PubMed Health⌕ Search

Biomedical subjects

J Maréchal

Publications and source records attributed to J Maréchal.

At least 19 recordsLinked to original sources

Modification of the protein expression pattern induced in the nitrogen-fixing actinomycete Frankia sp. strain ACN14a-tsr by root exudates of its symbiotic host Alnus glutinosa and cloning of the sodF gene.

Two-dimensional (2-D) polyacrylamide gel electrophoresis was used to detect proteins induced in Frankia sp. strain ACN14a-tsr by root exudates of its symbiotic host, Alnus glutinosa. The 5 most prominent proteins were purified from 2-D gels and characterized by N-terminal sequencing. All of these proteins had a high percentage of similarity with known stress proteins. One protein match was the Fe superoxide dismutase (Fe-SOD), another was a tellurite resistance protein (Ter), the third was a bacterioferritin comigratory protein (Bcp); and two matches, differing only by their isoelectric point, were the same small heat shock protein (Hsp), a major immune reactive protein found in mycobacteria. This suggests that the symbiotic microorganism Frankia, first responds with a normal stress response to toxic root products of its symbiotic host plant. To confirm its identity, the gene corresponding to the Fe-SOD protein, sodF was isolated from a genomic library by a PCR-approach and sequenced. It is the first stress response gene characterized in Frankia.

Actinomycetales↗

A recA gene phylogenetic analysis confirms the close proximity of Frankia to Acidothermus.

The closer proximity of Frankia and Acidothermus cellulolyticus relative to the morphologically close Geodermatophilus found previously was confirmed by resequencing the rrs gene of Acidothermus cellulolyticus and the housekeeping gene, recA. The diagnostic sugar 2-O-methyl-D-mannose was detected only in Frankia, while hopanoid lipids were present at high levels in both Acidothermus and Frankia.

Actinomycetales↗

The exon 46-encoded sequence is essential for stability of human erythroid alpha-spectrin and heterodimer formation.

Human erythroid alpha-spectrin alleles responsible for hereditary elliptocytosis (alphaHE alleles) undergo increased incorporation into red blood cell membranes when the polymorphism alphaLELY (LELY: Low Expression LYon) occurs in trans. The alphaLELY polymorphism is characterized by a mutation in exon 40 at codon 1857 (CTA --> GTA, Leu --> Val) and the partial (50%) skipping of exon 46, which encodes residues 2177-2182 (Wilmotte et al, J Clin Invest 91:2091, 1993). Both of these peptide sequence alterations are located within the region of the alpha-chain involved in initiating heterodimer assembly, and either or both mutations could potentially contribute to decreased incorporation of alpha-chains from the alphaLELY allele in heterozygotes into red blood cell membranes. These possibilities were evaluated by testing the protease resistance and in vitro binding properties of normal and mutant recombinant 4-motif alpha subunit peptides containing the dimer initiation region. The two forms of alpha spectrin produced by alternative mRNA splicing of the alphaLELY allele were represented by alpha18-21(1857), a peptide with the codon 1857 mutation and retaining the exon 46 encoded sequence, and alpha18-21(1857-Delta46), a peptide carrying both the 1857 codon mutation and the exon 46 deletion. The properties of these two recombinant peptides were compared with alpha18-21, a peptide with the normal sequence at codon 1857 and retaining the exon 46 encoded sequence. The codon 1857 mutation does not adversely affect dimer formation, but it is responsible for the increased trypsin cleavage between the alphaIV and alphaV domains that was the characteristic feature initially used to identify the alphaLELY (SpalphaV/41) polymorphism (Alloisio et al, J Clin Invest 87:2169, 1991). Deletion of the six amino acids encoded by exon 46 perturbs folding of the alpha21 motif, because this region of the alpha18-21(1857-Delta46) peptide is rapidly degraded and this recombinant peptide is unusually prone to self-aggregation. Exon 46 deletion reduces, but does not eliminate, dimerization. Comparison of mild trypsin proteolytic products from an alphaLELY homozygote and the two alphaLELY recombinant peptides strongly suggests that little, if any, of the 50% of the alpha chains from the alphaLELY allele that contain the exon 46 deletion are incorporated into the mature erythroid membrane. Based on the in vitro analysis of recombinant alphaLELY peptides, the inability of detectable amounts of exon 46(-) alpha chains to assemble into the mature membrane skeleton in vivo is probably due to a combination of decreased dimer binding affinity and increased proteolytic degradation of these mutant chains.

