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MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS

Rabbit alveolar macrophages were incubated in vitro with radioactive protein precursors. Plasma membranes were isolated from these cells, dissolved in phenol-urea-acetic acid, and separated by acrylamide gel electrophoresis. (3)H-leucine was rapidly incorporated into membrane protein. The rate of la...

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Detalles Bibliográficos
Autores principales: Nachman, Ralph L., Ferris, Barbara, Hirsch, James G.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1971
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2138968/
https://www.ncbi.nlm.nih.gov/pubmed/5547057
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author Nachman, Ralph L.
Ferris, Barbara
Hirsch, James G.
author_facet Nachman, Ralph L.
Ferris, Barbara
Hirsch, James G.
author_sort Nachman, Ralph L.
collection PubMed
description Rabbit alveolar macrophages were incubated in vitro with radioactive protein precursors. Plasma membranes were isolated from these cells, dissolved in phenol-urea-acetic acid, and separated by acrylamide gel electrophoresis. (3)H-leucine was rapidly incorporated into membrane protein. The rate of labeling with (3)H-leucine was markedly different from one protein band to another, indicating heterogeneous or multistep synthesis and assembly of proteins in the alveolar macrophage plasma membrane. Cells incubated with (3)H-choline incorporated this compound into membrane lecithin. On gel electrophoresis the label derived from choline was located in the two bands migrating most rapidly towards the cathode. Studies on cells incubated with (3)H-glucosamine revealed incorporation of label into two protein bands, one located near the origin and the other migrating rapidly towards the cathode. The in vitro techniques were also employed for pulse-chase studies to gain information on rate of turnover of macrophage plasma membrane proteins. This turnover rate was rapid, with a half-life of approximately 8 hr. The radioactivity disappeared from the several protein bands at the same rate, suggesting bulk removal of membrane rather than catabolism of the individual proteins in situ. Endocytosis seems a likely mechanism to account for a major part of the plasma membrane removal. Studies on the protein components of phagolysosomal membranes from cells which had been labeled with (3)H-leucine revealed the presence of all of the major labeled protein bands characteristic of the plasma membrane except one, thus confirming the bulk interiorization of large segments or units of plasma membrane by endocytic processes.
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spelling pubmed-21389682008-04-17 MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS Nachman, Ralph L. Ferris, Barbara Hirsch, James G. J Exp Med Article Rabbit alveolar macrophages were incubated in vitro with radioactive protein precursors. Plasma membranes were isolated from these cells, dissolved in phenol-urea-acetic acid, and separated by acrylamide gel electrophoresis. (3)H-leucine was rapidly incorporated into membrane protein. The rate of labeling with (3)H-leucine was markedly different from one protein band to another, indicating heterogeneous or multistep synthesis and assembly of proteins in the alveolar macrophage plasma membrane. Cells incubated with (3)H-choline incorporated this compound into membrane lecithin. On gel electrophoresis the label derived from choline was located in the two bands migrating most rapidly towards the cathode. Studies on cells incubated with (3)H-glucosamine revealed incorporation of label into two protein bands, one located near the origin and the other migrating rapidly towards the cathode. The in vitro techniques were also employed for pulse-chase studies to gain information on rate of turnover of macrophage plasma membrane proteins. This turnover rate was rapid, with a half-life of approximately 8 hr. The radioactivity disappeared from the several protein bands at the same rate, suggesting bulk removal of membrane rather than catabolism of the individual proteins in situ. Endocytosis seems a likely mechanism to account for a major part of the plasma membrane removal. Studies on the protein components of phagolysosomal membranes from cells which had been labeled with (3)H-leucine revealed the presence of all of the major labeled protein bands characteristic of the plasma membrane except one, thus confirming the bulk interiorization of large segments or units of plasma membrane by endocytic processes. The Rockefeller University Press 1971-03-31 /pmc/articles/PMC2138968/ /pubmed/5547057 Text en Copyright © 1971 by The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Nachman, Ralph L.
Ferris, Barbara
Hirsch, James G.
MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS
title MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS
title_full MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS
title_fullStr MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS
title_full_unstemmed MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS
title_short MACROPHAGE PLASMA MEMBRANE : II. STUDIES ON SYNTHESIS AND TURNOVER OF PROTEIN CONSTITUENTS
title_sort macrophage plasma membrane : ii. studies on synthesis and turnover of protein constituents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2138968/
https://www.ncbi.nlm.nih.gov/pubmed/5547057
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