Stanley P, Ioffe E
Department of Cell Biology, Albert Einstein College of Medicine, New York, New York 10461, USA.
FASEB J. 1995 Nov;9(14):1436-44. doi: 10.1096/fasebj.9.14.7589985.
Glycosyltransferases (Glyc-T's) catalyze the synthesis of the carbohydrate portions of glycoproteins, glycolipids, and proteoglycans. Most Glyc-T's transfer one sugar in one linkage and are encoded by a unique gene. Thus, synthesis of a branched carbohydrate may require expression of at least 30 Glyc-T genes. Mutations that alter Glyc-T activity therefore provide an approach to identifying functions for carbohydrates. These fall into two general categories: 1) intramolecular functions pertaining to the physical and biochemical properties of a glycoconjugate; and 2) intermolecular functions that involve recognition of sugar (or sugars) by another molecule, such as the selectins that bind to specific sugar sequences at the cell surface. In this review, the origin, nature, and uses of Glyc-T mutants that have been used to study both types of carbohydrate function will be summarized. Many Glyc-T genes are now cloned, so transgenic and gene disruption techniques are the latest strategies for identifying new functions for carbohydrates. It is already apparent that the consequences of altering the spectrum of carbohydrates expressed by a cell or an organism range from "none" to "death." A key challenge for the future is to identify molecular bases for the complex phenotypes created by glycosylation engineering. Equally important will be to understand factors that regulate Glyc-T genes, a new class of genes whose study may reveal novel mechanisms of biological regulation.
糖基转移酶(Glyc-T's)催化糖蛋白、糖脂和蛋白聚糖碳水化合物部分的合成。大多数糖基转移酶以一种连接方式转移一个糖,且由一个独特的基因编码。因此,合成一个分支碳水化合物可能需要至少30个糖基转移酶基因的表达。改变糖基转移酶活性的突变因此为确定碳水化合物的功能提供了一种方法。这些突变可分为两大类:1)与糖缀合物的物理和生化特性相关的分子内功能;2)涉及另一个分子识别一个或多个糖的分子间功能,例如在细胞表面结合特定糖序列的选择素。在这篇综述中,将总结用于研究这两种碳水化合物功能的糖基转移酶突变体的起源、性质和用途。现在许多糖基转移酶基因已被克隆,因此转基因和基因敲除技术是确定碳水化合物新功能的最新策略。很明显,改变细胞或生物体表达的碳水化合物谱所产生的后果从“无影响”到“死亡”不等。未来的一个关键挑战是确定糖基化工程所产生的复杂表型的分子基础。同样重要的是要了解调节糖基转移酶基因的因素,这是一类新的基因,对其研究可能揭示生物调节的新机制。