Alleles↗

Ethnic distribution of allele alpha LELY, a low-expression allele of red-cell spectrin alpha-gene.

Allele alpha LELY is a low-expression allele of erythroid spectrin alpha-chain. It carries mutations both in exon 40 and intron 45 and is associated with partial skipping of exon 46. Allele alpha LELY remains asymptomatic by itself. In contrast, it enhances the expression level of deleterious alpha-alleles occurring in trans, and as such has clinical importance. The aim of this study was to evaluate the incidence of allele alpha LELY in various ethnic groups, i.e. Caucasians, African Blacks, Japanese and Chinese. Allele alpha LELY occurred in all groups investigated with a fairly uniform frequency: 31%, 21%, 20% and 22%, respectively. Mutations in exon 40 and intron 45 appeared linked to one another without exception. Partial skipping of exon 46 or the low-expression feature, whenever they could be assessed, were invariably observed. Allele alpha LELY appears to be an ancient and stable allele.

Alleles↗

Hereditary elliptocytosis associated with spectrin Le Puy in a Japanese family: ultrastructural aspect of the red cell skeleton.

A dominantly-inherited hereditary elliptocytosis of intermediate severity was recorded in a Japanese family from Yamagata. The condition was associated with a spectrin truncated beta-chain (MW: 214 kD; 31% of total beta-spectrin), and a defect of mutant spectrin as regards tetramerization and phosphorylation. cDNA analysis revealed skipping of exon X, the third-to-last exon of the spectrin beta-gene. At the gene level, a one-base substitution (A-->G) changed position +4 of the 5' donor splice site consensus sequence of intron X. This mutation has been described before in a French kindred, defining spectrin Le Puy. Electron micrographs following quick-freeze deep-etching showed that the skeletal network was disorganized.

Base Sequence↗

A splice site mutation of alpha-spectrin gene causing skipping of exon 18 in hereditary elliptocytosis.

Spectrin Oran (alpha II/21) has been reported previously as a variant of the alpha II domain. Its expression level is low (10% of total spectrin) in heterozygotes denoting a major disadvantage of the mutated alpha-chain dimer or tetramer with respect to their normal counterparts. Spectrin Oran is associated with symptomatic elliptocytosis in the homozygous state. A 1-minute digestion time allowed to perceive a fast trypsin cleavage (not existing normally) after Arg 890 (helix 3 of repeating segment alpha 9). The responsible change was the lack of amino acids 822 to 862 (helix 2 of repeating segment alpha 8). Such a situation fits with the phasing of spectrin according to which mutated helix 2 and distorted helix 3 are adjacent to one another. The internal position of the structural change accounts for the slight self-association defect. The ultimate genetic lesion was a G to A substitution (intronic position-1) in the acceptor splice site of intron 17 resulting in skipping of exon 18. The substitution also created an acceptor splice site 1 base downstream, but the latter was used at a low grade.

Alleles↗

Low expression allele alpha LELY of red cell spectrin is associated with mutations in exon 40 (alpha V/41 polymorphism) and intron 45 and with partial skipping of exon 46.

The alpha V/41 polymorphism of erythroid alpha-spectrin has been characterized initially by an increased susceptibility to proteolysis of the alpha IV-alpha V domain junction (Alloisio N., L. Morlé, J. Maréchal, A.-F. Roux, M.-T. Ducluzeau, D. Guetarni, B. Pothier, F. Baklouti, A. Ghanem, R. Kastally, et al. 1991. J. Clin. Invest. 87:2169-2177). Until now, it has been found associated invariably with a low expression level of the corresponding alpha chain. Among 61 chromosomes investigated in French and North African individuals or kindreds, we observed 19 chromosomes with the alpha V/41 polymorphism. With no single exception, the latter displayed a point mutation in exon 40 (Leu-->Val; CTA-->GTA) at position alpha 1857. According to the triple helical model of spectrin structure, this change accounts for the peptide maps' abnormalities. Sequencing the entire alpha V domain cDNA disclosed, in addition, a partial skipping of exon 46. At the gene level, a substitution (C-->T) was evidenced at nucleotide -12 of intron 45. This mutation appeared linked to the exon 40 mutation in 17 chromosomes, again with no single exception, among 53 examined chromosomes. We hypothesized that the lack of exon 46 would hamper the nucleation process and eventually account for the low expression feature. The present doubly mutated allele was renamed allele alpha LELY (low expression, Lyon).

