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J Rigaud

Publications and source records attributed to J Rigaud.

At least 37 records · Page 2Linked to original sources

Localization of a protease in protoplast preparations in infected cells of French bean nodules.

Protoplasts from infected and uninfected cells were isolated from the central nitrogen fixing tissue of French bean (Phaseolus vulgaris L. cv Contender) root nodules. Successive filtrations allowed the separation of the infected cells, whereas the small uninfected cells were isolated on a discontinuous Percoll gradient. Higher yields of intact protoplasts were obtained from young (4-week-old) nodules whereas no protoplasts could be isolated from the oldest nodules. When proteolysis was determined in the cytosolic fraction of both infected and uninfected cells, at pH 5.0 and 8.0, with leghemoglobin or azocasein as substrate, activity was present only in infected cell protoplasts and increased with nodule age. A protease with an acidic pH optimum, mainly responsible for this increasing activity, was highly purified from senescing nodules by electro-elution after nondenaturing polyacrylamide gel electrophoresis and used to produce polyclonal antibodies. Western blots of nodule protein separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and probed with purified anti-protease immunoglobulin G showed the molecular mass of the protease to be 58 kilodaltons. Blots also confirmed that protease protein was located in infected cell protoplasts only, regardless of nodule age.

Journal Article↗

Nitrogen Fixation (C(2)H(2) Reduction) by Broad Bean (Vicia faba L.) Nodules and Bacteroids under Water-Restricted Conditions.

Water potentials of leaves and nodules of broad bean (Vicia faba L.) cultivated on a sandy mixture were linearly and highly (r(2) = 0.99) correlated throughout a water deprivation of plants. A decrease of 0.2 megapascal of the nodule water potential (Psi(nod)) induced an immediate 25% inhibition of the highest level of acetylene reduction of broad bean nodules attached to roots. This activity continued to be depressed when water stress increased, but the effect was less pronounced. Partial recovery of optimal C(2)H(2) reduction capacity of mildly water stressed nodules (Psi(nod) = -1.2 megapascals) was possible by increasing the external O(2) partial pressure up to 60 kilopascals. The dense packing of the cortical cells of nodules may be responsible for the limitation of O(2) diffusion to the central tissue. Bacteroids isolated from broad bean nodules exhibited higher N(2) fixation activity with glucose than with succinate as an energy-yielding substrate. Bacteroids from stressed nodules appeared more sensitive to O(2), and their optimal activity declined with increasing nodule water deprivation. This effect could be partly due to decreased bacteroid respiration capacity with water stress. Water stress was also responsible for a decrease of the cytosolic protein content of the nodule and more specifically of leghemoglobin. The alteration of the bacteroid environment appears to contribute to the decline in N(2) fixation under water restricted conditions.

Journal Article↗

Potassium stimulation of corn root plasmalemma ATPase : I. Hydrolytic activity of native vesicles and purified enzyme.

Potassium stimulation of the plasmalemma (Zea mays L. var Mona) was studied by using a constant ionic strength to prevent indirect stimulation by the electrostatic effect of K(+) salts. The transmembrane electrochemical H(+) gradient was eliminated by using gramicidin. In these conditions, K(+) stimulation was attributable to a direct effect of the cation on plasmalemma proteins. We used both native vesicles isolated on a sucrose cushion, and solubilized and purified ATPase from phase-partitioned plasmalemma, according to the method of T. Nagao, W. Sasakawa, and T. Sugiyama ([1987] Plant Cell Physiol 28: 1181-1186). The purified enzyme had a high specific activity (15 micromoles per minute per milligram protein), but was only about 20% stimulated by K(+). In both preparations, potassium (in the range around 1 millimolar) specifically decreased two-fold the vanadate inhibition constant, and increased the maximum rate of ATP hydrolysis. In plasmalemma vesicles, the Eadie-Scatchard graph of the K(+)-dependent ATPase activity as a function of K(+) concentration was linear only at constant ionic strength. The purified ATPase preparation appeared as two closely spaced bands in the 100 kilodalton region with isoelectric point about 6.5. Nevertheless, this biochemical heterogeneity seems unlikely to be related to K(+) stimulation, since K(+) modified neither the pH optimum of the activity (pH 6.5) nor the monophasic kinetics of the vanadate inhibition, in both native plasmalemma and purified enzyme preparation.

Journal Article↗

Potassium Stimulation of Corn Root Plasmalemma ATPase : II. H-Pumping in Native and Reconstituted Vesicles with Purified ATPase.

