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H Bouyssou

Publications and source records attributed to H Bouyssou.

7 recordsLinked to original sources

High affinity recognition of a Phytophthora protein by Arabidopsis via an RGD motif.

The RGD tripeptide sequence, a cell adhesion motif present in several extracellular matrix proteins of mammalians, is involved in numerous plant processes. In plant-pathogen interactions, the RGD motif is believed to reduce plant defence responses by disrupting adhesions between the cell wall and plasma membrane. Photoaffinity cross-linking of [125I]-azido-RGD heptapeptide in the presence of purified plasma membrane vesicles of Arabidopsis thaliana led to label incorporation into a single protein with an apparent molecular mass of 80 kDa. Incorporation could be prevented by excess RGD peptides, but also by the IPI-O protein, an RGD-containing protein secreted by the oomycete plant pathogen Phytophthora infestans. Hydrophobic cluster analysis revealed that the RGD motif of IPI-O (positions 53-56) is readily accessible for interactions. Single amino acid mutations in the RGD motif in IPI-O (of Asp56 into Glu or Ala) resulted in the loss of protection of the 80-kDa protein from labelling. Thus, the interaction between the two proteins is mediated through RGD recognition and the 80-kDa RGD-binding protein has the characteristics of a receptor for IPI-O. The IPI-O protein also disrupted cell wall-plasma membrane adhesions in plasmolysed A. thaliana cells, whereas IPI-O proteins mutated in the RGD motif (D56A and D56E) did not.

Amino Acid Motifs↗

[Use of the Fibroxy mask for bronchial fibroscopy and resuscitation].

Bronchial fibrescopy in intensive therapy patients raises the problem of oxygenation during the procedure. The Fibroxy mask allows fibrescopy with simultaneous O2 administration and manual or mechanical ventilation. This study, which included ten patients, assessed the benefits of this device. During fibrescopy, the heart rate, the mean arterial blood pressure, and the arterial oxygen saturation (SpO2) remained unchanged and only one short episode of desaturation occurred. The satisfaction index was high. However, this mask did not fit closely to the patient's face, and an additional assistant was required for efficient ventilation. Moreover, end-tidal CO2 could not be monitored satisfactorily. After some improvements, this device seems to be of value for bronchial fibrescopy in intensive therapy unit.

Bronchoscopes↗

High affinity RGD-binding sites at the plasma membrane of Arabidopsis thaliana links the cell wall.

The heptapeptide Tyr-Gly-Arg-Gly-Asp-Ser-Pro containing the sequence Arg-Gly-Asp (RGD--the essential structure recognised by animal cells in substrate adhesion molecules) was tested on epidermal cells of onion and cultured cells of Arabidopsis upon plasmolysis. Dramatic changes were observed on both types of cells following treatment: on onion cells, Hechtian strands linking the cell wall to the membrane were lost, while Arabidopsis cells changed from concave to convex plasmolysis. A control heptapeptide Tyr-Gly-Asp-Gly-Arg-Ser-Pro had no effect on the shape of plasmolysed cells. Protoplasts isolated from Arabidopsis cells agglutinate in the presence of ProNectinF, a genetically engineered protein of 72 kDa containing 13 RGD sequences: several protoplasts may adhere to a single molecule of ProNectinF. The addition of the RGD-heptapeptide disrupted the adhesion between the protoplasts. Purified plasma membrane from Arabidopsis cells exhibits specific binding sites for the iodinated RGD-heptapeptide. The binding is saturable, reversible, and two types of high affinity sites (Kd1 approximately 1 nM, and Kd2 approximately 40 nM) can be discerned. Competitive inhibition by several structurally related peptides and proteins noted the specific requirement for the RGD sequence. Thus, the RGD-binding activity of Arabidopsis fulfils the adhesion features of integrins, i.e. peptide specificity, subcellular location, and involvement in plasma membrane-cell wall attachments.

Arabidopsis↗

A reversible carrier mediates the transport of malate at the tonoplast of Catharanthus roseus cells.

The conditions of malate transport were defined in tonoplast vesicles purified from a microsomal homogenate of Catharanthus roseus cells by preparative free-flow electrophoresis. Isolated vesicles exhibited malate transport when the membranes were prepared by grinding the cells in a homogenisation medium only buffered in the acidic pH range. By using vesicles energized artificially by an imposed pH gradient (acid interior), it was shown that malate is actively accumulated in response to the generation of a proton-motive force. Several lines of evidence (saturation kinetics, action of malate analogs and protein modifiers) support the concept that malate transport is mediated by a protein carrier which could be implicated in the uptake process as its protonated form. The malate transported in the vesicles was released by lowering the external malate concentration. The release was prevented by the anion transport inhibitor DIDS indicating the reversibility of the carrier.

Biological Transport↗