Alleles↗

Prevalent skipping of an individual exon accounts for shortened protein 4.1 Presles.

An asymptomatic shortened variant of protein 4.1 (-8.5 Kd) was first recognized in the red blood cells and designated protein 4.1 Presles. We show here that the missing segment belongs to the 22/24 Kd domain. Protein 4.1 cDNA from reticulocytes was amplified, mapped, and sequenced. The truncation appeared to result from the prevalent skipping of an individual and alternatively spliced exon, also called motif II, whereas this motif is preferentially retained under normal conditions. The same phenomenon was observed in lympho-blastoid cells. Sequencing over 80 bp of intronic sequences 5' and 3' of motif II failed to reveal any change. A new alternative splice site was incidently found 81 nucleotide downstream of motif II in both normal and truncated 4.1 mRNA.

Amino Acid Sequence↗

Spectrin Jendouba: an alpha II/31 spectrin variant that is associated with elliptocytosis and carries a mutation distant from the dimer self-association site.

Spectrin Jendouba (alpha II/31) was found in a Tunisian family. In the heterozygous state, it is associated with asymptomatic elliptocytosis and a minimal defect in spectrin dimer self-association. On partial digestion of spectrin with trypsin, an abnormal cleavage appeared following Lys 788. Peptide and DNA sequencing indicated that the responsible mutation is alpha 791 Asp----Glu (GAC----GAA). As in most alpha-spectrin variants associated with elliptocytosis, the change alters helix 3 of the proposed triple helical model of spectrin structure. Modified helix 3 in repeat alpha 8 is the most distant from the N-terminus of alpha-spectrin in known variants associated with elliptocytosis.

Alleles↗

Elliptocytogenic alpha I/36 spectrin Sfax lacks nine amino acids in helix 3 of repeat 4. Evidence for the activation of a cryptic 5'-splice site in exon 8 of spectrin alpha-gene.

Elliptocytogenic alpha I/36 spectrin Sfax is a new variant found in a Tunisian family. The alpha I/36 allele yielded a clinically manifest picture only when occurring in trans to a recently identified, low expression level polymorphism referred to as the alpha V/41 allele. Spectrin dimers were slightly increased in 4 degrees C extracts. On peptide maps, the alpha I domain split into two abnormal fragments of 36 and 33 Kd. The mutated alpha-chain represented 20% and 44% of total alpha-chain in alpha/alpha I/36 and alpha V/41/alpha I/36 heterozygotes, respectively. Peptide sequencing showed that the 36-Kd fragment started at Ala 357 and displayed a deletion extending from amino acids 363 to 371. The corresponding 27-nucleotide deletion was found in alpha-spectrin mRNA. However, exon 8 of spectrin alpha-gene failed to disclose this deletion. Instead, an A to G substitution appeared in position 3 of codon 362, leading to the occurrence of the critical GU dinucleotide within a cryptic 5'-splice site surrounding codon 362. This event would account for the splicing out of codons 363 to 371. The reading frame was preserved and even amino acid 362 (AGG, Arg) remained unaltered. As in most spectrin alpha-chain elliptocytogenic variants, the change involved a helix 3. This is the first elliptocytogenic mutation recorded in repeat alpha 4.

Adult↗

Molecular analysis of hereditary elliptocytosis with reduced protein 4.1 in the French Northern Alps.

4.1(-) hereditary elliptocytosis (HE) is a variety of elliptocytosis resulting from the reduction (heterozygosity) or the absence (homozygosity) of protein 4.1. It is nearly always encountered in its heterozygous form. It has been found among Caucasians and North Africans in a sporadic fashion. We report the study on nine family cases of 4.1(-) HE. They were recruited independently (to the exclusion of any other variety of HE) in a limited area around the city of Annecy (French Northern Alps). The mode of genetic transmission, as well as the clinical, morphologic, and protein phenotypes fully conformed to the classical description. Western blots ruled out the existence of any protein 4.1 species of abnormal size. No obvious DNA rearrangement was detectable in any of the nine families with three 4.1 cDNA probes covering the entire coding sequence and part of the flanking 5' and 3' untranslated sequences. On the basis of five polymorphic sites (Bgl II, 2; Pvu II, 3), we found five different haplotypes in normal members of the 4.1(-) families. 4.1(-) HE was associated with the most common haplotype in all the propositi. 4.1 mRNA was studied in four families. Dot-blot hybridization experiments and Northern blots failed to show any detectable change in three families. On the other hand, they showed a 2-kb deletion in the 4.1(-) messenger RNA 5'-moiety in one family. These findings emphasize the heterogeneity of 4.1(-) HE at the molecular level.

