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G Mandel

Publications and source records attributed to G Mandel.

87 records · Page 5Linked to original sources

Synthesis of phage M13 coat protein and its assembly into membranes in vitro.

The coat protein (gene 8 product) of coliphage M1O is an integral protein of the host cell membrane at all stages of virus infection. This protein, when made in a cell-free reaction, has been shown by others to have an additional NH2-terminal peptide region and is referred to as "procoat." It is initially not membrane-bound but, upon exposure to Escherichia coli membrane vesicles or to liposomes prepared from E. coli lipids, it assembles into the bilayer in an integral fashion. Much of this protein is shown to be exposed on the inner surface of the liposome. We suggest that refolding of procoat as it encounters the bilayer is sufficient to transport large segments of the peptide chain through the apolar hydrocarbon core.

Cell-Free System↗

Functional properties of EL-4 tumor cells with lipid-altered membranes.

The effect of fatty acid substitution of membrane phosphatides on a number of surface-mediated phenomena in EL-4 cells was examined. Tumor cells were grown in the presence of fatty acids that could be expected, on the basis of their physical properties, either to stiffen or fluidize the plasma membrane. Substitution of EL-4 cell membrane phosphatides with as much as 74% nonadecanoic acid (19:0) had no effect on either conjugation with effector cells or subsequent cytolysis by the effector cells. Substitution with linolenic acid (18:3) or elaidic acid (18:1trans) likewise affected neither conjugation nor cytolysis. Substitution with these fatty acids also had no effect on the susceptibility of EL-4 cells to cytolysis by antibody plus complement. On the other hand, the rate of patching of H-2 surface antigens was very sensitive to substitution by both 19:0 and 18:3. Although not conclusive, these results suggest that alterations of the fluid state of the membrane that affect lateral movements of surface proteins may not affect cytolytic processes.

Animals↗

Alteration of the fatty acid composition of membrane phospholipids in mouse lymphoid cells.

A simple method is described for introducing exogenous fatty acids into the membrane phospholipids of the murine leukemia cell EL-4, and into the membrane phospholipids of resting mouse lymphocytes. The method involves culturing of the cells with free or methylated fatty acids at concentrations up to 50 microgram/ml. The presence of serum in the culture medium does not interfere with fatty acid uptake, but does increase the growth rate and viability of the cells. Membrane lipid composition returns to normal after the cells are grown in medium without exogenous fatty acid. Fractionation of the cell membranes confirmed that exogenous fatty acids were incorporated into the phospholipids of the plasma membrane.

Animals↗

Tuna cytochrome c at 2.0 A resolution. III. Coordinate optimization and comparison of structures.

Optimum coordinate sets have been obtained for ferrocytochrome c and the two symmetry-independent molecules of ferricytochrome c from tuna at 2.0 A resolution by making the best fit of models with standard bond lengths and angles to the experimental electron density maps (1977) J. Biol. Chem. 252, 759-785, as a preliminary to full refinement with 1.5 A data. Both the Diamond model-building programs and locally developed minicomputer routines were tried, with the latter preferred for economy and ease of operation, although both gave satisfactory results. Atomic coordinates are available on microfiche or from the Brookhaven Protein Data Bank. Using the two ferricytochrome molecules as a control, no differences between oxidized and reduced cytochrome molecules can be seen that are outside the probable limits of accuracy of the 2.0 A analysis. Rotation and subtractive difference map comparisons also show no conformation changes. If believable differences do appear in the course of the 1.5 A refinement now underway, these should be no more than minor breathing of main chain or adjustment of side chains.

Amino Acid Sequence↗

Tuna cytochrome c at 2.0 A resolution. I. Ferricytochrome structure analysis.

The crystal structure of oxidized cytochrome c from tuna hearts has been solved by x-ray diffraction to a resolution of 2.0 A, using four isomorphous heavy atom derivatives. The crystals, space group P43, have 2 independent cytochrome molecules in the asymmetric repeating unit. No significant difference is seen between these 2 molecules, aside from conformations of a few surface side chains. The molecular folding observed is essentially that reported for tuna ferrocytochrome c. In particular, the ring of phenylalanine 83 lies against the heme group and closes the heme crevice, and is not swung out into the surroundings as had been believed from the 2.8 A horse ferricytochrome c structure.

Animals↗

Tuna cytochrome c at 2.0 A resolution. II. Ferrocytochrome structure analysis.

The x-ray crystal structure analysis of tuna ferrocytochrome c has been extended from 2.45 to 2.0 A resolution. The overall folding is unchanged and is the same as has been reported for tuna ferricytochrome c (Swanson R., Trus, B.L., Mandel, N., Mandel, G., Kallai, O.B., and Dickerson, R.E. (1977) J. Biol. Chem. 252, 759-755). No significant structural differences are observed between oxidation states. Difference map studies using reoxidized crystals of ferrocytochrome c confirm the absence of a conformation change. A detailed analysis of hydrogen bonding shows the presence of six beta or 310 bends of type II with obligatory glycines in the 3rd residue position. This explains 6 of the 10 nearly invariant glycines in the molecule. Close packing contacts account for three more, and only the invariant glycine 1 remains a mystery.

Amino Acid Sequence↗

Biosynthesis of pancreatic islet hormones.

We have outlined the various strategies used to characterize the precursors of three pancreatic islet hormones--somatostatin, pancreatic polypeptide and VIP. In each case, isolation of the cDNA clones was facilitated by the use of gastrointestinal tissues that were extremely rich in specific mRNA. Characterization of the structures of the precursors is clearly only the first step in understanding the regulation of pancreatic hormone biosynthesis. It is likely that the availability of the cDNA clones will allow us to define the actual mechanisms underlying hormone production within the pancreas.

Animals↗

Identification of sodium channel subtypes induced in cultured retinal pigment epithelium cells.

Recent electrophysiological experiments have shown that retinal pigment epithelium (RPE) cells begin to produce neuronal-type voltage-dependent sodium currents when placed in dissociated cell culture. In this study, the sodium channel types induced in cultured rat RPE cells were identified. Sodium channel mRNAs encoding two distinct alpha subunits were detected in the cultured RPE cells, brain type II/IIA, and a novel rat mRNA which we have termed RET1. These two sodium channel types may correspond to the TTX-sensitive and TTX-insensitive components of sodium current reported previously in cultured rat RPE cells.

Amino Acid Sequence↗