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Biomedical subjects

A Lebrun

Publications and source records attributed to A Lebrun.

At least 19 recordsLinked to original sources

Modeling DNA deformations induced by minor groove binding proteins.

Molecular modeling is used to demonstrate that the major structural deformations of DNA caused by four different minor groove binding proteins, TBP, SRY, LEF-1, and PurR, can all be mimicked by stretching the double helix between two 3'-phosphate groups flanking the binding region. This deformation reproduces the widening of the minor groove and the overall bending and unwinding of DNA caused by protein binding. It also reproduces the principal kinks associated with partially intercalated amino acid side chains, observed with such interactions. In addition, when protein binding involves a local transition to an A-like conformation, phosphate neutralization, via the formation of protein-DNA salt bridges, appears to favor the resulting deformation.

Base Sequence

Modeling the mechanics of a DNA oligomer.

DNA stretching and strand separation have been studied by molecular mechanics using an oligomer which has been the subject of nanomanipulation experiments (Noy et al., Chem. Biol. 4, 519, 1997). Adiabatic mapping of conformational energy carried out as a function of stretching leads to force/extension curves in good correlation with the experimental results. Other types of deformation are also modeled and compared with the experimental results obtained on polymeric DNA. The results highlight overall similarities, but point to thermodynamic differences and also to local base sequence effects which can be expected to play an important role at the level of biologically induced structural deformations.

Computer Simulation

Production of virulence-related proteins by Canadian strains of Streptococcus suis capsular type 2.

The production of muramidase-released protein (MRP), extracellular protein factor (EF) and hemolysin (suilysin) by 101 Canadian field strains of Streptococcus suis capsular type 2 is described. Most strains (72%) isolated from diseased pigs were MRP-EF- and only 1 strain was MRP+EF+. This strain was also the only 1 to produce the hemolysin. Thirteen strains (15%) were MRP+ EF- and only 3 strains were MRP* EF-. All the strains isolated from clinically healthy pigs as well as a bovine and 2 human isolates had a MRP-EF- phenotype. In addition, 7 strains (8%) had a MRPS phenotype, which had so far been described for S. suis capsular type 1. In conclusion, most Canadian field isolates of S. suis capsular type 2 tested in this study do not produce the virulence-related proteins described so far for this bacterial pathogen.

Animals

Local DNA stretching mimics the distortion caused by the TATA box-binding protein.

X-ray structures of the TATA box-binding protein complexed with its DNA target show that the nucleic acid is severely bent away from the protein and also strongly unwound. We have used molecular mechanics and energy mapping to understand how such an unusual conformation can be induced. The results show that simple deformation pathways involving local stretching or unwinding of DNA reproduce many features of the experimental structure. Notably, kinked junctions with the flanking B-DNA regions occur without the need for any specific local

DNA

Unusual DNA conformations.

DNA is on the move across conformational space. Duplexes diversity and, joined by triplexes, quadruplexes, loops, bulges and multiarmed junctions, open the route to a bewildering array of increasingly complex conformations. In addition to this structural growth, DNA has come under increasing scrutiny thanks to the development of chemical and physical techniques for deforming its conformation and probing its properties. These investigations help us to learn more about the mechanics and the activity of this remarkably versatile macromolecule.

DNA

Modelling extreme stretching of DNA.

Molecular modelling with Jumna is used to study extreme stretching of the DNA double helix. The results, which correlate well with recent nanomanipulation experiments, show how the double helix can be extended to twice its normal length before its base pairs break. Depending on the way the duplex is stretched two types of conformation can occur, either an unwound flat ribbon or a narrow fibre with negatively inclined base pairs. The energetics of both types of deformation are similar and existing structures show that at least the flat ribbon form can exist locally under biological conditions.

Base Sequence

DNA: an extensible molecule.

The force-displacement response of a single duplex DNA molecule was measured. The force saturates at a plateau around 70 piconewtons, which ends when the DNA has been stretched about 1.7 times its contour length. This behavior reveals a highly cooperative transition to a state here termed S-DNA. Addition of an intercalator suppresses this transition. Molecular modeling of the process also yields a force plateau and suggests a structure for the extended form. These results may shed light on biological processes involving DNA extension and open the route for mechanical studies on individual molecules in a previously unexplored range.

