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一种新的Hoxd13自发小鼠突变,具有多聚丙氨酸扩展且表型与人类并指多指畸形相似。

A new spontaneous mouse mutation of Hoxd13 with a polyalanine expansion and phenotype similar to human synpolydactyly.

作者信息

Johnson K R, Sweet H O, Donahue L R, Ward-Bailey P, Bronson R T, Davisson M T

机构信息

The Jackson Laboratory, Bar Harbor, ME 04609, USA.

出版信息

Hum Mol Genet. 1998 Jun;7(6):1033-8. doi: 10.1093/hmg/7.6.1033.

Abstract

Human synpolydactyly (SPD) is an inherited congenital limb malformation caused by mutations in the HOXD13 gene. Heterozygotes are typically characterized by 3/4 finger and 4/5 toe syndactyly with associated duplicated digits; hands and feet of homozygotes are very small because of a shortening of the phalanges, metacarpal and metatarsal bones. Here we describe the phenotype and molecular basis of a spontaneous mutation of Hoxd13 in mice that provides a phenotypically and molecularly accurate model for human SPD. The new mutation, named synpolydactyly homolog (spdh), is a 21 bp in-frame duplication within a polyalanine-encoding region at the 5'-end of the Hoxd13 coding sequence. The duplication expands the stretch of alanines from 15 to 22; the same type of expansion occurs in human SPD mutations. spdh/spdh homozygotes exhibit severe malformations of all four feet, including polydactyly, syndactyly and brachydactylia. The phenotype of spdh is much more severe than that exhibited by mice with a genetically engineered, presumably null, disruption of Hoxd13. Thus spdh probably acts in a dominant-negative manner and will be valuable for examining interactions with other Hox genes and their protein products during limb development. Homozygous mice of both sexes also lack preputial glands and males do not breed; therefore, spdh/spdh mice may also be valuable in studies of reproductive physiology and behavior.

摘要

人类并指多指畸形(SPD)是一种由HOXD13基因突变引起的遗传性先天性肢体畸形。杂合子的典型特征是3/4指和4/5趾并指,并伴有多指;纯合子的手和脚由于指骨、掌骨和跖骨缩短而非常小。在这里,我们描述了小鼠中Hoxd13自发突变的表型和分子基础,该突变提供了一个在表型和分子水平上都准确的人类SPD模型。这个新突变名为并指多指同源物(spdh),是Hoxd13编码序列5'端一个编码多聚丙氨酸区域内的21 bp框内重复。该重复使丙氨酸序列从15个扩展到22个;人类SPD突变中也会出现相同类型的扩展。spdh/spdh纯合子表现出所有四只脚的严重畸形,包括多指、并指和短指。spdh的表型比通过基因工程构建的、推测为无效的Hoxd13缺失小鼠所表现出的表型严重得多。因此,spdh可能以显性负性方式起作用,对于研究肢体发育过程中与其他Hox基因及其蛋白质产物的相互作用将具有重要价值。两性纯合子小鼠也缺乏包皮腺,雄性不育;因此,spdh/spdh小鼠在生殖生理学和行为学研究中也可能具有重要价值。

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