛋白CTCF的绝缘子功能:必要性与充足

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摘要

In mammals, a C2H2 zinc finger (C2H2) protein, CTCF, acts as the master regulator of chromosomal architecture and of the expression of Hox gene clusters. Like mammalian CTCF, the Drosophila homolog, dCTCF, localizes to boundaries in the bithorax complex (BX-C). Here, we have determined the minimal requirements for the assembly of a functional boundary by dCTCF and two other C2H2 zinc finger proteins, Pita and Su(Hw). Although binding sites for these proteins are essential for the insulator activity of BX-C boundaries, these binding sites alone are insufficient to create a functional boundary. dCTCF cannot effectively bind to a single recognition sequence in chromatin or generate a functional insulator without the help of additional proteins. In addition, for boundary elements in BX-C at least four binding sites for dCTCF or the presence of additional DNA binding factors is required to generate a functional insulator.
机译:在哺乳动物中,C 2 H 2锌手指(C2H2)蛋白质,CTCF作为染色体结构的主调节器和HOX基因簇的表达。与哺乳动物CTCF,果蝇同源物,DCTCF,定位于Bithorax复合物(BX-C)中的边界。在这里,我们确定了DCTCF和另外两个C2H2锌指蛋白,皮塔饼和SU(HW)对功能边界组装的最小要求。虽然这些蛋白质的结合位点对于Bx-C边界的绝缘体活性至关重要,但是单独的这些结合位点不足以产生功能边界。 DCTCF不能有效地结合染色质中的单一识别序列,或者在没有其他蛋白质的帮助下产生功能绝缘体。另外,对于BX-C中的边界元素,需要用于DCTCF的至少四个结合位点或需要额外的DNA结合因子的存在以产生功能性绝缘体。

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