Shaw L, Schauer R
Biochemisches Institut, Christian-Albrechts-Universität Kiel, Federal Republic of Germany.
Biochem J. 1989 Oct 15;263(2):355-63. doi: 10.1042/bj2630355.
The finding that N-glycoloylneuraminic acid (Neu5Gc) in pig submandibular gland is synthesized by hydroxylation of the sugar nucleotide CMP-Neu5Ac [Shaw & Schauer (1988) Biol. Chem. Hoppe-Seyler 369, 477-486] prompted us to investigate further the biosynthesis of this sialic acid in mouse liver. Free [14C]Neu5Ac, CMP-[14C]Neu5Ac and [14C]Neu5Ac glycosidically bound by Gal alpha 2-3- and Gal alpha 2-6-GlcNAc beta 1-4 linkages to fetuin were employed as potential substrates in experiments with fractionated mouse liver homogenates. The only substrate to be hydroxylated was the CMP-Neu5Ac glycoside. The product of the reaction was identified by chemical and enzymic methods as CMP-Neu5Gc. All of the CMP-Neu5Ac hydroxylase activity was detected in the high-speed supernatant fraction. The hydroxylase required a reduced nicotinamide nucleotide [NAD(P)H] coenzyme and molecular oxygen for activity. Furthermore, the activity of this enzyme was enhanced by exogenously added Fe2+ or Fe3+ ions, all other metal salts tested having a negligible or inhibitory influence. This hydroxylase is therefore tentatively classified as a monooxygenase. The cofactor requirement and CMP-Neu5Ac substrate specificity are identical to those of the enzyme in high-speed supernatants of pig submandibular gland, suggesting that this is a common route of Neu5Gc biosynthesis. The relevance of these results to the regulation of Neu5Gc expression in sialoglycoconjugates is discussed.
猪下颌下腺中的N-羟乙酰神经氨酸(Neu5Gc)是由糖核苷酸CMP-Neu5Ac羟基化合成的这一发现[Shaw & Schauer(1988年),《生物化学与霍普-赛勒》369卷,477 - 486页]促使我们进一步研究小鼠肝脏中这种唾液酸的生物合成。游离的[14C]Neu5Ac、CMP-[14C]Neu5Ac以及通过Galα2 - 3 - 和Galα2 - 6 - GlcNAcβ1 - 4连接以糖苷形式结合到胎球蛋白上的[14C]Neu5Ac被用作分级分离的小鼠肝脏匀浆实验中的潜在底物。唯一被羟基化的底物是CMP-Neu5Ac糖苷。通过化学和酶学方法鉴定出反应产物为CMP-Neu5Gc。所有的CMP-Neu5Ac羟化酶活性都在高速上清液组分中检测到。该羟化酶需要还原型烟酰胺核苷酸[NAD(P)H]辅酶和分子氧才能发挥活性。此外,外源添加的Fe2+或Fe3+离子可增强该酶的活性,而测试的所有其他金属盐的影响可忽略不计或具有抑制作用。因此,这种羟化酶暂被归类为单加氧酶。其辅因子需求和CMP-Neu5Ac底物特异性与猪下颌下腺高速上清液中的酶相同,这表明这是Neu5Gc生物合成的常见途径。讨论了这些结果与唾液糖缀合物中Neu5Gc表达调控的相关性。