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PMID: 1491698 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Expression of a peptide processing enzyme in cultured cells: truncation mutants reveal a routing domain.

Molecular endocrinology (Baltimore, Md.) ·Vol. 6 ·No. 12 ·1992-12-00 ·Pages 2185-96

Tausk FA, Milgram SL, Mains RE, Eipper BA

Abstract

Peptidylglycine alpha-amidating monooxygenase (PAM) is a bifunctional enzyme responsible for the alpha-amidation of peptides in secretory granules of neuroendocrine cells. The single gene encoding PAM undergoes tissue-specific alternative splicing and endoproteolytic processing to generate bifunctional membrane proteins with a single transmembrane domain as well as soluble proteins that are mono- or bifunctional. In order to examine the endoproteolytic processing and subcellular localization of the various forms of PAM in cells lacking regulated secretory granules, we established stably transfected hEK-293 cell lines expressing naturally occurring and mutant forms of PAM. As expected, newly synthesized soluble PAM proteins were rapidly secreted into the medium. Integral membrane protein forms of PAM were largely localized in the perinuclear region with punctate staining visible throughout the cell and 2-5% of the enzyme activity detectable on the cell surface. Bifunctional PAM proteins were slowly released into the medium after expression of integral membrane protein forms of PAM. Deletion of 77 amino acids from the COOH-terminus of the integral membrane forms of PAM resulted in a membrane-bound protein which retained both enzymatic activities but accumulated on the cell surface. Rapid internalization of full-length PAM proteins was observed by incubating live cells with antiserum to PAM; deletion of the COOH-terminal domain eliminated the ability of cells to internalize PAM. Thus the cytoplasmic domain of integral membrane PAM contains a routing determinant recognized by cells lacking the regulated secretory pathway.

MeSH Terms
Amino Acid Sequence Animals Base Sequence Biological Transport Cytoplasmic Granules/metabolism Membrane Proteins/metabolism Mice Mixed Function Oxygenases/genetics,metabolism Multienzyme Complexes Organ Specificity Protein Precursors/metabolism Protein Processing, Post-Translational RNA Splicing Recombinant Fusion Proteins/metabolism Regulatory Sequences, Nucleic Acid Transfection Tumor Cells, Cultured
Chemicals
Membrane Proteins Multienzyme Complexes Protein Precursors Recombinant Fusion Proteins Mixed Function Oxygenases peptidylglycine monooxygenase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Tausk F A
Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
Milgram S L
Mains R E
Eipper B A
Article Info
Journal
Molecular endocrinology (Baltimore, Md.)
Abbr.
Mol Endocrinol
ISSN
0888-8809
Published
1992-12-00
Pages
2185-96
Language
English
Region
United States
NLM ID
8801431
Subset
IM
Grants
NIDA NIH HHS · DA-00097 · United States
NIDA NIH HHS · DA-00098 · United States
NIDDK NIH HHS · DK-32949 · United States
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