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PMID: 3549301 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Biosynthesis and maturation of glucocerebrosidase in Gaucher fibroblasts.

European journal of biochemistry ·Vol. 164 ·No. 1 ·1987-04-01 ·Pages 171-9

Jonsson LM, Murray GJ, Sorrell SH, Strijland A, Aerts JF, Ginns EI, Barranger JA, Tager JM, Schram AW

Abstract

The biosynthesis and maturation of glucocerebrosidase were studied in fibroblasts from patients with the neurological and non-neurological forms of Gaucher disease and in control cells. In control fibroblasts the precursor of glucocerebrosidase (62-63 kDa), observed after a short pulse with [35S]methionine, was converted during the chase period to a 66-kDa intermediate form and, finally, to the 59-kDa mature protein. In fibroblasts from patients with the non-neurological phenotype of Gaucher disease (type 1) the same biosynthetic forms were seen as in control fibroblasts. These biosynthetic forms correspond to the three-banded pattern seen in control and Gaucher type 1 fibroblast extracts analysed by the immunoblotting procedure, or after electrophoresis and fluorography of extracts of such fibroblasts cultured for 5 days with [14C]leucine. The 59-kDa protein seen in type 1 fibroblasts was unstable and disappeared after a prolonged chase; this disappearance was not observed when the cells were grown in the presence of leupeptin. In fibroblasts from patients with the neurological forms of Gaucher disease (types 2 and 3) the 62.5-kDa precursor of glucocerebrosidase was present in near-normal amounts after a short pulse, but the 59-kDa form was not detected even when cells were cultured with leupeptin. These results are in accordance with the absence of the 59-kDa band in immunoblots of types 2 and 3 fibroblast extracts. Culturing of type 1, type 2 and type 3 Gaucher fibroblasts in the presence of leupeptin led to an increase in the activity of glucocerebrosidase.

MeSH Terms
Cell Line Cross Reactions Fibroblasts/enzymology Gaucher Disease/enzymology Glucosidases/biosynthesis Glucosylceramidase/biosynthesis Humans Immunosorbent Techniques Leupeptins/pharmacology Methionine/metabolism Molecular Weight Mutation
Chemicals
Leupeptins Methionine Glucosidases Glucosylceramidase leupeptin
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Jonsson L M
Murray G J
Sorrell S H
Strijland A
Aerts J F
Ginns E I
Barranger J A
Tager J M
Schram A W
Article Info
Journal
European journal of biochemistry
Abbr.
Eur J Biochem
ISSN
0014-2956
Published
1987-04-01
Pages
171-9
Language
English
Region
England
NLM ID
0107600
Subset
IM
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