A systematic analysis of acceptor specificity and reaction kinetics of five human ?(2,3)sialyltransferases: Product inhibition studies illustrate reaction mechanism for ST3Gal-I.
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ABSTRACT: Sialyltransferases (STs) catalyze the addition of sialic acids to the non-reducing ends of glycoproteins and glycolipids. In this work, we examined the acceptor specificity of five human ?(2,3)sialyltransferases, namely ST3Gal -I, -II, -III, -IV and -VI. KM values for each of these enzymes is presented using radioactivity for acceptors containing Type-I (Gal?1,3GlcNAc), Type-II (Gal?1,4GlcNAc), Type-III (Gal?1,3GalNAc) and Core-2 (Gal?1,3(GlcNAc?1,6)GalNAc) reactive groups. Several variants of acceptors inhibited ST3Gal activity emphasizing structural role of acceptor in enzyme-catalyzed reactions. In some cases, mass spectrometry was performed for structural verification. The results demonstrate human ST3Gal-I catalysis towards Type-III and Core-2 acceptors with KM = 5-50 ?M and high VMax values. The KM for ST3Gal-I and ST3Gal-II was 100 and 30-fold lower, respectively, for Type-III compared to Type-I acceptors. Variants of Type-I and Type-II structures characterized ST3Gal-III, -IV and -VI for their catalytic specificity. This manuscript also estimates KM for human ST3Gal-VI using Type-I and Type-II substrates. Together, these findings built a platform for designing inhibitors of STs having therapeutic potential.
SUBMITTER: Gupta R
PROVIDER: S-EPMC4719580 | biostudies-literature | 2016 Jan
REPOSITORIES: biostudies-literature
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