Department of Biochemistry, University of Wisconsin, Madison, WI 53706, USA.
Curr Opin Struct Biol. 2010 Oct;20(5):543-50. doi: 10.1016/j.sbi.2010.08.002. Epub 2010 Sep 9.
The biological importance of proteins and nucleic acids in the natural world is undeniable, and research efforts on these macromolecules have often overshadowed those directed at carbohydrates. It is now known, however, that carbohydrates not only play roles in energy storage and plant cell wall structure, but are also intimately involved in such processes as fertilization, the immune response, and cell adhesion. Indeed, recent years have seen an explosion in research efforts directed at uncovering and understanding new sugar moieties. The dideoxysugars and trideoxysugars, which are synthesized by a variety of bacteria, fungi, and plants, represent an especially intriguing class of carbohydrates. They are found, for example, on the lipopolysaccharides of some Gram-negative bacteria or on antibacterial agents such as erythromycin. Many of them are formed from simple monosaccharides such as glucose-6-phosphate or fructose-6-phosphate via a myriad of enzymatic reactions including acetylations, aminations, dehydrations, epimerizations, reductions, and methylations. In this review we focus on the recent structural investigations of the bacterial N-acetyltransferases and the PLP-dependent aminotransferases that function on nucleotide-linked sugar substrates.
蛋白质和核酸在自然界中的生物学重要性是不可否认的,对这些生物大分子的研究工作常常超过了对碳水化合物的研究。然而,现在人们已经知道,碳水化合物不仅在能量储存和植物细胞壁结构中发挥作用,而且还与受精、免疫反应和细胞黏附等过程密切相关。事实上,近年来,人们在揭示和理解新糖基的研究工作中投入了大量的精力。双脱氧糖和三脱氧糖由各种细菌、真菌和植物合成,它们代表了一类特别有趣的碳水化合物。例如,它们存在于一些革兰氏阴性菌的脂多糖或红霉素等抗菌剂上。许多双脱氧糖和三脱氧糖是由葡萄糖-6-磷酸或果糖-6-磷酸等简单的单糖通过乙酰化、氨化、脱水、差向异构化、还原和甲基化等多种酶促反应形成的。在这篇综述中,我们重点介绍了最近对细菌 N-乙酰基转移酶和依赖 PLP 的氨基转移酶的结构研究,这些酶作用于核苷酸连接的糖底物。