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Abstract
Mammalian β-hexosaminidases have been shown to play essential roles in
cellular physiology and health. These enzymes are responsible for the
cleavage of the monosaccharides N-acetylglucosamine (GlcNAc) and N-acetylgalactosamine (GalNAc) from cellular substrates. One of these β-hexosaminidases, hexosaminidase D (HexD), encoded by the HEXDC
gene, has received little attention. No mechanistic studies have
focused on the role of this unusual nucleocytoplasmically localized
β-hexosaminidase, and its cellular function remains unknown. Using a
series of kinetic and mechanistic investigations into HexD, we define
the precise catalytic mechanism of this enzyme and establish the
identities of key enzymic residues. The preparation of synthetic aryl N-acetylgalactosaminide
substrates for HexD in combination with measurements of kinetic
parameters for wild-type and mutant enzymes, linear free energy analyses
of the enzyme-catalyzed hydrolysis of these substrates, evaluation of
the reaction by nuclear magnetic resonance, and inhibition studies
collectively reveal the detailed mechanism of action employed by HexD.
HexD is a retaining glycosidase that operates using a substrate-assisted
catalytic mechanism, has a preference for galactosaminide over
glucosaminide substrates, and shows a pH optimum in its second-order
rate constant at pH 6.5–7.0. The catalytically important residues are
Asp148 and Glu149, with Glu149 serving as the general acid/base residue
and Asp148 as the polarizing residue. HexD is inhibited by
Gal-NAG-thiazoline (Ki = 420 nM). The fundamental
insights gained from this study will aid in the development of potent
and selective probes for HexD, which will serve as useful tools to
improve our understanding of the physiological role played by this
unusual enzyme.
Original language | English |
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Pages (from-to) | 2753-2747 |
Journal | Biochemistry |
Volume | 55 |
Issue number | 19 |
Early online date | 5 May 2016 |
DOIs | |
Publication status | Published - 17 May 2016 |
Keywords
- Hexosaminidase
- Glycoside hydrolase
- Enzyme kinetics
- Enzyme mechanism
- Enzyme inhibition
- Substrate-assisted catalysis
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Dive into the research topics of 'Mechanism of the human nucleocytoplasmic hexosaminidase D'. Together they form a unique fingerprint.Projects
- 1 Finished
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Tracey Gloster Fellowship: Understanding degradation of heparan sulphate with implications for disease
Gloster, T. (PI)
1/01/12 → 30/09/18
Project: Fellowship