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盘基网柄菌中Skp1的复杂糖基化:对其他真核细胞质和核蛋白修饰的影响

Complex glycosylation of Skp1 in Dictyostelium: implications for the modification of other eukaryotic cytoplasmic and nuclear proteins.

作者信息

West Christopher M, van der Wel Hanke, Gaucher Eric A

机构信息

Department of Anatomy and Cell Biology, 1600 SW Archer Road, University of Florida College of Medicine, Gainesville, FL 32610-0235, USA.

出版信息

Glycobiology. 2002 Feb;12(2):17R-27R. doi: 10.1093/glycob/12.2.17r.

Abstract

Recently, complex O-glycosylation of the cytoplasmic/nuclear protein Skp1 has been characterized in the eukaryotic microorganism Dictyostelium. Skp1's glycosylation is mediated by the sequential action of a prolyl hydroxylase and five conventional sugar nucleotide-dependent glycosyltransferase activities that reside in the cytoplasm rather than the secretory compartment. The Skp1-HyPro GlcNAcTransferase, which adds the first sugar, appears to be related to a lineage of enzymes that originated in the prokaryotic cytoplasm and initiates mucin-type O-linked glycosylation in the lumen of the eukaryotic Golgi apparatus. GlcNAc is extended by a bifunctional glycosyltransferase that mediates the ordered addition of beta1,3-linked Gal and alpha1,2-linked Fuc. The architecture of this enzyme resembles that of certain two-domain prokaryotic glycosyltransferases. The catalytic domains are related to those of a large family of prokaryotic and eukaryotic, cytoplasmic, membrane-bound, inverting glycosyltransferases that modify glycolipids and polysaccharides prior to their translocation across membranes toward the secretory pathway or the cell exterior. The existence of these enzymes in the eukaryotic cytoplasm away from membranes and their ability to modify protein acceptors expose a new set of cytoplasmic and nuclear proteins to potential prolyl hydroxylation and complex O-linked glycosylation.

摘要

最近,真核微生物盘基网柄菌中细胞质/核蛋白Skp1的复杂O-糖基化已得到表征。Skp1的糖基化由脯氨酰羟化酶和五种存在于细胞质而非分泌区室的传统糖核苷酸依赖性糖基转移酶活性的顺序作用介导。添加第一个糖的Skp1-HyPro GlcNAc转移酶似乎与起源于原核细胞质并在真核高尔基体腔中启动粘蛋白型O-连接糖基化的酶系有关。GlcNAc由一种双功能糖基转移酶延伸,该酶介导β1,3-连接的Gal和α1,2-连接的Fuc的有序添加。这种酶的结构类似于某些两结构域原核糖基转移酶。催化结构域与一大类原核和真核、细胞质、膜结合、转化糖基转移酶的催化结构域相关,这些酶在糖脂和多糖跨膜转运到分泌途径或细胞外之前对其进行修饰。这些酶在远离膜的真核细胞质中的存在以及它们修饰蛋白质受体的能力使一组新的细胞质和核蛋白暴露于潜在的脯氨酰羟化和复杂O-连接糖基化。

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