首页> 美国卫生研究院文献>Molecular and Cellular Biology >Silent and expressed sister Mup genes are located within distinct chromatin domains: analysis by pulsed-field gel electrophoresis and polymerase chain reaction-supplemented DNase I digestion.
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Silent and expressed sister Mup genes are located within distinct chromatin domains: analysis by pulsed-field gel electrophoresis and polymerase chain reaction-supplemented DNase I digestion.

机译:沉默和表达的姐妹Mup基因位于不同的染色质域内:通过脉冲场凝胶电泳和聚合酶链反应补充的DNase I消化进行分析。

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摘要

We have recently described a subfamily of two genes, Mup-1.5a and Mup-1.5b, which exist as a nonallelic pair in most inbred strains of mice. The Mup-1.5a and Mup-1.5b genes are more than 99.9% homologous, yet they are differentially expressed. While the Mup-1.5a gene is expressed at a high level in the submaxillary gland, the Mup-1.5b gene does not appear to be expressed either in this or in any other tissue. The Mup-1.5b gene can, however, be expressed as a transgene with the tissue specificity of its sister gene, Mup-1.5a. We have shown before that both the Mup-1.5a and Mup-1.5b genes are located on chromosome 4, closely linked to the Mup-1 locus. In this report, we demonstrate the two genes are located within distinct chromosomal domains, separated by at least 150 to 200 kb of DNA. Using a novel method, detailed in this report, we show that in the submaxillary gland, the Mup-1.5a gene is five- to sixfold more susceptible to DNase I digestion than is the Mup-1.5b gene. This finding suggests that the inactivity of the Mup-1.5b gene is brought about by long range-acting mechanisms that establish a chromatin structure in the vicinity of this gene incompatible with transcription.
机译:我们最近描述了两个基因的亚家族Mup-1.5a和Mup-1.5b,它们以非等位基因对的形式存在于大多数自交系小鼠中。 Mup-1.5a和Mup-1.5b基因同源性超过99.9%,但它们差异表达。尽管Mup-1.5a基因在上颌下腺中高表达,但Mup-1.5b基因似乎在该组织或任何其他组织中均未表达。但是,Mup-1.5b基因可以表达为具有其姊妹基因Mup-1.5a的组织特异性的转基因。我们之前已经证明,Mup-1.5a和Mup-1.5b基因都位于4号染色体上,与Mup-1基因座紧密相连。在本报告中,我们证明了这两个基因位于不同的染色体结构域内,它们之间至少间隔了150至200 kb的DNA。使用本报告中详细介绍的新方法,我们显示在上颌下腺中,Mup-1.5a基因对DNase I消化的敏感性是Mup-1.5b基因的五至六倍。这一发现表明,Mup-1.5b基因的失活是由长距离作用机制引起的,该机制在该基因附近与转录不相容的地方建立了染色质结构。

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