Blotting, Southern↗

Sp alpha V/41: a common spectrin polymorphism at the alpha IV-alpha V domain junction. Relevance to the expression level of hereditary elliptocytosis due to alpha-spectrin variants located in trans.

Spectrin alpha-chain mutants associated with hereditary elliptocytosis are highly variable in their level of expression. It has been assumed that the degree of elliptocytosis can be increased when the spectrin alpha chain, encoded by the alpha gene in trans to the variant, is expressed at a low level. We now provide strong evidence for the existence of low-level expression of spectrin alpha chains. This condition is referred to as the alpha V/41 polymorphism. It has been observed in 15 different families or individuals of French, North African, and African ancestry in which seven distinct elliptocytogenic alpha-spectrin variants were co-inherited. Whenever the alpha V/41 polymorphism was present, the severity of the biochemical, morphological, and, sometimes, the clinical phenotype of elliptocytosis was increased. The alpha V/41 polymorphism was also frequently encountered among 36 unrelated control subjects in the heterozygous or homozygous states, and was entirely asymptomatic in both cases. The main biochemical feature was an increased susceptibility to proteolysis of the alpha IV-alpha V domain junction. Alteration of the facing beta IV domain of spectrin was demonstrated by in vitro spectrin dimer reconstitution experiments. It appears that the alpha V/41 polymorphism is often required for alpha-spectrin elliptocytogenic variants to become manifest in the heterozygous state. Thus, alpha-spectrin-related elliptocytosis may be viewed as a bifactorial condition.

Electrophoresis, Gel, Two-Dimensional↗

The laryngeal mask--Liège experience.

The laryngeal mask (LM), a recently commercialized device, provides a totally patent airway when positioned in the hypopharynx. The major advantages of the LM are its ease of insertion, the absence of contact with the vocal cords, and the fact that if frees the hands of the anesthesiologist. Contraindications to its use result from its failure to seal the airway against regurgitation of gastric content. After reviewing the modalities of using the LM, we describe the Liège experience with it. Over two months, 107 anesthetics were administered with the LM, 80 with spontaneous respiration, 22 with controlled ventilation and 5 where the ventilatory mode was changed intraoperatively. 84% of LM were inserted on the first attempt, 14% on the second. The use of the LM was unsuccessful three times. Only 13% of patients complained of mild pharyngeal discomfort postoperatively. We conclude that this device is reliable, easy to use, and causes minimal postoperative problems. Its use, for both spontaneous and controlled ventilation, is increasing in our hospital.

Adolescent↗

Assignment of Sp alpha I/74 hereditary elliptocytosis to the alpha- or beta-chain of spectrin through in vitro dimer reconstitution.

Partial digestion of spectrin dimers in vitro has allowed the definition of domains. For example, the portions of the dimers that are involved in spectrin self-association are represented by the alpha I and the beta I domains. The alpha I domain (80 Kd) is further cleaved into a minor 78 Kd fragment and, more substantially, into a 74 Kd fragment. The intensity of the latter, which we expressed as the 74:(80 + 78 + 74) ratio, or the 74:alpha I ratio, is variable depending on the experimental conditions, eg, in fine, on the conformation of the alpha I domain. A number of cases of hereditary elliptocytosis (HE) are associated with an increase of the 74:alpha I ratio, also referred to as the Sp alpha I/74 abnormality. Several lines of evidence have suggested that the causal mutations may lie in the alpha- or the beta-chain, a point of importance before one undertakes studies at the gene level. In order to address this question, we reconstituted spectrin dimers in vitro, combining alpha- and beta-chains of various origins, and then carried out partial digestion and assayed the Sp alpha I/74 abnormality. The patterns obtained with reconstituted dimers were nearly identical to those of native dimers. We applied the assay to three spectrin variants that cause Sp alpha I/74 HE: (1) a variant that we previously designated spectrin Nice and whose beta-chain lacks a 4 Kd fragment in its C-terminal region; and two distinct variants that we found in two unrelated white families and that we provisionally designated spectrin Lyon and spectrin Culoz. The Sp alpha I/74 abnormality appeared in all kinds of dimers that harbored the beta-chain of spectrin Nice, or the alpha-chain of spectrin Lyon or spectrin Culoz, respectively. Therefore, we confirmed that spectrin Nice is a (alpha I/74) beta-variant, and established that both spectrin Lyon and spectrin Culoz are (alpha I/74) alpha-variants. The present assay may be extended to any spectrin variant displaying the Sp alpha I/74 abnormality.

