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无腿插入突变:形态学、分子及遗传学特征

legless insertional mutation: morphological, molecular, and genetic characterization.

作者信息

Singh G, Supp D M, Schreiner C, McNeish J, Merker H J, Copeland N G, Jenkins N A, Potter S S, Scott W

机构信息

Children's Hospital Medical Center, Department of Pediatrics, University of Cincinnati College of Medicine, Ohio 45229.

出版信息

Genes Dev. 1991 Dec;5(12A):2245-55. doi: 10.1101/gad.5.12a.2245.

Abstract

Limb morphogenesis is an excellent model system to study pattern formation during vertebrate development. The legless (lgl) insertional mutation can serve as a tool to analyze specific events in limb development at the embryologic, genetic, and molecular levels. Hemizygous mice of this transgenic line are phenotypically normal, but homozygous mutants are inviable and exhibit limb, brain, and craniofacial malformations, as well as situs inversus. By morphological analysis of mutant hindlimb buds we show absence of a normal apical ectodermal ridge, a structure required for limb bud outgrowth, and an unusually high degree of mesenchymal and ectodermal cell death. Mutant embryos are extremely sensitive to retinoic acid, a known teratogen with a proposed role in limb development. The hindlimb malformations in legless mutants are less severe when bred into the BALB/c background, suggesting the involvement of other strain-specific genes. Molecular analysis of the disrupted region indicates two tightly linked insertion sites. Sequences flanking the transgene insertions have been cloned and mapped to chromosome 12, near the iv (situs inversus viscerum) locus. Consistent with this, complementation tests confirm allelism of lgl and iv and suggest that the transgene insertion may have disrupted more than one gene. Phylogenetically conserved sequences flanking the transgene insertions were identified and used to isolate candidate lgl and iv cDNAs.

摘要

肢体形态发生是研究脊椎动物发育过程中模式形成的一个出色模型系统。无腿(lgl)插入突变可作为一种工具,用于在胚胎学、遗传学和分子水平上分析肢体发育中的特定事件。该转基因品系的半合子小鼠在表型上是正常的,但纯合突变体无法存活,并表现出肢体、大脑和颅面畸形,以及内脏反位。通过对突变后肢芽的形态学分析,我们发现正常的顶端外胚层嵴缺失,这是肢体芽生长所需的结构,同时间充质和外胚层细胞死亡程度异常高。突变胚胎对视黄酸极其敏感,视黄酸是一种已知的致畸剂,在肢体发育中具有推测作用。当培育到BALB/c背景中时,无腿突变体的后肢畸形不太严重,这表明其他品系特异性基因也参与其中。对 disrupted 区域的分子分析表明有两个紧密连锁的插入位点。转基因插入两侧的序列已被克隆并定位到12号染色体上,靠近iv(内脏反位)位点。与此一致的是,互补试验证实了lgl和iv的等位性,并表明转基因插入可能破坏了不止一个基因。鉴定了转基因插入两侧的系统发育保守序列,并用于分离候选的lgl和iv cDNA。

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