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通过一个可选择标记盒对基因表达进行远距离干扰。

Long-range disruption of gene expression by a selectable marker cassette.

作者信息

Pham C T, MacIvor D M, Hug B A, Heusel J W, Ley T J

机构信息

Washington University School of Medicine, Department of Medicine, St. Louis, MO 63110-1093, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):13090-5. doi: 10.1073/pnas.93.23.13090.

Abstract

Recent studies have suggested that the retention of selectable marker cassettes (like PGK-Neo, in which a hybrid gene consisting of the phosphoglycerate kinase I promoter drives the neomycin phosphotransferase gene) in targeted loci can cause unexpected phenotypes in "knockout" mice due to disruption of expression of neighboring genes within a locus. We have studied targeted mutations in two multigene clusters, the granzyme B locus and the beta-like globin gene cluster. The insertion of PGK-Neo into the granzyme B gene, the most 5' gene in the granzyme B gene cluster, severely reduced the normal expression of multiple genes within the locus, even at distances greater than 100 kb from the mutation. Similarly, the insertion of a PGK-Neo cassette into the beta-globin locus control region (LCR) abrogates the expression of multiple globin genes downstream from the cassette. In contrast, a targeted mutation of the promyelocyte-specific cathepsin G gene (which lies just 3' to the granzyme genes in the same cluster) had minimal effects on upstream granzyme gene expression. Although the mechanism of these-long distance effects are unknown, the expression of PGK-Neo can be "captured" by the regulatory domain into which it is inserted. These results suggest that the PGK-Neo cassette can interact productively with locus control regions and thereby disrupt normal interactions between local and long-distance regulatory regions within a tissue-specific domain.

摘要

最近的研究表明,在“基因敲除”小鼠的靶向位点中,选择性标记盒(如PGK-Neo,其中由磷酸甘油酸激酶I启动子驱动的新霉素磷酸转移酶基因组成的杂种基因)的保留,可能会由于一个位点内邻近基因表达的破坏而导致意外的表型。我们研究了两个多基因簇中的靶向突变,即颗粒酶B基因座和β-样珠蛋白基因簇。将PGK-Neo插入颗粒酶B基因(颗粒酶B基因簇中最5'端的基因),即使在距离突变大于100 kb的位置,也会严重降低该位点内多个基因的正常表达。同样,将PGK-Neo盒插入β-珠蛋白基因座控制区(LCR)会消除该盒下游多个珠蛋白基因的表达。相比之下,早幼粒细胞特异性组织蛋白酶G基因(位于同一簇中颗粒酶基因的3'端)的靶向突变对上游颗粒酶基因表达的影响最小。尽管这些长距离效应的机制尚不清楚,但PGK-Neo的表达可以被其插入的调控域“捕获”。这些结果表明,PGK-Neo盒可以与基因座控制区有效相互作用,从而破坏组织特异性域内局部和长距离调控区之间的正常相互作用。

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