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Biomedical subjects

E Remy

Publications and source records attributed to E Remy.

6 recordsLinked to original sources

Cloning, expression, and nucleotide sequence of glgC gene from an allosteric mutant of Escherichia coli B.

The Escherichia coli B mutant strain CL1136 accumulates glycogen at a 3.4- to 4-fold greater rate than the parent E. coli B strain and contains an ADPglucose synthetase with altered kinetic and allosteric properties. The enzyme from CL1136 is less dependent on the allosteric activator, fructose 1,6-bisphosphate, for activity and less sensitive to inhibition by AMP than the parent strain enzyme. The structural gene, glgC, for the allosteric mutant enzyme was selected by colony hybridization and cloned into the bacterial plasmid pBR322 by insertion of the chromosomal DNA at the PstI site. One recombinant plasmid, designated pKG3, was isolated from the genomic library of CL1136 containing glgC. The cloned ADPglucose synthetase from the mutant CL1136 was expressed and characterized with respect to kinetic and allosteric properties and found to be identical to the enzyme purified from the CL1136 strain. The mutant glgC was then subcloned into pUC118/119 for dideoxy sequencing of both strands. The mutant glgC sequence was found to differ from the wild-type at the deduced amino acid residue 67 where a single point mutation resulted in a change from arginine to cysteine.

Allosteric Regulation

Inhibition of platelet-activating factor biosynthesis via the acetyltransferase by arachidonic and oleic acids in ionophore A23187-stimulated bovine neutrophils.

Platelet-activating factor (PAF) is a phospholipid mediator of inflammation and allergy that is synthesized by several inflammatory cells including neutrophils. Addition of exogenous arachidonic acid to ionophore A23187-stimulated bovine neutrophils led to the inhibition of PAF biosynthesis assayed by incorporation of [3H]acetate into PAF and by bioassay; under the same conditions, leukotriene B4 (LTB4) formation was not decreased. The activities of the PAF metabolism enzymes indicated that the PAF synthesis inhibition by arachidonic acid is mediated via the acetyltransferase inhibition which is the last enzyme of the PAF formation. Another unsaturated fatty acid, oleic acid, exhibited the same inhibitory effect on [3H]acetate-PAF formation; however, the saturated stearic acid did not lead to any inhibition. These findings suggest that liberation of unsaturated fatty acids from membrane phospholipids, as a consequence of phospholipase A2 activation, would modulate PAF formation via inhibition of the acetyltransferase. In addition, the utilization of arachidonic acid oleic acids in activated neutrophils furnishes an easy means of blocking PAF synthesis in order to understand the role of this mediator in cellular processes.

Acetates

The laser in the Lowry technique for microdissection of freeze-dried tissue slices.

A new technique for tissue microdissection is described. This procedure, using an u.v.-laser micropreparation instrument, overcomes the extremely time-consuming manual preparation. The u.v.-laser micropreparation design allows fast, precise, reproducible and smear-contamination-free tissue microdissection. The preparation of the tissue sample can be programmed by tracing out the area to be sampled with a non-destructive 0.5 mW He-Ne-laser aiming-beam. The tract is stored in a small electronic unit, which then guides the motor-driven stepping stage on the microscope in the actual dissection run with the u.v.-laser. The laser power is adjustable in the range 4 to 40 kW and controlled by a photo diode displayed on an oscilloscope screen. In the tissue slice, prepared according to Lowry, an unlimited number of cells or tissue compartments can be dissected and afterwards weighed. The procedure described offers a broader use of the quantitative microhistochemical techniques of Lowry and of Neuhoff.

Acid Phosphatase

Cell surgery by laser micro-dissection: a preparative method.

A new UV-laser device is introduced as a micro-manipulator and micro-dissection apparatus for experimental cell research. High energy irradiation is produced by a quasi-continuous N2-laser. The laser micro-beam can be focused to a minimal diameter of 0-75 mum. The micro-laser can be used for cutting and, hence, as a micro-surgical instrument at the level of cellular organelles. Cytoplasmic actomyosin fibrils (AM fibrils) from tissue culture cells (RMCD-cells) are isolated from the surrounding ground cytoplasm. It is shown that the contractile proteins are not damaged by the laser dissection method to an extent that would prevent their normal function, e.g. contraction.

Actomyosin