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[Effect of R plasmid on cell membrane structure in Salmonella derby].

The structure of membranes of Salmonella derby cells both containing R-plasmid and free of plasmid was studied by small- and large-angle X-ray diffraction. Reflections with interplane distances of 8 and 11 A were detected, which are typical of plasmid-carrying S. derby cells. These reflections are assumed to be due to equidistant well ordered positions of the polar groups of phosphatidylcholine and phosphatidylethanolamine molecules on membrane surface. It is also suggested that the formation of these structures is determined by peculiar hydrophilic-hydrophobic interactions of the phospholipid in membranes.

Cell Membrane↗

Perturbation of red cell membrane structure during intracellular maturation of Plasmodium falciparum.

An experimental approach, which in this study was applied to the malarial system, can be used to analyze the molecular structure and organization of individual phospholipids in a wide variety of biological membranes. Electron spin resonance spectroscopy was used to investigate the structural modifications of the major red cell phospholipids that occur in erythrocyte membranes infected with the human malarial parasite, Plasmodium falciparum. These modifications were correlated with the intracellular developmental stage of the parasite. Phosphatidylcholine, phosphatidylethanolamine, and phosphatidylserine were increasingly disordered (fluidized) as infection progressed. This disordering occurred at different rates and to varying extents.

Animals↗

Cell membrane structure and lipoprotein metabolism.

Knowledge of the effect of the plasma membrane structure on lipoprotein metabolism is relatively limited. Receptor activity and, thereby, the endocytic pathway of lipoprotein particle catabolism is reported to be affected. The reverse cholesterol transport pathway is clearly affected because altered rates of cholesterol efflux from different cellular plasma membranes have been observed. Changes in the structure and lipid organization of the membranes in arterial wall cells can also alter vessel relaxation.

Animals↗

A study of cell membrane structure.

Neoplastic transformation has been associated with a variety of structural changes, among which are changes in membrane carbohydrates. Not much is known, though, e.g., how early in the tumourogenic event these changes take place and what effect these changes have on cell growth, invasion, and ability to metastasize. We were able to identify the B-D-Gal(1-3)DGal-NAc as a membrane carbohydrate component present in malignant laryngeal tissue, but not on adjacent normal mucous membrane. This carbohydrate structure was found to be present in metastatic as well as in nonmetastatic tumours. It was also found in well-differentiated as well as poorly differentiated carcinomas. We suggest that changes in carbohydrate components on the cell membrane of the laryngeal cancer cell are an early event in tumour progression and probably are not related to the degree of invasion or the ability to metastasize.

Antigens, Tumor-Associated, Carbohydrate↗

[The effect of ATP on the cell membrane structure].

ATP influence on the structure of plasma membranes thymocytes of cattle was studied. Fluorescence anisotropy of tryptophan residues of membrane proteins, fluorescence anisotropy of 3-methoxybenzanetron and fluorescence intensity of 1-anilinonaphthalene-8-sulphonate were determined. Changes of tryptophan fluorescence anisotropy and of ANS fluorescence intensity were established. It is supposed that the observed changes are connected with the change of membrane proteins structure and plasma membrane charge.

Adenosine Triphosphate↗

Lipid peroxidation and disintegration of the cell membrane structure in cultures of rat lung fibroblasts treated with asbestos.

Rat lung fibroblasts were cultured for 24 and 48 h with UICC standard reference asbestos samples of amosite, crocidolite or Canadian chrysotile at various concentrations, and thiobarbituric acid-reactive substances (TBARS) in the media and the cells were measured. Tests by the trypan blue dye-exclusion method showed that cell viability was 80 +/- 5% (mean +/- SD) and 71 +/- 6% when cultured for 48 h in the presence of 500 micrograms ml-1 of amosite and crocidolite, respectively, but was not affected by chrysotile. In cultures for 24 and 48 h, both chrysotile and crocidolite at > 250 micrograms ml-1 significantly increased TBARS in the medium, whereas amosite did so at > 500 micrograms ml-1. TBARS in the cells was not increased significantly by chrysotile at any concentration in the cultures for 24 and 48 h, but crocidolite at > 250 micrograms ml-1 significantly increased TBARS in the cells when cultured for 24 or 48 h. Although amosite at all concentrations tested did not increase significantly TBARS in the cells of the 24-h culture, it did increase TBARS significantly in the cells when cultured for 48 h at a concentration of 500 micrograms ml-1 amosite. The increases of TBARS in media of the cultures with asbestos were accompanied by increases of lactate dehydrogenase (LDH) activity in the media, indicating the leakage of the enzyme from the cell into the media. The activity of LDH and the amount of TBARS showed a good correlation with each other, with a significant correlation coefficient value of 0.655.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Light-microscopical demonstration of different cell membrane structures of human peripheral blood lymphocytes (PBI).

Labelling of membrane structures in human peripheral blood lymphocytes is achieved by a Fe-(III)-hydroxide-glycane-complex. According to the distribution of labelled structures, coarse-granular clustered (about 80%) and fine-granular diffuse marked peripheral blood lymphocytes can be distinguished. Each of these populations seems to have morphologically discernible subpopulations.

Cell Membrane↗

The effects of derangement of cell membrane structure and inhibitors on transferrin and iron uptake by reticulocytes.

1. Compounds which are believed to cause derangement of the structural components of the plasma membrane and of microtubular function were preincubated with reticulocytes to study their effects on transferrin and iron uptake by the stroma and cytosol fractions of the cell. 2. Proteolytic enzymes, chelating agents (EDTA, EGTA), neuraminidase, concanavalin A and primaquine all inhibited iron binding in the cytosol fraction. Thus, their mode of action may be on the cell membrane, probably resulting in a loss of transferrin receptors or a reduced ability for the protein to interact with the receptor. 3. Pharmacologic agents known to interfere with endocytotic activity of the cell produced both inhibitory and stimulating effects on iron building by the cell. Nicotine reduced iron binding in the stroma and cytosol while colchicine and hydrocortisone enhanced cytosol-bound iron. 4. The inhibitory action of metabolic inhibitors on iron uptake by reticulocytes was accompanied by an accumulation of transferrin and ion in the stroma suggesting that a block in the iron release from transferrin occurs at the stroma level. As the stroma included some mitochondria, the possibility that such blockage may occur in these organelles cannot be ruled out entirely.

Animals↗