Wilson J B, Ferguson M W, Jenkins N A, Lock L F, Copeland N G, Levine A J
Department of Genetics, Robertson Institute for Biotechnology, University of Glasgow, Scotland, United Kingdom.
Cell Growth Differ. 1993 Feb;4(2):67-76.
A transgenic mouse line, PyLMP.5, exhibited a sex-linked lethality not observed in any other lines expressing the transgene. In this unique line, the transgene integrated into the X chromosome, yielding a simple tandem duplication of the insert sequences with minimal, if any, additional rearrangement of the cellular sequences. The predominant phenotype was a cleft secondary palate and neonatal lethality in males. Survival of females was dependent on the mouse strain background. The disrupted cellular sequences have been mapped to the proximal region of the mouse X chromosome. The disrupted locus may represent the mouse counterpart to a human locus mutated in an X-linked cleft secondary palate syndrome.
一种转基因小鼠品系PyLMP.5表现出一种性连锁致死性,这在表达该转基因的其他任何品系中均未观察到。在这个独特的品系中,转基因整合到X染色体上,产生了插入序列的简单串联重复,细胞序列即使有额外重排也极少。主要表型是腭裂和雄性新生仔鼠致死。雌性的存活取决于小鼠品系背景。被破坏的细胞序列已定位到小鼠X染色体的近端区域。该被破坏的基因座可能代表了与X连锁腭裂综合征中发生突变的人类基因座相对应的小鼠基因座。