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Bmp4杂合缺失小鼠中的单倍剂量不足表型以及Gli3和Alx4突变的修饰作用。

Haploinsufficient phenotypes in Bmp4 heterozygous null mice and modification by mutations in Gli3 and Alx4.

作者信息

Dunn N R, Winnier G E, Hargett L K, Schrick J J, Fogo A B, Hogan B L

机构信息

Department of Cell Biology, Vanderbilt University Medical School, Nashville, Tennessee, 37232-2175, USA.

出版信息

Dev Biol. 1997 Aug 15;188(2):235-47. doi: 10.1006/dbio.1997.8664.

Abstract

Bone morphogenetic protein 4 (Bmp4), a vertebrate homolog of Drosophila decapentaplegic (dpp), encodes a signaling protein with multiple functions during embryogenesis. Most mouse embryos homozygous for the Bmp4(tm1blh) null allele die around the time of gastrulation, with little or no mesoderm. Two independently derived Bmp4(tm1) mutations were backcrossed onto the C57BL/6 genetic background. Several independently expressed, incompletely penetrant abnormalities were observed in heterozygotes, including cystic kidney, craniofacial malformations, microphthalmia, and preaxial polydactyly of the right hindlimb. In addition, heterozygotes were consistently underrepresented at weaning. These results indicate that Bmp4 gene dosage is essential for the normal development of a variety of organs and for neonatal viability. Two mutations that enhance the penetrance and expressivity of the polydactylous phenotype were identified: Gli3(XtJ), a deletion mutation involving a gene encoding a zinc-finger protein related to Drosophila cubitus interruptus, and Alx4(tm1rwm), a targeted null mutation in a gene encoding a paired class homeoprotein related to Drosophila aristaless. All double Bmp4(tm1); Gli3(XtJ) heterozygotes have extensive anterior digit abnormalities of both fore- and hindlimbs, while all double Bmp4(tm1); Alx4(tm1) heterozygotes display ectopic anterior digits only on the hindlimbs. These genetic interactions suggest a model for the multigenic control of anterior digit patterning during vertebrate limb development.

摘要

骨形态发生蛋白4(Bmp4)是果蝇“缺刻翅”(dpp)在脊椎动物中的同源物,它编码一种在胚胎发育过程中具有多种功能的信号蛋白。大多数纯合Bmp4(tm1blh)无效等位基因的小鼠胚胎在原肠胚形成期左右死亡,几乎没有中胚层。两个独立衍生的Bmp4(tm1)突变被回交到C57BL/6遗传背景上。在杂合子中观察到几种独立表达、不完全显性的异常情况,包括多囊肾、颅面畸形、小眼症和右后肢的轴前多指畸形。此外,杂合子在断奶时的数量一直较少。这些结果表明,Bmp4基因剂量对于多种器官的正常发育和新生儿的生存能力至关重要。鉴定出两个增强多指表型的外显率和表达性的突变:Gli3(XtJ),一种涉及编码与果蝇“肘脉中断”相关的锌指蛋白的基因的缺失突变;以及Alx4(tm1rwm),一种编码与果蝇“无触角”相关的配对类同源蛋白的基因中的靶向无效突变。所有Bmp4(tm1);Gli3(XtJ)双杂合子的前肢和后肢都有广泛的前指异常,而所有Bmp4(tm1);Alx4(tm1)双杂合子仅在后肢上显示异位前指。这些基因相互作用提示了一种脊椎动物肢体发育过程中前指模式多基因控制的模型。

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