Xiong Hui, Kobayashi Kazuhiro, Tachikawa Masaji, Manya Hiroshi, Takeda Satoshi, Chiyonobu Tomohiro, Fujikake Nobuhiro, Wang Fan, Nishimoto Akemi, Morris Glenn E, Nagai Yoshitaka, Kanagawa Motoi, Endo Tamao, Toda Tatsushi
Division of Clinical Genetics, Department of Medical Genetics, Osaka University Graduate School of Medicine, 2-2-B9 Yamadaoka, Suita, Osaka 565-0871, Japan.
Biochem Biophys Res Commun. 2006 Dec 1;350(4):935-41. doi: 10.1016/j.bbrc.2006.09.129. Epub 2006 Oct 2.
The recent identification of mutations in genes encoding demonstrated or putative glycosyltransferases has revealed a novel mechanism for congenital muscular dystrophy. Hypoglycosylated alpha-dystroglycan (alpha-DG) is commonly seen in Fukuyama-type congenital muscular dystrophy (FCMD), muscle-eye-brain disease (MEB), Walker-Warburg syndrome (WWS), and Large(myd) mice. POMGnT1 and POMTs, the gene products responsible for MEB and WWS, respectively, synthesize unique O-mannose sugar chains on alpha-DG. The function of fukutin, the gene product responsible for FCMD, remains undetermined. Here we show that fukutin co-localizes with POMGnT1 in the Golgi apparatus. Direct interaction between fukutin and POMGnT1 was confirmed by co-immunoprecipitation and two-hybrid analyses. The transmembrane region of fukutin mediates its localization to the Golgi and participates in the interaction with POMGnT1. Y371C, a missense mutation found in FCMD, retains fukutin in the ER and also redirects POMGnT1 to the ER. Finally, we demonstrate reduced POMGnT1 enzymatic activity in transgenic knock-in mice carrying the retrotransposal insertion in the fukutin gene, the prevalent mutation in FCMD. From these findings, we propose that fukutin forms a complex with POMGnT1 and may modulate its enzymatic activity.
最近对编码已证实或推测的糖基转移酶的基因突变的鉴定揭示了先天性肌营养不良的一种新机制。低糖基化的α- dystroglycan(α-DG)常见于福山型先天性肌营养不良(FCMD)、肌肉-眼-脑疾病(MEB)、沃克-沃尔堡综合征(WWS)和Large(myd)小鼠中。分别负责MEB和WWS的基因产物POMGnT1和POMTs在α-DG上合成独特的O-甘露糖糖链。负责FCMD的基因产物fukutin的功能仍未确定。在这里,我们表明fukutin与POMGnT1在高尔基体中共定位。通过共免疫沉淀和双杂交分析证实了fukutin与POMGnT1之间的直接相互作用。fukutin的跨膜区域介导其在高尔基体中的定位,并参与与POMGnT1的相互作用。Y371C是在FCMD中发现的一种错义突变,它将fukutin保留在内质网中,也将POMGnT1重定向到内质网。最后,我们证明在携带fukutin基因逆转座插入(FCMD中的常见突变)的转基因敲入小鼠中,POMGnT1的酶活性降低。基于这些发现,我们提出fukutin与POMGnT1形成复合物,并可能调节其酶活性。