Reynders Ellen, Foulquier François, Leão Teles Elisa, Quelhas Dulce, Morelle Willy, Rabouille Cathérine, Annaert Wim, Matthijs Gert
and Department for Molecular and Developmental Genetics, Laboratory for Membrane Trafficking, Center for Human Genetics, University of Leuven VIB, B-3000 Leuven, Belgium.
Hum Mol Genet. 2009 Sep 1;18(17):3244-56. doi: 10.1093/hmg/ddp262. Epub 2009 Jun 3.
The conserved oligomeric Golgi (COG) complex is a hetero-octameric complex essential for normal glycosylation and intra-Golgi transport. An increasing number of congenital disorder of glycosylation type II (CDG-II) mutations are found in COG subunits indicating its importance in glycosylation. We report a new CDG-II patient harbouring a p.R729W missense mutation in COG4 combined with a submicroscopical deletion. The resulting downregulation of COG4 expression additionally affects expression or stability of other lobe A subunits. Despite this, full complex formation was maintained albeit to a lower extent as shown by glycerol gradient centrifugation. Moreover, our data indicate that subunits are present in a cytosolic pool and full complex formation assists tethering preceding membrane fusion. By extending this study to four other known COG-deficient patients, we now present the first comparative analysis on defects in transport, glycosylation and Golgi ultrastructure in these patients. The observed structural and biochemical abnormalities correlate with the severity of the mutation, with the COG4 mutant being the mildest. All together our results indicate that intact COG complexes are required to maintain Golgi dynamics and its associated functions. According to the current CDG nomenclature, this newly identified deficiency is designated CDG-IIj.
保守寡聚高尔基体(COG)复合体是一种异八聚体复合体,对正常糖基化和高尔基体内部运输至关重要。在COG亚基中发现越来越多的II型先天性糖基化障碍(CDG-II)突变,表明其在糖基化中的重要性。我们报告了一名新的CDG-II患者,其COG4基因存在p.R729W错义突变,并伴有亚显微缺失。由此导致的COG4表达下调还会影响其他A叶亚基的表达或稳定性。尽管如此,甘油梯度离心显示仍维持了完整复合体的形成,尽管程度较低。此外,我们的数据表明亚基存在于胞质池中,完整复合体的形成有助于在膜融合之前进行拴系。通过将这项研究扩展到其他四名已知的COG缺陷患者,我们现在首次对这些患者的运输、糖基化和高尔基体超微结构缺陷进行了比较分析。观察到的结构和生化异常与突变的严重程度相关,其中COG4突变最为轻微。我们所有的结果表明,完整的COG复合体是维持高尔基体动态及其相关功能所必需的。根据当前的CDG命名法,这种新发现的缺陷被命名为CDG-IIj。