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通过ENU诱变产生的Gdf5中一种新的显性负性突变会损害关节形成并导致小鼠骨关节炎。

A novel dominant-negative mutation in Gdf5 generated by ENU mutagenesis impairs joint formation and causes osteoarthritis in mice.

作者信息

Masuya Hiroshi, Nishida Keiichiro, Furuichi Tatsuya, Toki Hideaki, Nishimura Gen, Kawabata Hidehiko, Yokoyama Haruka, Yoshida Aki, Tominaga Sayaka, Nagano Junko, Shimizu Aya, Wakana Shigeharu, Gondo Yoichi, Noda Tetsuo, Shiroishi Toshihiko, Ikegawa Shiro

机构信息

Mouse Functional Genomics Research Group, RIKEN GSC, Tsukuba, Ibaraki, Japan.

出版信息

Hum Mol Genet. 2007 Oct 1;16(19):2366-75. doi: 10.1093/hmg/ddm195. Epub 2007 Jul 26.

Abstract

Growth and differentiation factor 5 (GDF5) has been implicated in chondrogenesis and joint formation, and an association of GDF5 and osteoarthritis (OA) has been reported recently. However, the in vivo function of GDF5 remains mostly unclarified. Although various human GDF5 mutations and their phenotypic consequences have been described, only loss-of-function mutations that cause brachypodism (shortening and joint ankylosis of the digits) have been reported in mice. Here, we report a new Gdf5 allele derived from a large-scale N-ethyl-N-nitrosourea mutagenesis screen. This allele carries an amino acid substitution (W408R) in a highly conserved region of the active signaling domain of the GDF5 protein. The mutation is semi-dominant, showing brachypodism and ankylosis in heterozygotes and much more severe brachypodism, ankylosis of the knee joint and malformation with early-onset OA of the elbow joint in homozygotes. The mutant GDF5 protein is secreted and dimerizes normally, but inhibits the function of the wild-type GDF5 protein in a dominant-negative fashion. This study further highlights a critical role of GDF5 in joint formation and the development of OA, and this mouse should serve as a good model for OA.

摘要

生长分化因子5(GDF5)与软骨形成和关节形成有关,最近有报道称GDF5与骨关节炎(OA)存在关联。然而,GDF5在体内的功能大多仍不明确。尽管已经描述了各种人类GDF5突变及其表型后果,但在小鼠中仅报道了导致短肢畸形(指骨缩短和关节强直)的功能丧失突变。在此,我们报告了一个源自大规模N-乙基-N-亚硝基脲诱变筛选的新Gdf5等位基因。该等位基因在GDF5蛋白活性信号域的高度保守区域携带一个氨基酸替换(W408R)。该突变是半显性的,杂合子表现出短肢畸形和关节强直,纯合子则表现出更严重的短肢畸形、膝关节强直以及肘关节早发性OA伴畸形。突变的GDF5蛋白正常分泌并二聚化,但以显性负性方式抑制野生型GDF5蛋白的功能。本研究进一步突出了GDF5在关节形成和OA发展中的关键作用,并且该小鼠应可作为OA的良好模型。

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