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利用针对突变胶原基因的嵌合反义基因对转基因小鼠脆性骨骼致死表型进行部分挽救。

Partial rescue of a lethal phenotype of fragile bones in transgenic mice with a chimeric antisense gene directed against a mutated collagen gene.

作者信息

Khillan J S, Li S W, Prockop D J

机构信息

Department of Biochemistry and Molecular Biology, Jefferson Medical College, Thomas Jefferson University, Philadelphia, PA 19107.

出版信息

Proc Natl Acad Sci U S A. 1994 Jul 5;91(14):6298-302. doi: 10.1073/pnas.91.14.6298.

Abstract

Previously, transgenic mice were prepared that developed a lethal phenotype of fragile bones because they expressed an internally deleted mini-gene for the pro alpha 1(I) chain of human type I procollagen. The shortened pro alpha 1(I) chains synthesized from the human transgene bound to and produced degradation of normal pro alpha 1(I) chains synthesized from the normal mouse alleles. Here we assembled an antisense gene that was similar to the internally deleted COL1A1 minigene but the 3' half of the gene was inverted so as to code for an antisense RNA. Transgenic mice expressing the antisense gene had a normal phenotype, apparently because the antisense gene contained human sequences instead of mouse sequences. Two lines of mice expressing the antisense gene were bred to two lines of transgenic mice expressing the mini-gene. In mice that inherited both genes, the incidence of the lethal fragile bone phenotype was reduced from 92% to 27%. The effects of the antisense gene were directly demonstrated by an increase in the ratio of normal mouse pro alpha 1(I) chains to human mini-pro alpha 1(I) chains in tissues from mice that inherited both genes and had a normal phenotype. The results raise the possibility that chimeric gene constructs that contain intron sequences and in which only the second half of a gene is inverted may be particularly effective as antisense genes.

摘要

此前,制备了转基因小鼠,这些小鼠表现出脆弱骨骼的致死表型,因为它们表达了人I型前胶原原α1(I)链的内部缺失小基因。从人类转基因合成的缩短的原α1(I)链与从正常小鼠等位基因合成的正常原α1(I)链结合并导致其降解。在这里,我们构建了一个反义基因,它与内部缺失的COL1A1小基因相似,但基因的3'半部分被颠倒,以便编码反义RNA。表达反义基因的转基因小鼠具有正常表型,显然是因为反义基因包含人类序列而非小鼠序列。将两系表达反义基因的小鼠与两系表达小基因的转基因小鼠进行杂交。在同时继承了这两个基因的小鼠中,致死性脆弱骨骼表型的发生率从92%降至27%。通过在同时继承了这两个基因且具有正常表型的小鼠组织中,正常小鼠原α1(I)链与人小原α1(I)链的比例增加,直接证明了反义基因的作用。这些结果提出了一种可能性,即包含内含子序列且只有基因后半部分被颠倒的嵌合基因构建体可能作为反义基因特别有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4b3/44188/700bd427b070/pnas01136-0057-a.jpg

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