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Function of phospholipids in Escherichia coli. Characterization of a mutant deficient in cardiolipin synthesis.

Screening of a collection of temperature-sensitive mutants of Escherichia coli for defects in phospholipid metabolism led to the isolation of a mutant deficient in cardiolipin synthesis. The defective gene, named cls, is closely linked to the trp marker and maps at about Minute 27 on the E. coli chromosome. After transfer of cls to a defined genetic background by transduction, the mutant has the following properties as compared to an isogenic wild type. Exponentially growing cells show a reduction in cardiolipin content by a factor of at least 15 (less than 0.2 mol % of the total phospholipids). A crude membrane fraction derived from the mutant is unable to synthesize cardiolipin from phosphatidylglycerol in vitro. The mutant has no distinctive phenotype regarding its growth properties, membrane-associated respiratory functions, or the ability to insert bacteriophage M13 coat protein into the cell envelope. The cls mutation confers a 5-times reduction in the turnover of the phosphate moiety of phosphatidylglycerol.

Cardiolipins

[Anti-cardiolipin antibodies in Horton's disease].

A prospective study on 11 patients with temporal artery biopsy-proven arteritis examined the frequency and significance of anti-cardiolipin antibodies. Antibody levels in 7 patients were higher than 20 units but were not correlated with an inflammatory syndrome, as assessed by measurement of 4 inflammatory proteins (fibrinogen, C-reactive protein, orosomucoid and haptoglobin). These 7 patients were treated with steroids and their antibody levels returned to the normal range after 4 to 16 weeks of therapy, later than the inflammatory proteins. Two patients had slight increases of their anti-cardiolipin antibody levels, but no signs of clinical relapse or increases of inflammatory proteins were observed. In this study, no correlation was found between the presence of anti-cardiolipin antibodies and the occurrence of ischemic complications in 6 of the 11 patients.

Aged

Rate of restoration of cardiolipin and other major phospholipids during liver regeneration in rat.

The rate of restoration of liver phospholipids, especially cardiolipin, during liver regeneration after two-thirds partial hepatectomy, was studied. Preoperative content of cardiolipin was not restored during the first week of regeneration, while this was the case for the other major liver phospholipids. The observations are discussed in relation to the morphogenesis of mitochondria during liver regeneration.

Animals

Polymorphic phase behaviour of cardiolipin as detected by 31P NMR and freeze-fracture techniques. Effects of calcium, dibucaine and chlorpromazine.

1. The influence of Ca2+ on the polymorphic phase behaviour of cardiolipin has been investigated employing 31P NMR and freeze-fracture techniques. The close correlation between the results obtained here and previous X-ray studies (Rand, R.P. and Sengupta, S. (1972) Biochim. Biophys. Acta 255, 484--492) confirms 31P NMR as a useful analytical procedure for investigating the polymorphic phase behaviour of hydrated phospholipids. 2. Ca2+ induces formation of the hexagonal (H11) phase via an intermediary phase which is observed at Ca2+/cardiolipin ratios of less than 1 (mol/mol). This intermediary appears to consist of "inverted' structure which lies adjacent to regions of bilayer structure. 3. The local anaesthetics dibucaine and chlorpromazine produce similar phase changes for cardiolipin as does Ca2+. It is suggested that the anaesthetics interact with the membrane in their charged form and induce their effects by charge neutralization.

Calcium

Phase changes of cardiolipin vesicles mediated by divalent cations.

Small unilamellar vesicles were prepared from cardiolipin and produced the hexagonal II phase when dialyzed against CaCl2 or MgCl2. Upon removal of the cation by dialysis against EDTA large unilamellar vesicles were formed. The events of the transition from the lamellar to hexagonal phase and back to the lamellar phase are described.

Calcium

Immune lysis of spin label loaded liposomes incorporating cardiolipin; a new sensitive method for detecting anticardiolipin antibodies in syphilis serology.