The stimulation by K(+) of the initial rate of H(+)-pumping by ATPase was studied in native plasmalemma (Zea mays L. var Mona) vesicles and in reconstituted vesicles with enzyme purified on a glycerol gradient. In reconstituted vesicles, a very high H(+)-pumping rate (200,000% quenching per minute per milligram protein) was obtained with 9-amino-6-chloro-2-methoxyacridine provided that the pump was short-circuited by K(+)-valinomycin. A constant ionic strength was used to prevent indirect stimulation by the electrostatic effects of K(+) salts. Indirect stimulation of H(+)-pumping by the short-circuiting effect of internal K(+), could be abolished by using the permeant anions NO(3) (-) and Br(-) in native, but not in reconstituted vesicles. In both materials, half-stimulation of the H(+)-pumping by K(+) was observed at about 5 millimolar. The same stimulation was obtained when K(+) was present only in the external solution or when it was present both outside and inside the vesicles. It was concluded that the stimulating effect of K(+) on the H(+)-pumping evidenced in these experiments on both native and reconstituted vesicles was due to a direct effect of the cation on the cytoplasmic face of the ATPase. These results are discussed within the context of the hypothesis of an active K(+) transport driven by the ATPase through a direct H(+)/K(+) exchange mechanism.

Journal Article↗

Occurrence of Two Pathways for Malate Oxidation in Bacteroids Isolated from Sesbania rostrata Stem Nodules during C(2)H(2) Reduction.

Malate oxidation supported C(2)H(2) reduction by bacteroids isolated from Sesbania rostrata stem nodules. Optimal activity reached 7.5 nanomoles per minute per milligram of dry weight and was in the same order of magnitude as that observed with succinate but always required a lower O(2) tension. Malate dehydrogenase (EC 1.1.1.37), purified 66-fold from bacteroids, actively oxidized malate (K(m) = 0.19 millimolar). Malic enzyme (EC 1.1.1.39) from Sesbania bacteroids had a lower affinity for malate (K(m) = 2.32 millimolar). Both enzymes exclusively required NAD(+) as cofactor and required an alkaline pH for optimal activity. 2-Oxoglutarate and oxalate, inhibiting malate dehydrogenase and malic enzyme, respectively, were used to specifically block each malate oxidation pathway in bacteroids. The predominance of malate dehydrogenase activity to support bacteroid N(2) fixation was demonstrated. The inhibition of O(2) consumption by 2-oxoglutarate confirmed the importance of the malate dehydrogenase pathway in malate oxidation. It is proposed that the utilization of malate, with regard to O(2), is important in a general strategy of this legume to maintain N(2) fixation under O(2) limited conditions.

Journal Article↗

Electrostatic analysis of effects of ions on the inhibition of corn root plasma membrane Mg2+-ATPase by the bivalent orthovanadate.

The microelectrophoretic mobility of corn root plasma membranes and the inhibition of the Mg+2-ATPase by vanadate were investigated under different ionic conditions. The Mg2+-ATPase was uncompetitively inhibited and a 10-fold variation of the apparent inhibition constant was observed, depending on the addition of K+ and Mg2+. The determination of the zeta potential indicated that a 5-fold decrease of the apparent inhibition constant was due to aspecific electrostatic interactions of the vanadate anion and the negative charge of the membrane. The screening and masking effects of 6 mM free Mg2+ totally abolished electrostatic interactions and allowed the direct determination of the intrinsic vanadate inhibition constant (KIi). On the other hand, a specific, non-electrostatic, effect of K+ caused a 2-fold decrease of the inhibition constant in addition to the electrostatic effect. Finally, the electrostatic analysis indicates that the Mg2+-ATPase is inhibited by the monomeric bivalent anion HVO4(2-).

Ca(2+) Mg(2+)-ATPase↗

Preparation of Corn Root Plasmalemma with Low Mg-ATPase Latency and High Electrogenic H Pumping Activity after Phase Partitioning.