Chemical Phenomena

Modeling a strand exchange tetraplex conformation.

Molecular modeling had been used to study the conformation and the energetics of 4-stranded DNA complexes formed by strand exchange between two duplexes. Both isolated strand exchange tetraplexes (SET's) and duplex-tetraplex complexes are found to be stable. Hydrogen bonding between the major groove faces of the base pairs within each base tetrad is shown to be specific, allowing tetrad formation only between DNA duplexes having identical base sequences. Such structures can explain the recent experimental observations of Gaillard and Strauss concerning the complexation of two DNA containing poly(dCA) tracts and may be of relevance to genetic recombination mechanisms.

DNA

Thermodynamic and structural properties of r(ACC) as revealed by ultraviolet electronic absorption, circular dichroism, 1H-NMR spectroscopy and Monte Carlo simulations.

UV absorption, circular dichroism (CD) and 1H NMR, associated with Monte Carlo (MC) molecular structure simulations have been applied to the study of the trinucleoside diphosphate: r(ACC). The MC study which has been conducted as a function of temperature, is based on random variations of the nucleotide conformational angles, i.e. phosphodiester chain torsional angles and sugar pucker pseudorotational angles. All of the chemical bond lengths and valence angles remained fixed during the structural simulation, except those of the sugar pucker. Six different initial structures have been selected in order to explore the molecular conformational space as completely as possible. This simulation procedure led to distinct families of equilibrium conformations at 283, 298 and 318 K. The thermodynamical parameters such as variations in entropy, enthalpy and also melting temperature (delta SX0, delta HX0 and Tm) of the stacking (X) equilibrium were obtained from UV absorption and circular dichroism (CD) spectra recorded over a 80K temperature range. Chemical shifts (delta), vicinal coupling constants (3Jk,l), and cross-relaxation rate (sigma k,l) of trimers were measured at 400.13 MHz over a range of concentrations (2-13 mM) and temperatures (283-333K). Least-squares fitting of the experimental chemical shifts to simple models of association (A) and stacking equilibria allowed separation of the variations in the delta values (delta delta X and delta delta A) due to either phenomenon. The three NMR data sets (delta delta X, 3Jk,l, and sigma k,l) were then evaluated for the minima conformers obtained with the MC stimulations. Theoretical values of delta delta X were estimated using the results of an ab initio study while the coupling constant data were simulated with Karplus-type equations. Finally, the relaxation data were simulated from the distance matrices using treatment for cases of both slow conformational exchange accompanied by rapid small-amplitude fluctuations about the minima structures. A consistent picture of the large amplitude deformations (torsional angle variation) of these trimers has emerged from the present study. Optimized conformational blends at 283,296 and 318K were obtained by least-squares fitting of the experimental data to the theoretical ones, while considering the populations as adjustable parameters. As it would be expected, the right-handed helical conformation (A-RNA type) is found to be the major stacked species, in the temperature range of 283 to 318K. Limited evidence for bulged structures has been obtained, whereas novel reverse-stacked and half-stacked conformers also presented theoretical data compatible with the NMR observables of aqueous r(ACC).

Circular Dichroism

Effects of sub-MICs of antibiotics on cell surface characteristics and virulence of Pasteurella multocida.

The effects of sub-MICs of certain antibiotics, namely, penicillin G, tetracycline, and trimethoprim-sulfamethoxazole, on the cell surface characteristics and the virulences of two toxigenic isolates of Pasteurella multocida representing capsular types A and D were evaluated. Expression of proteins, in particular, outer membrane proteins and iron-regulated proteins, was not affected by exposure of bacterial cells to low concentrations of antibiotics. However, exposition of surface antigens was modified by sub-MICs of the antibiotics tested. The lipopolysaccharide profile of one isolate (capsular type D) was altered by penicillin G. Sub-MICs of penicillin G and tetracycline diminished the virulence of the capsular type A isolate and adherence to porcine tracheal rings of the capsular type D isolate. Production of dermonecrotic toxin was not affected by sub-MICs of the antibiotics tested. Our results indicate that growth of P. multocida in the presence of low concentrations of antibiotics seems to have, depending on the isolate, profound effects on cell surface characteristics, with concomitant effects on adherence or virulence. Our results also indicate that production of dermonecrotic toxin, an important virulence factor of P. multocida isolates associated with porcine atrophic rhinitis, was not affected by sub-MICs of the antibiotics studied.

