Xu Mingchu, Yamada Takeyuki, Sun Zixi, Eblimit Aiden, Lopez Irma, Wang Feng, Manya Hiroshi, Xu Shan, Zhao Li, Li Yumei, Kimchi Adva, Sharon Dror, Sui Ruifang, Endo Tamao, Koenekoop Robert K, Chen Rui
Department of Molecular and Human Genetics, Human Genome Sequencing Center.
Molecular Glycobiology, Research Team for Mechanism of Aging, Tokyo Metropolitan Geriatric Hospital and Institute of Gerontology, Tokyo 173-0015, Japan.
Hum Mol Genet. 2016 Apr 15;25(8):1479-88. doi: 10.1093/hmg/ddw022. Epub 2016 Jan 28.
A growing number of human diseases have been linked to defects in protein glycosylation that affects a wide range of organs. Among them, O-mannosylation is an unusual type of protein glycosylation that is largely restricted to the muscular and nerve system. Consistently, mutations in genes involved in the O-mannosylation pathway result in infantile-onset, severe developmental defects involving skeleton muscle, brain and eye, such as the muscle-eye-brain disease (MIM no. 253280). However, the functional importance of O-mannosylation in these tissues at later stages remains largely unknown. In our study, we have identified recessive mutations in POMGNT1, which encodes an essential component in O-mannosylation pathway, in three unrelated families with autosomal recessive retinitis pigmentosa (RP), but without extraocular involvement. Enzymatic assay of these mutant alleles demonstrate that they greatly reduce the POMGNT1 enzymatic activity and are likely to be hypomorphic. Immunohistochemistry shows that POMGNT1 is specifically expressed in photoreceptor basal body. Taken together, our work identifies a novel disease-causing gene for RP and indicates that proper protein O-mannosylation is not only essential for early organ development, but also important for maintaining survival and function of the highly specialized retinal cells at later stages.
越来越多的人类疾病与影响多种器官的蛋白质糖基化缺陷有关。其中,O-甘露糖基化是一种特殊类型的蛋白质糖基化,主要局限于肌肉和神经系统。与此一致的是,参与O-甘露糖基化途径的基因突变会导致婴儿期发病,出现涉及骨骼肌、大脑和眼睛的严重发育缺陷,如肌肉-眼-脑疾病(MIM编号253280)。然而,O-甘露糖基化在这些组织后期的功能重要性在很大程度上仍不清楚。在我们的研究中,我们在三个患有常染色体隐性视网膜色素变性(RP)但无眼外受累的无关家族中,发现了POMGNT1基因的隐性突变,该基因编码O-甘露糖基化途径中的一个重要成分。对这些突变等位基因的酶活性分析表明,它们大大降低了POMGNT1的酶活性,可能是亚效等位基因。免疫组织化学显示,POMGNT1在光感受器基体中特异性表达。综上所述,我们的工作确定了一种导致RP的新致病基因,并表明适当的蛋白质O-甘露糖基化不仅对早期器官发育至关重要,而且对后期维持高度特化的视网膜细胞的存活和功能也很重要。