Crude plasma membranes of corn (Zea mays L.) roots were obtained according to MI De Michelis and RM Spanswick (1986 Plant Physiol 81: 542-547). This preparation, which contained tightly sealed vesicles displaying Mg-ATP dependent H(+)-transport, was purified by phase partitioning. The percentage of inside-out vesicles (10%) was determined from the Mg-ATPase latency, revealed with lysophosphatidylcholine. A Triton X-100 treatment described previously (JP Grouzis, R Gibrat, J Rigaud, C Grignon 1987 Biochim Biophys Acta 903: 449-464) was applied to phase-partitioned plasma membranes. The percentage of catalytic sites freely accessible to Mg-ATP increased to 50% after Triton X-100 treatment. Treated vesicles remained capable of electrogenic H(+)-pumping, as demonstrated by Mg:ATP-dependent quinacrine fluorescence quenching and oxonol absorbance shift. As expected from the large increase of the catalytic sites accessibility, increases of the dye responses were observed. Concanavalin A binding was estimated from microelectrophoretic measurements of individual vesicles. Statistical analysis of concanavalin A binding and Mg-ATPase latency suggest that treated membranes have lost their asymmetric structure.

Journal Article↗

[Locoregional anesthesia of the foot for forefoot surgery].

A technique of regional anaesthesia of the foot for forefoot surgery (ingrowing toe-nail, hallux valgus, amputation, etc.) is described. It consists of a block of the superficial peroneal nerve at the ankle combined with a block of the posterior tibial nerve behind the medial malleolus. A volume of 5-6 ml of 1% lidocaine or 1% mepivacaine is injected. A pneumatic tourniquet was placed on the upper part of the thigh after the patient had been given an intramuscular premedication. The results of 52 such blocks carried out in 40 patients are discussed.

Adolescent↗

[Axillary block of the brachial plexus and flunitrazepam premedication in surgery of the upper limb (study of 1,500 cases)].

The authors report their experience of regional block using anaesthesia of the brachial plexus by the axillary approach. 1 500 axillary blocks have been done since 1976. They perfect their technology and report their results. Because of the innocuity of regional block and its simplicity, they use it in seventy per cent of superior limb acute or regular surgery.

Adolescent↗

Phosphorylated intermediate of a transport ATPase and activity of protein kinase in membranes from corn roots.

A maize-root microsomal fraction was enriched in ATPase by treatment with Triton X-100. This activity, which reached 1.2-2.0/mumol Pi x min-1 x mg protein-1, was specific for ATP, very slightly stimulated by K+, inhibited by orthovanadate and diethylstilbestrol, resistant to oligomycin and azide, and had a Km of 1.2 mM MgATP. Incubation of the microsomal fraction with [gamma 32-P]ATP followed by electrophoresis in acid conditions revealed the presence of several phosphoproteins. The phosphorylation of a 110000-Mr polypeptide reached the steady-state level in less than 5 s and rapidly turned over the phosphate group. The phosphorylation level was an hyperbolic function of the [ATP] with a Km of 0.6 mM, suggesting that the rate of Pi production was proportional to the phosphoprotein concentration. The extent of phosphoprotein was decreased by vanadate and diethylstilbestrol. The phosphorylation level was 30% decreased by 50 mM K+ or Na+ while the ATPase activity was slightly stimulated (12% and 5%, respectively). The polypeptide could not be phosphorylated in reverse by Pi. This phosphorylated intermediate from maize-root microsomes exhibits molecular properties characteristic of transport ATPases such as the yeast plasma membrane H+-translocating ATPase. This similarity indicates existence of a transport ATPase in plant plasma membranes. Three other plant microsomal polypeptides (Mr = 52000, 17000 and 16000) and a low molecular weight component (Mr less than 1000) were phosphorylated much more slowly, were not undergoing a rapid turnover and were not hydrolysed by hydroxylamine. These phosphoproteins and the Mr less than 1000 phosphorylated component were inhibited by vanadate and diethylstilbestrol. These properties are similar to those of the protein kinase activity recently described in yeast plasma membranes.

Adenosine Triphosphatases↗

[Identification and analysis of hydrogenated cyclic monomeric acids in the hepatic lipids of rats ingesting heated linseed oil].

In a short-term (15 days) experiment, weanling Wistar rats were given diets at weaning containing 10% of different linseed oils: fresh linseed oil (lot F), linseed oil heat polymerized at 275 degrees C for 12 h under nitrogen (lot T) and linseed oil oxidized in the presence of air at 200 degrees C for 100 h (lot O). We analyzed the fatty acids of total liver lipids and assayed the hydrogenated cyclic monomeric acids and identified them by using a combination of gas-liquid chromatography and mass spectrometry. Compared to lot F animals, those of lots T and O showed considerable hepatic hypertrophy but total liver lipids were not increased. However, the usual fatty acid composition of these lipids was modified: the level of several monounsaturated (16: 1, 18: 1) and polyunsaturated (mainly 20: 4n - 6) fatty acids was increased in lots T and O, which could result in increased activity of the enzymatic systems (desaturases) biosynthesizing them. Moreover, cyclic monomeric acids from heated oils were deposited at a 10 times higher concentration in the liver of lot T animals than in that of lot O animals. The significance of these changes has been discussed.

