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Biomedical subjects

L Lebeau

Publications and source records attributed to L Lebeau.

3 recordsLinked to original sources

Rational design and synthesis of phospholipids for the two-dimensional crystallization of DNA gyrase, a key element in chromosome organization.

Properties required of lipids for two-dimensional crystallization of proteins on lipid layers at the air/water interface are discussed in terms of molecular structure. These properties are related to essential features of the overall system such as (i) the fluidity and stability of the lipid film, (ii) the affinity of the protein to be crystallized for the lipids and (iii) the accessibility of the protein to the ligand in the lipid layer as well as (iv) technical constraints of the crystallization technique. The resulting ideas were tested through the rational design and synthesis of original phospholipid structures linked to novobiocin subsequently used in the production of two-dimensional crystals of DNA gyrase (B subunit), a prokaryotic type II DNA topoisomerase.

Crystallization

[The computerized anesthesia record].

The first anaesthetic record was introduced into medical practice in 1940. Since then few changes have been made to it and it remains a rudimentary memorandum. However, since the beginning of the 1980s, interest in automatic recording of the anaesthetic file has been increasing and numerous arguments can be put forward in its favour. Apart from theoretical and experimental arguments, in practice one has to master the automatic collection of data, management of alarms and the technology of the networks involved in order to manage the flow of information by channelling it and organizing it into a hierarchy. Four other objectives can be added to the clinical recording and its medico-legal applications: anaesthetic cost evaluation, quality of care, research and clinical teaching which will provide the basis of anaesthetic epidemiological research.

Anesthesiology

Two-dimensional crystallization of DNA gyrase B subunit on specifically designed lipid monolayers.

The B subunit of DNA gyrase formed two-dimensional crystals when bound to a specifically recognized phospholipid spread into a monolayer at the air/water interface. The especially designed lipids consisted of novobiocin coupled through the 3' or 2" hydroxyl group and a hydrophilous linker of a given length to dioleoylphosphatidic acid. Two-dimensional crystals of the gyrase B subunit are formed under physiological conditions of pH and ionic strength, with no precipitant added to the solution. Crystal diffraction extended to a 2.7 nm resolution in negative stain, with unit cell parameters a = 6.1 nm, b = 7.6 nm and gamma = 64 degrees.

Bacteria