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Biomedical subjects

C Féo

Publications and source records attributed to C Féo.

At least 19 recordsLinked to original sources

A nonsense mutation in the erythrocyte band 3 gene associated with decreased mRNA accumulation in a kindred with dominant hereditary spherocytosis.

We studied a French kindred with typical hereditary spherocytosis (HS). Studies of erythrocytes and erythrocyte membranes from HS individuals revealed abnormal erythrocyte membrane mechanical stability as well as 15-20% deficiency of band 3, the anion transporter. Anion transport studies of red cells from two affected individuals revealed decreased sulfate flux. Nucleotide sequence of cDNA encoding the distal third of the cytoplasmic domain and the entire transmembrane domain of band 3 obtained by RT-PCR of reticulocyte RNA of an affected family member was normal. Sequence analysis of genomic DNA from an HS individual identified a nonsense mutation of the band 3 gene, Q330X, near the end of the band 3 cytoplasmic domain. This mutation was present in genomic DNA of all HS family members and absent in DNA of unaffected family members. Using an RT-PCR-based assay, a marked quantitative decrease in accumulation of the mutant band 3 RNA was detected. Thus the codon 330 nonsense mutation is responsible for the decreased accumulation of mutant band 3 RNA and the deficiency of band 3 protein in this kindred. These results have important implications for the role of band 3 defects in the membrane pathobiology of HS as well as for the techniques used in detection of HS mutations.

Anion Exchange Protein 1, Erythrocyte↗

Familial isolated vitamin E deficiency. Extensive study of a large family with a 5-year therapeutic follow-up.

A major neurological deterioration, beginning with ataxia, led to the diagnosis of familial vitamin E deficiency in a girl. Based upon vitamin E determinations, 4/8 members of the (consanguineous) sibship were considered to be homozygous. Homozygosity was also found for the alleles of six markers linked to the AVED locus, recently identified in similar Tunisian or Sicilian families on chromosome 8q. Measures of vitamin E in lipoprotein fractions and in liver biopsy after vitamin E oral load suggested that free diffusion of vitamin E between the different compartments was possible and even increased. However, a high-affinity ligand seemed to be lacking, either in the hepatic recycling of vitamin E or in both the hepatic and the other vitamin E compartments. The 5-year substitutive treatment was successful only in the pre- or paucisymptomatic patients. Serum vitamin E must be measured in any unexplained progressive ataxia.

Adolescent↗

Bepridil as an antisickling agent: membrane internalization and cell rigidity.

The calcium channel antagonist, bepridil, beta-(2-methylpropoxy)methyl-N-phenyl-N-(phenylmethyl)-1-pyrrol idineethanamine monochloride monohydrate, inhibits the sickling of deoxygenated sickle (SS) erythrocytes, as determined by light microscopy. The anti-sickling effect was seen only in dilute suspensions of red cells. In concentrated erythrocyte suspensions, sickling was not inhibited and measurements of hematocrit and cell density were unchanged by bepridil. The determination of cell volume in dilute suspensions was complicated by bepridil's tendency to aggregate, but rapid measurements by electronic sizing also indicated no increase in cell volume, up to a bepridil concentration of 200 microM. Ektacytometry of dilute sickle cell suspensions suggested an explanation for the anti-sickling action of bepridil. Osmotic scan ektacytometry disclosed that bepridil initially increased the surface area of the red cell, as shown by a shift in the low osmolality minimum. This change was complete in 10 sec, the shortest time that could be measured. Subsequently, at concentrations that were observed to inhibit the sickling of deoxygenated sickle cells (100 microM or greater), red cells underwent a loss in surface area that was complete in 1 min. There was a concomitant loss of cell deformability. Light and scanning electron microscopy has previously shown that bepridil is a stomatocytic agent. Using transmission electron microscopy, we verified that the loss of surface area was a consequence of endocytosis, presumably as the end stage of the stomatocytic transformation induced by bepridil. Bepridil did not inhibit intracellular hemoglobin S polymerization even at 200 microM, as shown by oxygen scan ektacytometry. Bepridil thus appears to inhibit the sickling of deoxygenated SS cells by inducing endocytosis and lowering cell deformability. This mechanism may explain the anti-sickling effect of other basic amphiphiles, such as chlorpromazine.

Anemia, Sickle Cell↗

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↗

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↗

Hereditary pyropoikilocytosis and elliptocytosis in a white French family with the spectrin alpha I/74 variant related to a CGT to CAT codon change (Arg to His) at position 22 of the spectrin alpha I domain.

