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PMID: 2651446 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Processing, transport, and secretion of the lysosomal enzyme acid phosphatase in Dictyostelium discoideum.

The Journal of biological chemistry ·Vol. 264 ·No. 13 ·1989-05-05 ·Pages 7630-6

Bush JM, Cardelli JA

Abstract

To explain the different secretion kinetics of lysosomal enzymes in Dictyostelium discoideum, previous investigators have hypothesized the existence of a heterogeneous population of lysosomes containing either the enzyme acid phosphatase or other hydrolase enzymes. This proposal predicts that at least two targeting mechanisms exist for lysosomal enzymes in this organism. To begin to investigate this possibility, the transport, processing, and targeting of acid phosphatase was studied by using a combination of radiolabel pulse-chase procedures, subcellular fractionations, and indirect immunofluorescence microscopy. Acid phosphatase was initially synthesized in axenically growing cells as a 56-kDa precursor polypeptide that was proteolytically processed after 20 min to a 55-kDa mature protein. This enzyme was rapidly transported from the endoplasmic reticulum to Golgi complex (halftime of 3 min) as measured by the acquisition of resistance to the enzyme endoglycosidase H. Furthermore, Percoll gradient fractionations indicated that radiolabeled forms of acid phosphatase reached dense lysosomal vesicles at about the same time as final processing was occurring. Proper sorting of acid phosphatase in D. discoideum apparently was not critically dependent on low intravacuolar pH since the addition of ammonium chloride did not stimulate the missorting and secretion of acid phosphatase. These results are very similar to previous observations concerning other Dictyostelium lysosomal enzymes. Consistent with the existence of a heterogeneus population of lysosomes, the percentage of radiolabeled acid phosphatase secreted 4 h into a chase period was 15-fold lower as compared with another lysosomal enzyme, beta-glucosidase. However, acid phosphatase, alpha-mannosidase, and beta-glucosidase were all predominantly colocalized as determined by indirect immunofluorescence, which for the first time demonstrates the homogeneous nature of the lysosomal system in D. discoideum. Taken together these results suggest that the processing and transport of acid phosphatase may be similar in nature to the glycosidases. However, the different kinetics of secretion of acid phosphatase versus the colocalized glycosidase enzymes suggests that an undefined mechanism operates to distinguish these classes of enzymes at a step after localization to lysosomes but prior to secretion.

MeSH Terms
Acid Phosphatase/metabolism Amines/pharmacology Biological Transport/drug effects Cell Compartmentation/drug effects Dictyostelium/enzymology Endoplasmic Reticulum/enzymology Fluorescent Antibody Technique Glycoside Hydrolases/metabolism Glycosylation Golgi Apparatus/enzymology Hydrogen-Ion Concentration Lysosomes/enzymology Molecular Weight Protease Inhibitors/pharmacology Protein Precursors/metabolism Protein Processing, Post-Translational
Chemicals
Amines Protease Inhibitors Protein Precursors Acid Phosphatase Glycoside Hydrolases
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Bush J M
Department of Microbiology and Immunology, Louisiana State University Medical Center, Shreveport 71130.
Cardelli J A
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1989-05-05
Pages
7630-6
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIDDK NIH HHS · DK36838 · United States
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