Animals↗

Nitrite and nitric oxide as inhibitors of nitrogenase from soybean bacteroids.

Nitrite was able to strongly inhibit C(2)H(2) reduction by nitrogenase from soybean bacteroids, whereas H(2) evolution was unaffected under the same conditions. NO inhibited both C(2)H(2) reduction and H(2) evolution; during C(2)H(2) reduction, sensitivity of nitrogenase to NO was higher than to NO(2), and the K(i) values were, respectively, 0.056 and 0.52 mM. Production of NO resulting from a reduction of NO(2) by dithionite in nitrogenase incubations was observed. However, the characteristics of inhibitions and the low level of NO generated by nitrite reduction ruled out the suggestion concerning a direct role of NO to explain the inhibitory effect of NO(2) on nitrogenase.

Journal Article↗

Peroxidase content of soybean root nodules.

A peroxidase has been isolated from soybean nodules and its main characteristics have been determined. Its molecular weight (48 000) and spectral properties are similar to those of usual plant peroxidases. Its activity is comparable to that of low-efficiency plant peroxidases. The rate constant of the reaction with H2O2 is 3 x 10(5) M-1 x s-1. In this reaction, nodule peroxidase yields an oxidized intermediate analogous to the compound I species of peroxidases already studied. A comparison is made with the pseudoperoxidatic activity of soybean leghemoglobin components. Leghemoglobins a and c react with H2O2 with rate constants of 5 x 10(3) and 2.5 x 10(3) M-1 x s-1, respectively, yielding the leghemoglobin (IV) species. During these reactions leghemoglobins are inactivated.

Kinetics↗

Kinetic studies of the reaction of ferric soybean leghemoglobins with hydrogen peroxide, cyanide and nicotinic acid.

A kinetic study of the reaction of two soybean leghemoglobins (components a and c) with hydrogen peroxide to form the oxidized compound (leghemoglobin IV) has been carried out over the pH range 2.5--10. Three different ionization processes of leghemoglobins with pKa values of 3,4.7 +/- 0.2 and 8.2 +/- 0.1 are required to explain the rate/pH profiles. Protonation of the former group and ionization of the latter cause a decrease in the rate of reaction of the hemoproteins with H2O2. The results are compared to those obtained for the reactions of plant peroxidases and myoglobin with H2O2. The results obtained from the kinetic study of cyanide binding to soybean leghemoglobins indicate that CN- is the reactive species. Two ionization processes of leghemoglobins with pKa values of 4.7 +/- 0.2 and 8.2 +/- 0.1 affect the reaction rates. The association and dissociation rate constants corresponding to nicotinic acid binding to leghemoglobins a and c have been measured over the pH range 2.5--7. The dissociation rate constant is affected by ionization of a group with pKa less than 2.5 for both leghemoglobin-nicotinate complexes. In this pH range the association rate constant is only affected by ionization of a group with pKa value of 4.7 +/- 0.2. The analysis of these results shows that both ionization processes corresponding to ring nitrogen atom of the ligand (pKa approximately equal to 4.9) and to a heme-linked group (pKa approximately equal to 4.7 +/- 0.2) influence the association rate constant. Furthermore, it appears that in the binding site of leghemoglobins the pKa value corresponding to ionization of the ring nitrogen atom of nicotinic acid is shifted from the normal value of 4.9 to a value of less than 2.5. This pecularity might explain the exceptional reactivity of leghemoglobins for nicotinic acid, over a large pH range. For both cyanide and nicotinic acid binding reactions, the ionizable group of leghemoglobins with pKa value of 4.7 +/- 0.2 seems to act as an electrostatic gate. When the group is deprotonated, it restricts the access of anion ligands to the heme pocket. For all the three reactions studied, leghemoglobin a reacts about twice as fast as leghemoglobin c.

Cyanides↗

[Assay of factors VIII and IX using an automatic system. Comparison of one- and two-stage techniques (author's transl)].

The assay of antihemophilic factors is the best test for the diagnosis of hemophilia. It is also necessary to control the products for the substitutive therapy and for monitoring the treatment. The assays may be carried out by a semi-automatic technique. The comparison between this technique and the manual techique in two stages shows that the values obtained in one stage are higher than those obtained in two stages. The automatic method in one stage is sufficiently reliable for estimating the hemophilic factors.

Autoanalysis↗