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整合于Y染色体异染色质区域的次黄嘌呤磷酸核糖转移酶(Hprt)转基因的镶嵌表达。

Mosaic expression of an Hprt transgene integrated in a region of Y heterochromatin.

作者信息

Pravtcheva D D, Wise T L, Ensor N J, Ruddle F H

机构信息

Pediatric Research Institute, St. Louis University School of Medicine, Missouri 63110.

出版信息

J Exp Zool. 1994 May 1;268(6):452-68. doi: 10.1002/jez.1402680606.

Abstract

The sensitivity of small transgenes to position effects on their expression suggests that they could serve as indicators of the chromatin properties at their integration site. In particular, they might be expected to provide information on the functional properties of mammalian heterochromatin. We have produced a transgenic line that carries a mouse Hprt minigene on the Y chromosome. In situ hybridization localized the transgene to the heterochromatic portion of the Y. Analysis of transgene expression by isoelectric focusing indicated that the transgene is expressed in a mosaic pattern, and expressing cells have different levels of transgene activity. These findings can be explained as a position effect variegation induced by Y heterochromatin. However, two other transgenes, located at autosomal sites, also showed mosaic activity. If the mosaic transgene expression is attributed to the influence of the chromatin at the insertion site, the Y heterochromatin would appear less potent than some autosomal regions at inducing variegation. An alternative explanation consistent with our results is that the mosaic expression is a semi-autonomous characteristic of these transgene loci. Transgene-expressing and non-expressing cells differed in their ability to grow and be cloned in vitro, indicating that cellular differentiation affected the chromatin structure of the transgene locus on the Y. Karyotype analysis of male mice with the Y-linked transgene and from control male mice carrying the human HPRT transgene, or the mouse Pgk-1 gene at autosomal sites, indicated that the transgene-carrying Y is prone to non-disjunction, generating cells with two (or more) or no Y chromosomes in equal proportion. Further studies will determine if the propensity of this Y chromosome to mitotic errors is also observed in vivo.

摘要

小转基因对其表达的位置效应的敏感性表明,它们可作为整合位点染色质特性的指标。特别是,有望它们能提供有关哺乳动物异染色质功能特性的信息。我们构建了一个转基因品系,其在Y染色体上携带一个小鼠Hprt小基因。原位杂交将转基因定位到Y染色体的异染色质部分。通过等电聚焦分析转基因表达表明,转基因以镶嵌模式表达,且表达细胞具有不同水平的转基因活性。这些发现可解释为由Y异染色质诱导的位置效应斑驳。然而,位于常染色体位点的另外两个转基因也表现出镶嵌活性。如果镶嵌转基因表达归因于插入位点染色质的影响,那么Y异染色质在诱导斑驳方面似乎比某些常染色体区域的效力要低。与我们的结果一致的另一种解释是,镶嵌表达是这些转基因位点的半自主特性。表达转基因和不表达转基因的细胞在体外生长和克隆能力上存在差异,这表明细胞分化影响了Y染色体上转基因位点的染色质结构。对携带Y连锁转基因的雄性小鼠以及携带人类HPRT转基因或常染色体位点的小鼠Pgk - 1基因的对照雄性小鼠进行核型分析表明,携带转基因的Y染色体易于发生不分离,以相等比例产生具有两条(或更多条)或没有Y染色体的细胞。进一步的研究将确定这种Y染色体在有丝分裂错误方面的倾向在体内是否也能观察到。

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