Hennet Thierry
Institute of Physiology and Center for Integrative Human Physiology, University of Zurich, Winterthurerstrasse 190, CH-8057, Switzerland.
Biochim Biophys Acta. 2012 Sep;1820(9):1306-17. doi: 10.1016/j.bbagen.2012.02.001. Epub 2012 Feb 9.
Diseases of glycosylation are rare inherited disorders, which are often referred to as congenital disorders of glycosylation (CDG). Several types of CDG have been described in the last decades, encompassing defects of nucleotide-sugar biosynthesis, nucleotide-sugar transporters, glycosyltransferases and vesicular transport. Although clinically heterogeneous, most types of CDG are associated with neurological impairments ranging from severe psychomotor retardation to moderate intellectual disabilities. CDG are mainly caused by defects of N-glycosylation, owing to the simple detection of under-glycosylated serum transferrin by isoelectric focusing.
In the last years, several disorders of O-glycosylation, glycolipid and glycosaminoglycan biosynthesis have been described, which are known by trivial names not directly associated with the family of CDG. The present review outlines 64 gene defects affecting glycan biosynthesis and modifications, thereby underlining the complexity of glycosylation pathways and pointing to unexpected phenotypes and functional redundancies in the control of glycoconjugate biosynthesis.
The increasing application of whole-genome sequencing techniques unravels new defects of glycosylation, which are associated to moderate forms of mental disabilities.
The knowledge gathered through the investigation of CDG increases the understanding of the functions associated to protein glycosylation in humans. This article is part of a Special Issue entitled Glycoproteomics.
糖基化疾病是罕见的遗传性疾病,通常被称为先天性糖基化障碍(CDG)。在过去几十年中已描述了几种类型的CDG,包括核苷酸糖生物合成、核苷酸糖转运体、糖基转移酶和囊泡运输的缺陷。尽管临床症状各异,但大多数类型的CDG都与神经功能障碍有关,范围从严重的精神运动发育迟缓到中度智力残疾。由于通过等电聚焦简单检测到糖基化不足的血清转铁蛋白,CDG主要由N-糖基化缺陷引起。
在过去几年中,已描述了几种O-糖基化、糖脂和糖胺聚糖生物合成的疾病,它们以与CDG家族没有直接关联的通俗名称为人所知。本综述概述了影响聚糖生物合成和修饰的64种基因缺陷,从而强调了糖基化途径的复杂性,并指出了糖缀合物生物合成控制中意想不到的表型和功能冗余。
全基因组测序技术的应用日益广泛,揭示了与中度智力残疾形式相关的新的糖基化缺陷。
通过对CDG的研究积累的知识增加了对人类蛋白质糖基化相关功能的理解。本文是名为糖蛋白质组学的特刊的一部分。