A study was made of the permeability of the microsomes to C14-sucrose and to C14-carboxypolyglucose, a branch-chained glucose polymer with a molecular weight of approximately 50,000. It was concluded that the microsomal membranes are permeable to sucrose on the basis of the following evidence: the volume of distribution of C14-sucrose was 84 per cent of the total microsomal pellet water; the sucrose unavailable volume, the per cent dry weights of the microsomal pellets, and the optical density of microsomal suspensions were independent of the concentration of sucrose in the suspending medium. It is suggested that the microsomal water which is unavailable to sucrose may be bound to protein and/or ribonucleic acid of the microsomes. The volume of distribution of C14-carboxypolyglucose was 44 per cent of the total pellet water, and it is considered that the microsomal membranes may be impermeable to this compound. Pretreatment with ribonuclease resulted in small increases in the volumes of distribution of both C14-sucrose and C14-carboxypolyglucose.
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1 April 1960
Content prior to 1962 was published under the journal name
The Journal of Biophysical and Biochemical Cytology
Article|
April 01 1960
Permeability of Rat Liver Microsomes to Sucrose and Carboxypoly-glucose in vitro
Leonard Share,
Leonard Share
From the Department of Physiology, Western Reserve University School of Medicine, Cleveland
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Ronald W. Hansrote
Ronald W. Hansrote
From the Department of Physiology, Western Reserve University School of Medicine, Cleveland
Search for other works by this author on:
Leonard Share
From the Department of Physiology, Western Reserve University School of Medicine, Cleveland
Ronald W. Hansrote
From the Department of Physiology, Western Reserve University School of Medicine, Cleveland
Received:
October 05 1959
Copyright, 1960, by The Rockefeller Institute Press
1960
J Biophys and Biochem Cytol (1960) 7 (2): 239–242.
Article history
Received:
October 05 1959
Citation
Leonard Share, Ronald W. Hansrote; Permeability of Rat Liver Microsomes to Sucrose and Carboxypoly-glucose in vitro . J Biophys and Biochem Cytol 1 April 1960; 7 (2): 239–242. doi: https://doi.org/10.1083/jcb.7.2.239
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