Adolescent↗

Two distinct variants of erythrocyte spectrin beta IV domain.

We report two distinct variants affecting the beta IV domain of erythrocyte spectrin, designated spectrin Saint-Chamond and spectrin Tlemcen. They were discovered in a French family and an Algerian individual, respectively. They appeared clinically and morphologically asymptomatic in the heterozygous state. In two-dimensional maps of spectrin partial digests, both mutants were manifested by cathodic shifts (with no change of the molecular weights) of the peptides that cover the N-terminal region of spectrin beta IV domain. The relevance of the abnormal peptides to the beta IV domain was established by quantitative analysis and by Western blotting using anti-beta IV domain-specific antibodies. These two variants are thus far the most distal variants of spectrin to be defined on an unequivocal structural basis.

Adult↗

Spectrin Oran (alpha II/21), a new spectrin variant concerning the alpha II domain and causing severe elliptocytosis in the homozygous state.

We report on spectrin Oran (alpha II/21), a new spectrin variant found in an Algerian family. It was characterized by the absence of the spots that classically correspond to the alpha II domain using two-dimensional analysis of spectrin limit digests. On the contrary, the abnormal domain was represented by a new set of spots in the 21-Kd and 16-Kd regions, as demonstrated by Western blots using anti-alpha II domain polyclonal antibodies. Spectrin Oran (alpha II/21) was found in the homozygous state in two children belonging to two separate branches of the family. It yields a severe elliptocytosis. Spectrin self-association was altered. The variant was much more difficult to prove in the heterozygous state, in which it results in no clinical and virtually no morphological symptom. In all four parents involved, however, electrophoretic analysis and Western blots showed the existence of the alpha II 21-Kd and 16-Kd peptides. In one parent, who combines spectrin Oran (alpha II/21) and the alpha II type-2 polymorphism, the two-dimensional spots (52, 39, 34, and 29 Kd) were quantified and appeared reduced by 30%: there was an intermediary decrease of spectrin self-association in this person. In the three other parents, spectrin Oran combined with the alpha II type-1 polymorphism. The alpha II type-1 spots (46, 35, 30, and 25 Kd) appeared in normal range, and spectrin self-association was normal. Along with previous observations, the present data emphasize the large fluctuations of the alpha-variant percentage. Provided spectrin Oran was present in a sufficient proportion, we found an associated alteration of the beta II domain (that faces the alpha II domain in the spectrin dimer): the beta II 65-Kd fragment was reduced and the beta II 52-Kd fragment was reciprocally increased.

Algeria↗

The alkaline phosphatase activity in DBA/2 and A/JAX mouse strains injected with mouse hepatitis virus 3: a morphological and biochemical comparative study.

ALP activity has been studied during hepatitis (infection) in two genetically controlled mouse strains having different degrees of susceptibility ot MHV3 virus: A/JAX (resistant) and DBA/2 (susceptible). During the 8 days following viral infection we have compared ALP activity in serum and liver homogenates with ALP cytological localization in liver tissue (light and electron microscopy). Firstly, liver ALP activity has been demonstrated in the Disse's spaces, on the membrane of the hepatocytes microvilli whilst serum ALP was still very low. The serum ALP activity begins to increase markedly since the third day in sensitive mice (DBA/2), i.e., when the electron microscopy hepatocytes look very damaged; hepatocytes have lost most of their microvilli; necrotic vesicles, degenerative cytoplasmic organelles, lipid vesicles occurred in numerous hepatocytes. ALP activity has disappeared at the biliary pole of the cells whilst it increased at the vascular pole. Moreover, electron microscopic studies demonstrated that ALP positive cells are exclusively of lymphoid type whereas Kupffer cells remain ALP negative.

Alkaline Phosphatase↗