Abstract
Measurements of diffusion of molecules in cells can provide information about cytoplasmic viscosity and structure. In a series of studies electron-spin resonance was used to measure the diffusion of a small spin label in the aqueous cytoplasm of mammalian cells. Translational and rotational motion were determined from the same spectra. Based on measurements made in model systems, it was hypothesized that calculations of the apparent viscosity of the cytoplasm from both rotational and translational motion would distinguish between the effects of viscosity and structure on diffusion. The diffusion constant measured in several cell lines averaged 3.3 X 10(-6) cm2/s. It was greater in growing cells and in cells treated with cytochalasin B than in quiescent cells. The viscosity of the cytoplasm calculated from the translational diffusion constant or the rotational correlation time was 2.0-3.0 centipoise, about two to three times that of the spin label in water. Therefore, over the dimensions measured by the technique, 50-100 A, solvent viscosity appears to be the major determinant of particle movement in cells under physiologic conditions. However, when cells were subjected to hypertonic conditions, the translational motion of the spin label decreased threefold, whereas the rotational motion changed by less than 20%. These data suggest that the decrease in cell volume under hypertonic conditions is accompanied by an increase in cytoplasmic barriers and a decrease in the space between existing cytoplasmic components without a significant increase in viscosity in the aqueous phase. In addition, a comparison of reported diffusion values of a variety of molecules in water and in cells indicates that cytoplasmic structure plays an important role in the diffusion of proteins such as bovine serum albumin.
MeSH Terms
Animals
Body Fluids/physiology
Cell Line
Cell Movement
Cell Transformation, Viral
Cricetinae
Cytoplasm/physiology
Diffusion
Electron Spin Resonance Spectroscopy
Fibroblasts/cytology
Intracellular Fluid/physiology
Mice
Mice, Inbred BALB C
Simian virus 40
Viscosity
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Mastro A M
Keith A D
References (21)
21 references, click to expand
-
Microtrabecular lattice of the cytoplasmic ground substance. Artifact or reality.
J Cell Biol. 1979 Jul;82(1):114-39
PMID: 479294
-
Nuclear envelope permeability.
Nature. 1975 Mar 13;254(5496):109-14
PMID: 1117994
-
Diffusion of injected macromolecules within the cytoplasm of living cells.
Proc Natl Acad Sci U S A. 1981 Jul;78(7):4407-10
PMID: 6945591
-
Spin label studies on osmotically-induced changes in the aqueous cytoplasm of Phaeodactylum tricornutum.
Biochim Biophys Acta. 1982 Feb 10;720(1):87-95
PMID: 6277394
-
Spin-label studies on the aqueous regions of phospholipid multilayers.
Biochemistry. 1977 Feb 22;16(4):634-41
PMID: 189808
-
Some properties of purified skeletal muscle alpha-actinin.
J Biol Chem. 1976 Nov 10;251(21):6860-70
PMID: 977599
-
Factors restricting diffusion of water-soluble spin labels.
Biophys J. 1977 Sep;19(3):205-18
PMID: 890035
-
Use of amphiphilic spin labels and whole cell isoelectric focusing to assay charge characteristics of sperm surfaces.
Arch Biochem Biophys. 1979 May;194(2):565-80
PMID: 36045
-
Mobility of cytoplasmic and membrane-associated actin in living cells.
Proc Natl Acad Sci U S A. 1982 Aug;79(15):4660-4
PMID: 6956883
-
How crowded is the cytoplasm?
Cell. 1982 Sep;30(2):345-7
PMID: 6754085
-
Mobility of microinjected rhodamine actin within living chicken gizzard cells determined by fluorescence photobleaching recovery.
Cell. 1982 Jul;29(3):835-45
PMID: 6891291
-
Cellular and molecular consequences of reduced cell water content.
Cryobiology. 1983 Oct;20(5):591-612
PMID: 6627970
-
Properties and metabolism of the aqueous cytoplasm and its boundaries.
Am J Physiol. 1984 Feb;246(2 Pt 2):R133-51
PMID: 6364846
-
Diffusion of a small molecule in the cytoplasm of mammalian cells.
Proc Natl Acad Sci U S A. 1984 Jun;81(11):3414-8
PMID: 6328515
-
Experiments on the injection of substances into squid giant axons by means of a microsyringe.
J Physiol. 1956 Mar 28;131(3):592-616
PMID: 13320357
-
The intracellular transport and distribution of cysteamine phosphate derivatives.
Biophys J. 1970 Oct;10(10):994-1010
PMID: 4924935
-
The permeability of the amphibian oocyte nucleus, in situ.
J Cell Biol. 1972 Sep;54(3):609-25
PMID: 4537884
-
Viscosity of cellular protoplasm.
Science. 1974 Feb 15;183(4125):666-8
PMID: 4359084
-
The nuclear permeability, intracellular distribution, and diffusion of inulin in the amphibian oocyte.
J Cell Biol. 1974 Feb;60(2):405-15
PMID: 4544299
-
The volume available to diffusion in the muscle fiber.
Can J Physiol Pharmacol. 1974 Aug;52(4):814-28
PMID: 4425983
-
The ground substance of the living cell.
Sci Am. 1981 Mar;244(3):56-67
PMID: 7209488