We describe a white French family in which 12 subjects presented with hereditary elliptocytosis (HE) or hereditary pyropoikilocytosis (HPP). Eight of these subjects were shown to be heterozygous for a spectrin (Sp) alpha I/74 variant, as demonstrated by analysis of partial tryptic digestion fragments of spectrin. This abnormal peptide pattern was associated with a decreased ability of Sp dimers to self-associate. In this kindred, in which four generations were available for study, the clinical expression varied from mild HE to HPP with an intermediate status of hemolytic HE. The severity of the disease appeared to be correlated both with the estimated amount of variant Sp (42% to 65%) and the excess of Sp dimers found in the membrane (30% to 51%, with a normal value of 3.7% +/- 1.6%). Reassociation studies using isolated Sp alpha and beta chains from an affected patient and an unaffected control subject showed that the Sp alpha I/74 Kd abnormal tryptic peptide resulted from a defect in the Sp alpha chain. Partial amino acid sequencing showed that the Sp alpha I/74 Kd peptide resulted from cleavage at lysine residue 42 of the Sp alpha I/80 Kd domain. Knowledge of the exon/intron organization of the human alpha Sp gene allowed us to amplify by the polymerase chain reaction the second exon of the alpha Sp gene in total cellular DNA of the HPP proposita. The amplified fragment was subcloned and sequenced. We found a G to A base substitution in the 22nd codon (CAT for CGT), which changes the normal arginine to a histidine. Hybridization of amplified DNAs with allele-specific oligonucleotides corresponding to the normal and mutant sequences confirmed the presence of the mutation in six other HE and HPP members of the family. The identification of this mutation at the DNA level confirmed the transmission of the same molecular defect in Sp through four generations but with different patterns of clinical expression.

Adult↗

Sp alpha I/78: a mutation of the alpha I spectrin domain in a white kindred with HE and HPP phenotypes.

Limited tryptic digestion of spectrin (Sp) from seven related individuals manifesting hereditary elliptocytosis (HE) or hereditary pyropoikilocytosis (HPP) phenotypes revealed the presence of a novel peptide with a molecular weight of 78 Kd and a concomitant decrease in the alpha I domain (80-Kd peptide), which is the domain involved in the dimer self-association process. Sp from the normal members of this white family exhibited a normal peptide pattern, as compared with controls. The abnormal peptide pattern was associated with a decreased ability of Sp dimer to self-associate. In this kindred in which three generations were available for study, the clinical manifestations were quite variable and ranged from the asymptomatic HE carrier state to hemolytic HE or to severe anemia requiring splenectomy. The severity of the disease appeared to be correlated both with the amount of mutant spectrin (31% to 69%) and with the excess of the Sp dimer found in the membrane (26% to 60%, compared with a normal value of 5.6% +/- 2.2%). Partial amino acid sequencing showed that the alpha I/78-Kd peptide resulted from cleavage at lysine residue 10 of the alpha I/80-Kd domain. Knowledge of the exon/intron structure of cloned genomic DNA encoding the alpha I domain allowed us to amplify in vitro a DNA fragment containing the third exon of the alpha-spectrin gene. The amplified fragment was subcloned and sequenced. A G to T transversion was found in the 39th codon (AGT for AGG), which changed the normal arginine to a serine. Hybridization of amplified DNAs with allele-specific oligonucleotides corresponding to the normal and mutant sequences confirmed the presence of the mutation in three other HE members of the family (the propositus mother, brother, and sister).

Adult↗

Reduction of membrane band 7 and activation of volume stimulated (K+, Cl-)-cotransport in a case of congenital stomatocytosis.

We report on a case of congenital stomatocytosis in a French boy presenting with a haemolytic anaemia requiring splenectomy at the age of 6. The red cells included 15-20% stomatocytes and displayed a marked increase of volume. Their osmotic resistance and density were reduced; however, their deformability was unaltered in isotonicity. Erythrocyte Na+ was high (27 mEq/l) and K+ low (65 mEq/l). The newly described (K+, Cl-)-cotransporter normally triggered by hypo-osmotic stress, was activated to maximal capacity. Membrane band 7 was reduced by 72%. From anamnestic data, the condition appears to have been transmitted by the father. The mother proved to be strictly normal on clinical, morphological, osmotic and biochemical bases. We suggest that the partly missing band 7 may play an important role in the genesis of stomatocytosis.

