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The insulator factor CTCF controls MHC class II gene expression and is required for the formation of long-distance chromatin interactions

机译:绝缘子因子CTCF控制II类MHC基因的表达是长距离染色质相互作用形成所必需的

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摘要

Knockdown of the insulator factor CCCTC binding factor (CTCF), which binds XL9, an intergenic element located between HLA-DRB1 and HLA-DQA1, was found to diminish expression of these genes. The mechanism involved interactions between CTCF and class II transactivator (CIITA), the master regulator of major histocompatibility complex class II (MHC-II) gene expression, and the formation of long-distance chromatin loops between XL9 and the proximal promoter regions of these MHC-II genes. The interactions were inducible and dependent on the activity of CIITA, regulatory factor X, and CTCF. RNA fluorescence in situ hybridizations show that both genes can be expressed simultaneously from the same chromosome. Collectively, the results suggest a model whereby both HLA-DRB1 and HLA-DQA1 loci can interact simultaneously with XL9, and describe a new regulatory mechanism for these MHC-II genes involving the alteration of the general chromatin conformation of the region and their regulation by CTCF.
机译:发现与XL9结合的绝缘子CCCTC结合因子(CTCF)的敲低可减少这些基因的表达,XL9是位于HLA-DRB1和HLA-DQA1之间的一种基因间元件。该机制涉及CTCF和II类反式激活因子(CIITA),主要组织相容性复合物II类(MHC-II)基因表达的主调节剂之间的相互作用,以及XL9和这些MHC的近端启动子区域之间长距离染色质环的形成。 -II基因。相互作用是可诱导的,并取决于CIITA,调节因子X和CTCF的活性。 RNA荧光原位杂交表明,两个基因可以在同一条染色体上同时表达。总的来说,结果提示了一个模型,其中HLA-DRB1和HLA-DQA1基因座可同时与XL9相互作用,并描述了这些MHC-II基因的新调控机制,该机制涉及该区域一般染色质构象的改变以及它们的调控。 CTCF。

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