Abstract
1. The subcellular distribution of the phosphoprotein fraction of grey matter from guinea-pig brain has been determined. Phosphoproteins occurred in all fractions of the tissue, the mitochondrial fraction containing 29%, supernatant 26%, microsomal fraction 23% and nuclear fraction 15%. The quantity of phosphoproteins per unit quantity of protein was highest in the microsomal fraction and lowest (by a factor of nearly 50%) in the mitochondrial fraction. 2. Observations are reported on the nature of the nuclear subfraction believed from earlier work to contain a phosphoprotein sensitive to the effects of electrical pulses applied to cerebral slices in vitro. With respect to its content of phosphoprotein, cholesterol, ribonucleic acid and succinate-dehydrogenase activity, the subfraction resembles the nerve-ending fraction of the mitochondrial fraction, from which it appears to be derived by cross-contamination. Electron microscopy tended to confirm this impression. Reasons are adduced for discounting the earlier claim that the sensitive phosphoprotein is contained in a new subcellular structure distinct from nuclei, mitochondria or microsomes.
Keywords
BRAIN CHEMISTRY
CELL NUCLEUS
CHEMISTRY
ANALYTICAL
CHOLESTEROL
EXPERIMENTAL LAB STUDY
GUINEA PIGS
MICROSOMES
MITOCHONDRIA
NERVE TISSUE PROTEINS
RNA
SUCCINATE DEHYDROGENASE
MeSH Terms
Animals
Brain
Brain Chemistry
Cell Nucleus
Chemistry Techniques, Analytical
Cholesterol
Guinea Pigs
Microscopy, Electron
Microsomes
Mitochondria
Nerve Tissue Proteins
Phosphoproteins
Proteins
RNA
Research
Succinate Dehydrogenase
Chemicals
Nerve Tissue Proteins
Phosphoproteins
Proteins
RNA
Cholesterol
Succinate Dehydrogenase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
TREVOR A J
RODNIGHT R
SCHWARTZ A
References (16)
16 references, click to expand
-
The sodium-stimulated adenosine-triphosphatase activity and other properties of cerebral microsomal fractions and subfractions.
Biochem J. 1962 Sep;84:626-37
PMID: 13909665
-
Phosvitin kinase from brain: activation by ions and subcellular distribution.
Biochem J. 1964 Oct;93(1):84-91
PMID: 4284465
-
Phosphoprotein metabolism and ion transport in nervous tissue: a suggested connexion.
Nature. 1962 Feb 3;193:451-4
PMID: 13905745
-
Studies on the phosphoproteins of brain: the intracellular localization in brain of a phosphoprotein involved in the metabolic response of cortical slices to electrical stimulation.
Biochem J. 1959 Sep;73:132-41
PMID: 14400416
-
The separation of phosphorus from caseinogen by the action of enzymes and alkali.
J Physiol. 1906 Feb 5;33(6):439-61
PMID: 16992812
-
Cholinesterase, succinic dehydrogenase, nucleic acids, esterase and glutathione reductase in sub-cellular fractions from rat brain.
Biochem J. 1959 Oct;73:270-6
PMID: 13792488
-
The localization of cerebral phosphoprotein phosphatase.
Biochem J. 1962 Jun;83:614-22
PMID: 14493848
-
THE SUBCELLULAR LOCALIZATION OF CEREBRAL PHOSPHOPROTEINS SENSITIVE TO ELECTRICAL STIMULATION.
Biochem J. 1965 Jun;95:889-96
PMID: 14342530
-
The incorporation of phosphate into cerebral phosphoportein promoted by electrical impulses.
Biochem J. 1957 Aug;66(4):659-63
PMID: 13459915
-
The intracellular distribution of solanesol and plastoquinone in green leaves of the tobacco plant.
Biochem J. 1963 Jul;88(1):52-6
PMID: 16749028
-
The isolation and characterization of acetylcholine-containing particles from brain.
Biochem J. 1959 Aug;72:694-706
PMID: 13844484
-
Studies on the phosphoproteins of brain. 3. Phosphorylserine sequences in brain phosphoprotein.
Biochem J. 1961 Sep;80:510-4
PMID: 13712581
-
Estimation of nucleic acids in tissue from the nervous system.
Biochem J. 1952 Jul;51(4):470-9
PMID: 13018105
-
A biochemical study of brain microsomes.
Exp Cell Res. 1959 Feb;16(2):232-55
PMID: 13652984
-
A phosphoprotein phosphatase from ox brain.
Biochem J. 1961 Nov;81:339-47
PMID: 14493847
-
Molecular properties and transformations of glycogen phosphorylase in animal tissues.
Adv Enzymol Relat Subj Biochem. 1962;24:263-90
PMID: 14459504