Liposomes prepared from a mixture of the pure lipids cholesterol, lecithin and cardiolipin (molar ratio 50/45/5), are able to bind antibodies directed against Treponema pallidum. When the liposomes are loaded with the water soluble spin label tempocholine chloride, the release of spin label from the liposomes can be monitored directly by observing changes in the paramagnetic resonance (ESR) spectrum from the spin label. The method offers a convenient technique for monitoring the complement-mediated lysis of liposomes, and may be applied in the serological diagnosis of syphilis, and a method for quantitative measurement of complement.

Animals

Action of polymyxin B on bacterial membranes: phosphatidylglycerol- and cardiolipin-induced susceptibility to polymyxin B in Acholeplasma laidlawii B.

To identify the polymyxin receptor molecules in the membranes of living microorganisms, fusion of intact Acholeplasma laidlawii B with lipid vesicles was investigated according to the procedure of Grant and McConnell (1973). The naturally polymyxin-resistant A. laidlawii B was treated with phospholipid vesicles prepared from purified phospholipids of the polymyxin-susceptible Salmonella typhimurium G30. A. laidlawii B absorbed between 15 and 45% of its own lipid content of the added tritium-labeled phospholipids without loss of viability. Association with the acidic components phosphatidylglycerol and cardiolipin produced a 10- to 30-fold increase in polymyxin susceptibility, which was not obtained with egg-phosphatidylcholine and mixed phosphatidylcholine-phosphatidylethanolamine vesicles. The polymyxin-sensitized cells bound 12 times more radioactive antibiotic than resistant cells. The phosphatidylglycerol-induced susceptibility was abolished by serum fraction V (Cohn) proteins.

Acholeplasma laidlawii

Properties of a membrane-bound cardiolipin synthetase from Lactobacillus plantarum.

Cardiolipin (CL) synthetase of Lactobacillus plantarum 17-5 catalyzed the stoichiometric conversion of 2 mol of phosphatidylglycerol to 1 mol of CL. The enzyme activity was linear with time for 30 min at 37 C and with protein concentration between 20 and 200 mug of protein per ml. The enzyme was membrane associated, had a pH optimum of 5.1 in phosphate buffer, and was not stimulated by Mg2+, and the activity was not affected by the addition of ethylenediaminetetraacetic acid, cytidine diphosphate diglyceride, or cytidine triphosphate. The reaction was inhibited about 95% by Triton X-100 (0.5% final concentration) and by CL, the end product of the reaction. The activity of this enzyme was studied as a function of growth. The CL synthetase specific activity was highest during the early and midexponential growth phases, as was the cellular content of CL. The results demonstrate a correlation between enzyme-specific activity and lipid content of the cells.

Cardiolipins

[Immunohistochemical study of cardiolipin and phosphatidylinositol in mouse liver].

Localization of two phospholipid haptens--cardiolipin and phosphatidylinositol--in mouse liver sections was studied by the indirect method of fluorescent antibodies. Two types of liver sections--paraffin and cryostat, and two type of fixation--in acetone, and in the acetone, buffer, and formalin mixture--were used. Antiphospholipid sera stain specifically the plasma membrane of hepatocytes and predominantly the membrane region overlooking the blood capillary. A possibility of detecting the specific phospholipid haptens depends on the method of obtaining the sections and their fixation. Two types of immunization give two types of antiphospholipid sera which differ by the stability, by the possibility of monospecific antibodies isolation from them on lipid immunosorbents, and by the types of liver section staining.

Animals

Circular DNA and cardiolipin in hydrogenosomes, microbody-like organelles of trichomonads.

Circular molecules of DNA approximately 3 mum in length were revealed by electron microscopy in deproteinized extracts prepared from purified hydrogenosomal fraction of a protozoan Tritrichomonae foetus. This fraction contained also cardiolipin amounting to approximately 14.4% of its total phospholipids, as detected by thin-layer chromatography and quantitative phosphorus measurement. These characteristics extend a number of biochemical properties of hydrogenosome shared also by mitochondria and by prokaryotic cells.

Cardiolipins