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MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA

Changes in the morphology of rat liver mitochondria brought about by different methods of isolation and the concomitant changes in ATP-ase activity were studied. The morphology was investigated with the electron microscope. It was found that the ATP-ase activity of the isolated mitochondria cannot b...

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Detalles Bibliográficos
Autores principales: Witter, Robert F., Watson, Michael L., Cottone, Mary A.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1955
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2223771/
https://www.ncbi.nlm.nih.gov/pubmed/14381435
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author Witter, Robert F.
Watson, Michael L.
Cottone, Mary A.
author_facet Witter, Robert F.
Watson, Michael L.
Cottone, Mary A.
author_sort Witter, Robert F.
collection PubMed
description Changes in the morphology of rat liver mitochondria brought about by different methods of isolation and the concomitant changes in ATP-ase activity were studied. The morphology was investigated with the electron microscope. It was found that the ATP-ase activity of the isolated mitochondria cannot be readily correlated with the morphology of the mitochondria. The ATP-ase found in these preparations was latent, resembling the enzyme described in mitochondria prepared in 0.25 M sucrose. In confirmation of earlier results the use of 0.88 M sucrose yielded preparations with a higher initial ATP-ase than did other methods. Preparation in 0.25 M sucrose resulted in round, swollen mitochondria of which 30 to 40 per cent appeared to have lost a substantial part of the mitochondrial matrix. Preparations in 0.44 to 0.88 M sucrose contained mainly rod-shaped mitochondria plus a small amount of another type of swollen mitochondria. The matrix of mitochondria isolated in 0.88 M sucrose was highly condensed. By the use of 0.44 M sucrose adjusted to pH 6.2 with citric acid, it was possible to isolate, for the first time, mitochondria closely resembling those in situ and containing latent ATP-ase.
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spelling pubmed-22237712008-05-01 MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA Witter, Robert F. Watson, Michael L. Cottone, Mary A. J Biophys Biochem Cytol Article Changes in the morphology of rat liver mitochondria brought about by different methods of isolation and the concomitant changes in ATP-ase activity were studied. The morphology was investigated with the electron microscope. It was found that the ATP-ase activity of the isolated mitochondria cannot be readily correlated with the morphology of the mitochondria. The ATP-ase found in these preparations was latent, resembling the enzyme described in mitochondria prepared in 0.25 M sucrose. In confirmation of earlier results the use of 0.88 M sucrose yielded preparations with a higher initial ATP-ase than did other methods. Preparation in 0.25 M sucrose resulted in round, swollen mitochondria of which 30 to 40 per cent appeared to have lost a substantial part of the mitochondrial matrix. Preparations in 0.44 to 0.88 M sucrose contained mainly rod-shaped mitochondria plus a small amount of another type of swollen mitochondria. The matrix of mitochondria isolated in 0.88 M sucrose was highly condensed. By the use of 0.44 M sucrose adjusted to pH 6.2 with citric acid, it was possible to isolate, for the first time, mitochondria closely resembling those in situ and containing latent ATP-ase. The Rockefeller University Press 1955-03-25 /pmc/articles/PMC2223771/ /pubmed/14381435 Text en Copyright © Copyright, 1955, by The Rockefeller Institute for Medical Research
spellingShingle Article
Witter, Robert F.
Watson, Michael L.
Cottone, Mary A.
MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA
title MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA
title_full MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA
title_fullStr MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA
title_full_unstemmed MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA
title_short MORPHOLOGY AND ATP-ASE OF ISOLATED MITOCHONDRIA
title_sort morphology and atp-ase of isolated mitochondria
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2223771/
https://www.ncbi.nlm.nih.gov/pubmed/14381435
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