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不同小鼠品系之间以及在表达过程中,Pax3和Pax7的甲基化谱及结构的变化。

Variation in the methylation profile and structure of Pax3 and Pax7 among different mouse strains and during expression.

作者信息

Kay P H, Harmon D, Fletcher S, Ziman M, Jacobsen P F, Papadimitriou J M

机构信息

Department of Pathology, University of Western Australia, Nedlands.

出版信息

Gene. 1997 Jan 3;184(1):45-53. doi: 10.1016/s0378-1119(96)00572-0.

Abstract

Structural alterations within the myogenic and neurogenic developmental gene Pax7 which involve TaqI recognition sequences have previously been reported. These alterations are associated with differences in the efficiency of regrowth of damaged skeletal muscle. To identify other structural features of Pax genes which may influence skeletal muscle regrowth, variation in the structure and methylation status of Pax7 and the closely related gene Pax3 has been sought among different mouse strains and during gene expression using the restriction endonucleases MspI and HpaII. Following MspI digestion, RFLPs within Pax7 have been found which most likely reflect intron size variability within the paired box. Differences in the size of MspI and HpaII fragments hybridising with Pax7 and Pax3 region specific sub-probes indicate that the paired boxes are hypomethylated, whereas the region encoding the homeodomain of each gene is highly methylated in the spleen and other tissues from adult mice. In the skeletal muscle precursor cell line C2C12, which expresses Pax7 but not Pax3, the homeodomain encoding region of Pax7 is hypomethylated. In spleen cells, the Pax7 paired box is transcribed but the homeodomain encoding region is not. By contrast, both the paired box and the homeobox of Pax3 are hypermethylated in C2C12 cells indicating that generation of alternate transcripts from Pax genes may be controlled by DNA methylation. In contrast to Pax3, reference to the size of fragments hybridising with a Pax7 homeobox specific probe provides evidence for CpNpG methylation within and immediately downstream from the region encoding the homeodomain. Interestingly, CpNpG methylation remains when the Pax7 homeobox is expressed. Structural variation recognised by MspI digestion and differences in the methylation profile of Pax7 are not associated with the ability to regrow damaged skeletal muscle.

摘要

先前已有报道称,涉及TaqI识别序列的生肌和神经源性发育基因Pax7内存在结构改变。这些改变与受损骨骼肌再生效率的差异有关。为了确定Pax基因的其他可能影响骨骼肌再生的结构特征,研究人员在不同小鼠品系中以及在基因表达过程中,使用限制性内切酶MspI和HpaII,探寻了Pax7以及与之密切相关的基因Pax3的结构和甲基化状态的变化。经MspI消化后,在Pax7中发现了限制性片段长度多态性(RFLP),这很可能反映了配对盒内内含子大小的变异性。与Pax7和Pax3区域特异性亚探针杂交的MspI和HpaII片段大小的差异表明,配对盒是低甲基化的,而每个基因编码同源结构域的区域在成年小鼠的脾脏和其他组织中是高度甲基化的。在表达Pax7但不表达Pax3的骨骼肌前体细胞系C2C12中,Pax7的同源结构域编码区域是低甲基化的。在脾细胞中,Pax7配对盒被转录,但同源结构域编码区域未被转录。相比之下,Pax3的配对盒和同源异型盒在C2C12细胞中都是高甲基化的,这表明Pax基因交替转录本的产生可能受DNA甲基化控制。与Pax3不同,与Pax7同源异型盒特异性探针杂交的片段大小的参考提供了编码同源结构域区域内及其紧邻下游存在CpNpG甲基化的证据。有趣的是,当Pax7同源异型盒表达时,CpNpG甲基化仍然存在。MspI消化识别的结构变异以及Pax7甲基化谱的差异与受损骨骼肌的再生能力无关。

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