Animals

Effects of antibiotics on the growth and morphology of Pasteurella multocida.

The effects of subminimal inhibitory concentrations (subMICs) of certain antibiotics, namely penicillin G, tetracycline and trimethoprim/sulphamethoxazole, on the growth and morphology of Pasteurella multocida were evaluated. SubMICs of penicillin markedly reduced the growth of P. multocida. Tetracycline and trimethoprim/sulphamethoxazole had no effect on its growth. SubMICs of penicillin greatly affected the morphology of P. multocida. At the highest concentrations tested (1/2 and 1/4 MIC) cells were acapsulate, and long filamentous cells (4-6 microns) were observed with some isolates. There was no correlation between the observed differences in the penicillin-binding proteins of the P. multocida isolates, and the extent of cell filamentation induced by penicillin G. SubMICs of tetracycline and trimethoprim/sulphamethoxazole did not seem to affect capsule production although filamentation was observed. Our results indicate that subMICs of penicillin can reduce growth of P. multocida. Furthermore, results also indicate that subMICs of antibiotics can affect the production of capsular material and the morphology of P. multocida.

Animals

Hemagglutination properties of Streptococcus suis.

A total of 49 strains (23 reference strains and 26 field isolates) of Streptococcus suis were tested for their ability to agglutinate erythrocytes from different animal species. Ten different hemagglutination patterns were established. Thirty-three strains (67%) did not agglutinate any of the erythrocytes tested; sixteen strains (33%) agglutinated erythrocytes from one or more animal species. Different strains belonging to the same capsular type presented different hemagglutination patterns. No correlation was found between the tissue origin and/or the virulence (evaluated in 4-week-old mice) of different field isolates and their hemagglutination activity. Hydrophobic surface properties were also evaluated. All S. suis strains studied appeared to possess a hydrophilic cell surface. Morphologically similar fimbriae were observed on hemagglutinating as well as on nonhemagglutinating strains of S. suis. This study provides evidence that certain strains of S. suis possess hemagglutinating properties which do not appear to involve hydrophobic interactions. The possible role of fimbriae in hemagglutination remains unclear.

Animals

HLA antigens in narcolepsy and idiopathic central nervous system hypersomnolence.

Several studies have shown familial incidence of narcolepsy and idiopathic central nervous system (CNS) hypersomnia. HLA antigen studies performed in mongoloid and caucasoid narcoleptic patients on the A, B, and C loci have yielded conflicting results. The aim of this study is to document a possible association between the HLA system, including the DR locus and excessive daytime somnolence. Thirty-one narcoleptic patients and 10 idiopathic hypersomniac patients were selected and typed for 54 HLA antigens. A family with narcoleptic members in 3 generations was also studied. HLA-DR2 was found in 100% of narcoleptic patients. The frequency of HLA-A3 and B7, which are in linkage disequilibrium with DR2 was also increased in this group. Idiopathic hypersomniac patients showed an increase of HLA-Cw2, DR5, and B27, three antigens known to be in linkage disequilibrium. In the family study, narcoleptic patients were also HLA-DR2; moreover, 3 subjects, one of whom was narcoleptic, were HLA-DR2 as a result of recombination (i.e., genetic crossing-over). These results locate the hypothetic gene associated with narcolepsy more precisely, and indicate that narcolepsy and idiopathic CNS hypersomnolence are two different entities.

Adult

[Trapeziectomy in rhizarthrosis].

The purpose of this study is to determine the place of trapeziectomy among the various surgical treatments of osteoarthritis of the trapezio-metacarpal joint. We have had 25 cases with seemingly satisfactory results. Loss of strength, which is given as a frequent objection to this method, has not generally been found in our series. Careful repair of the capsule and prolonged postoperative immobilization appear all-important to us and are a guaranty for good postoperative stability.

Carpal Bones

Familial articular chondrocalcinosis in Quebec.

The existence of articular chondrocalcinosis was documented in 9 members of 3 generations of a Quebec family. No associated or secondary forms of the disease were found. The clinical manifestations appeared early in life, and extensive radiologic involvement was apparent. We determined that genetic transmission was dominant, either autosomal or sex-linked, and not related to the HLA system.

Chondrocalcinosis