Phosphatidylserine and ornithine-containing lipids of Bordetella, hemagglutinins of lipoamino acid structure, and their control in biomembranes. 1985

Y Kawai, and K Suzuki, and T Hagiwara

From the observation by light and electron microscopy, it was proved that phosphatidylserine agglutinates human erythrocytes by the same mechanism as that of ornithine-containing lipids of Bordetella described previously. The proposed mechanism was that two erythrocytes were bound through some liposomes of the lipoamino acids by hydrophobic and ionic interaction, and hydrogen bonding, between the lipoamino acids and the lipids or proteins in the membranes of erythrocytes. Hemagglutinating activity of phosphatidylserine might be controlled so as not to be expressed in biomembranes, on the basis of the finding that the liposomes constituted of phosphatidylserine and more than equal quantities of phosphatidylcholine did not exhibit hemagglutinating activity.

UI MeSH Term Description Entries
D008055 Lipids A generic term for fats and lipoids, the alcohol-ether-soluble constituents of protoplasm, which are insoluble in water. They comprise the fats, fatty oils, essential oils, waxes, phospholipids, glycolipids, sulfolipids, aminolipids, chromolipids (lipochromes), and fatty acids. (Grant & Hackh's Chemical Dictionary, 5th ed) Lipid
D008081 Liposomes Artificial, single or multilaminar vesicles (made from lecithins or other lipids) that are used for the delivery of a variety of biological molecules or molecular complexes to cells, for example, drug delivery and gene transfer. They are also used to study membranes and membrane proteins. Niosomes,Transferosomes,Ultradeformable Liposomes,Liposomes, Ultra-deformable,Liposome,Liposome, Ultra-deformable,Liposome, Ultradeformable,Liposomes, Ultra deformable,Liposomes, Ultradeformable,Niosome,Transferosome,Ultra-deformable Liposome,Ultra-deformable Liposomes,Ultradeformable Liposome
D008563 Membrane Lipids Lipids, predominantly phospholipids, cholesterol and small amounts of glycolipids found in membranes including cellular and intracellular membranes. These lipids may be arranged in bilayers in the membranes with integral proteins between the layers and peripheral proteins attached to the outside. Membrane lipids are required for active transport, several enzymatic activities and membrane formation. Cell Membrane Lipid,Cell Membrane Lipids,Membrane Lipid,Lipid, Cell Membrane,Lipid, Membrane,Lipids, Cell Membrane,Lipids, Membrane,Membrane Lipid, Cell,Membrane Lipids, Cell
D008854 Microscopy, Electron Microscopy using an electron beam, instead of light, to visualize the sample, thereby allowing much greater magnification. The interactions of ELECTRONS with specimens are used to provide information about the fine structure of that specimen. In TRANSMISSION ELECTRON MICROSCOPY the reactions of the electrons that are transmitted through the specimen are imaged. In SCANNING ELECTRON MICROSCOPY an electron beam falls at a non-normal angle on the specimen and the image is derived from the reactions occurring above the plane of the specimen. Electron Microscopy
D009952 Ornithine An amino acid produced in the urea cycle by the splitting off of urea from arginine. 2,5-Diaminopentanoic Acid,Ornithine Dihydrochloride, (L)-Isomer,Ornithine Hydrochloride, (D)-Isomer,Ornithine Hydrochloride, (DL)-Isomer,Ornithine Hydrochloride, (L)-Isomer,Ornithine Monoacetate, (L)-Isomer,Ornithine Monohydrobromide, (L)-Isomer,Ornithine Monohydrochloride, (D)-Isomer,Ornithine Monohydrochloride, (DL)-Isomer,Ornithine Phosphate (1:1), (L)-Isomer,Ornithine Sulfate (1:1), (L)-Isomer,Ornithine, (D)-Isomer,Ornithine, (DL)-Isomer,Ornithine, (L)-Isomer,2,5 Diaminopentanoic Acid
D010713 Phosphatidylcholines Derivatives of PHOSPHATIDIC ACIDS in which the phosphoric acid is bound in ester linkage to a CHOLINE moiety. Choline Phosphoglycerides,Choline Glycerophospholipids,Phosphatidyl Choline,Phosphatidyl Cholines,Phosphatidylcholine,Choline, Phosphatidyl,Cholines, Phosphatidyl,Glycerophospholipids, Choline,Phosphoglycerides, Choline
D010718 Phosphatidylserines Derivatives of PHOSPHATIDIC ACIDS in which the phosphoric acid is bound in ester linkage to a SERINE moiety. Serine Phosphoglycerides,Phosphatidyl Serine,Phosphatidyl Serines,Phosphatidylserine,Phosphoglycerides, Serine,Serine, Phosphatidyl,Serines, Phosphatidyl
D001884 Bordetella A genus of gram-negative aerobic bacteria whose cells are minute coccobacilli. It consists of both parasitic and pathogenic species.
D002462 Cell Membrane The lipid- and protein-containing, selectively permeable membrane that surrounds the cytoplasm in prokaryotic and eukaryotic cells. Plasma Membrane,Cytoplasmic Membrane,Cell Membranes,Cytoplasmic Membranes,Membrane, Cell,Membrane, Cytoplasmic,Membrane, Plasma,Membranes, Cell,Membranes, Cytoplasmic,Membranes, Plasma,Plasma Membranes
D006386 Hemagglutination Tests Sensitive tests to measure certain antigens, antibodies, or viruses, using their ability to agglutinate certain erythrocytes. (From Stedman, 26th ed) Hemagglutination Test,Test, Hemagglutination,Tests, Hemagglutination

Related Publications

Y Kawai, and K Suzuki, and T Hagiwara
January 1988, Advances in experimental medicine and biology,
Y Kawai, and K Suzuki, and T Hagiwara
August 1988, European journal of biochemistry,
Y Kawai, and K Suzuki, and T Hagiwara
February 1984, European journal of biochemistry,
Y Kawai, and K Suzuki, and T Hagiwara
November 1982, Journal of bacteriology,
Y Kawai, and K Suzuki, and T Hagiwara
December 1994, Chemistry and physics of lipids,
Y Kawai, and K Suzuki, and T Hagiwara
November 1983, European journal of biochemistry,
Y Kawai, and K Suzuki, and T Hagiwara
November 1972, Die Naturwissenschaften,
Y Kawai, and K Suzuki, and T Hagiwara
January 2010, Topics in current chemistry,
Y Kawai, and K Suzuki, and T Hagiwara
October 2002, Systematic and applied microbiology,
Copied contents to your clipboard!