Honas Bradley J, Glassman Urlene M, Wiese Thomas J
Department of Chemistry, Fort Hays State University, Hays, KS 67601 USA.
Comp Biochem Physiol B Biochem Mol Biol. 2009 Aug;153(4):359-64. doi: 10.1016/j.cbpb.2009.04.006. Epub 2009 Apr 24.
The oligosaccharide portion of glycoproteins is known to modulate protein structure, function, and turnover. Our laboratory is interested in the metabolism of L-fucose, a normal constituent of eukaryotic glycoproteins. L-fucose is unique in that it is the only levorotatory sugar utilized in mammalian systems. There is considerable interest in understanding the controls which determine the level of L-fucose attached to proteins, in order to generate stable and active glycoforms of protein for the treatment of disease. As part of a program to determine the controls on protein L-fucosylation, we have systematically determined the tissue distribution of the enzymes L-fucokinase and alpha-L-fucosidase in species across the vertebrate animal kingdom. In general, the level of alpha-L-fucosidase is higher than L-fucokinase level. The tissue with highest enzyme activity cannot be generalized, regardless of which enzyme is of interest. Furthermore, there is not a correlation between synthetic and catabolic enzyme activity within a tissue. L-fucokinase can be detected in all tissues examined. Interestingly, we have also detected ss-D-fucosidase activity, present in extraordinary levels in the liver and small intestine of snake. Whether this is due to a specific enzyme or whether it represents a broad specificity of the alpha-L-fucosidase is currently being investigated.
已知糖蛋白的寡糖部分可调节蛋白质的结构、功能和周转。我们实验室对L-岩藻糖的代谢感兴趣,L-岩藻糖是真核糖蛋白的正常组成成分。L-岩藻糖的独特之处在于它是哺乳动物系统中唯一使用的左旋糖。为了生成用于治疗疾病的稳定且有活性的糖蛋白形式,人们对了解决定与蛋白质相连的L-岩藻糖水平的调控机制有着浓厚兴趣。作为确定蛋白质L-岩藻糖基化调控机制项目的一部分,我们系统地测定了整个脊椎动物界不同物种中L-岩藻糖激酶和α-L-岩藻糖苷酶的组织分布。一般来说,α-L-岩藻糖苷酶的水平高于L-岩藻糖激酶的水平。无论关注的是哪种酶,酶活性最高的组织都无法一概而论。此外,组织内合成酶和分解代谢酶的活性之间没有相关性。在所检测的所有组织中都能检测到L-岩藻糖激酶。有趣的是,我们还检测到了β-D-岩藻糖苷酶活性,在蛇的肝脏和小肠中含量极高。目前正在研究这是由于一种特定的酶,还是代表α-L-岩藻糖苷酶的广泛特异性。