Altered molecular size of N-acetylglucosamine 1-phosphotransferase in I-cell disease and pseudo-Hurler polydystrophy

Author:

Ben-Yoseph Y1,Potier M2,Mitchell D A1,Pack B A1,Melançon S B2,Nadler H L1

Affiliation:

1. Biochemical Genetics Laboratory, C.S. Mott Center for Human Growth and Development, Departments of Pediatrics, Biochemistry and Obstetrics-Gynecology, Wayne State University School of Medicine, Detroit, MI 48201, U.S.A.

2. Section de Génétique Médicale, Centre de Recherche Pédiatrique, Hôpital Sainte Justine, Université de Montréal, Montréal, Québec H3T 1C5, Canada

Abstract

The size of the mutant N-acetylglucosamine 1-phosphotransferase in Golgi membranes from fibroblasts of patients with I-cell disease and classical pseudo-Hurler polydystrophy, which comprised one complementation group characterized by deficiency towards both artificial and natural acceptor substrates, was significantly smaller than the normal enzyme, 151-174 kDa compared with 225-278 kDa. The size of the mutant enzyme from cell lines of patients with variant forms of pseudo-Hurler polydystrophy, which comprised another complementation group characterized by normal activity towards mono- and oligo-saccharide substrates, was significantly larger than the normal enzyme, ranging from 321 to 356 kDa in two families and from 528 to 547 kDa in a third family. These findings suggest that the mutations in I-cell disease and classical pseudo-Hurler polydystrophy result in a missing enzyme component, which renders the enzyme catalytically inefficient toward any type of acceptor substrate. In contrast, the mutations in the variant forms of pseudo-Hurler polydystrophy produce a larger enzyme molecule which is active toward small substrates but is incapable of binding natural lysosomal glycoprotein substrates.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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