Anemia, Hemolytic, Congenital↗

Aberrant pattern of red cell membrane and cytosolic proteins in a case of congenital dyserythropoietic anaemia.

We report an unusual case of congenital dyserythropoietic anaemia (CDA). The propositus is a 25-year-old gipsy female presenting with a recessively inherited haemolytic anaemia. The diagnosis of CDA was based on erythrokinetic data and the morphological appearance of the erythroid precursors. The direct assay of HEMPAS antigen was negative. In peripheral blood there were 15% dacryocytes. The red cell membrane protein pattern was dramatically altered, with four major aberrant bands. Band a (mol wt 86,000) was at the lower edge of band 3, band b (mol wt 82,000) was below band 3, band c (68,000) and band d (67,000) were below band 4.2. In addition, there was an array of aberrant minor bands below band d. Gel densitometric determinations and immunological characterization showed that these bands did not derive from any of the major components of the membrane. In fact, membrane proteins appeared normal in many respects, although periodic acid-Schiff staining revealed an apparent decrease of sialoglycoproteins. The major aberrant bands a, b and c occur in very low amounts in controls. These bands, as well as band d, also exist in normal cytosol and were strongly increased in the propositus.

Adult↗

Red cell membrane alteration involving protein 4.1 and protein 3 in a case of recessively inherited haemolytic anaemia.

We present 2 siblings with a severe congenital haemolytic anaemia. Red cells displayed a variety of abnormal shapes, including leptocytes, schizocytes and elliptocytes. Repeatedly, skeletal protein 4.1 appeared reduced by 30%. The 4.1a/4.1b ratio was normal despite the haemolytic state. No change could be detected in spectrin, nor in sialoglycoproteins. Band 3 was denser, narrower and displaced downward. The parents, who are consanguineous, were devoid of any obvious biochemical abnormality; however, their red cells were not normal. These 2 cases with reduced protein 4.1 clearly depart from 4.1 (-) hereditary elliptocytosis. The possibility of an altered binding of protein 4.1 to some other membrane component is discussed.

Adolescent↗

Spectrin Nice (beta 220/216): a shortened beta-chain variant associated with an increase of the alpha I/74 fragment in a case of elliptocytosis.

We describe a new spectrin variant with a truncated beta-chain. It was discovered in a 17-year-old white boy presenting with intermittent jaundice and spleen enlargement. He also displayed numerous smooth elliptocytes. On sodium dodecyl sulfate-polyacrylamide gel, the truncated beta-chain (beta'-chain) appeared as an additional band of approximately 216 kilodaltons, migrating between spectrin beta-chain and ankyrin. It represented 30% of total beta-chain. The beta'-chain reacted with an antispectrin beta-chain monoclonal antibody. It failed to become phosphorylated when ghosts were incubated in the presence of [gamma-32P] adenosine triphosphate. Whole spectrin tetramerization was defective since the amount of spectrin dimer was increased in spectrin crude extract and the association constant of the spectrin dimer self-association was decreased. Spectrin whole tetramer isolated from spectrin crude extracts contained small quantities of beta'-chain. Spectrin tryptic peptides showed an increase of the 74,000-dalton fragment at the expense of the 80,000-dalton fragment. So far, the latter abnormality has been used to characterize a number of cases of hereditary elliptocytosis or pyropoikilocytosis with no other apparent change. In the present case, we consider that the abnormality is a consequence of the beta-chain alteration. The parents seemed asymptomatic. As a result, we regard this new spectrin variant as deriving from a de novo mutation.

Adolescent↗

Hereditary elliptocytosis: clinical, morphological and biochemical studies of 38 cases.

We report clinical, morphological and biochemical studies performed on 38 cases of hereditary elliptocytosis (HE). The major determinant of membrane shape and stability is a proteinaceous meshwork named membrane skeleton, composed mainly of spectrin, actin, protein 4.1 and ankyrin. Spectrin is a heterodimer composed of two chains alpha and beta. Two spectrin dimers associate head to head to form a tetramer. Spectrin tetramers are cross-linked by actin and protein 4.1 to form the skeletal meshwork. We observed two types of membrane defects in the 38 patients studied: 24 patients (13 kindreds) exhibited spectrin self-association defect (type I HE) and 14 patients (6 kindreds) displayed deficiency in protein 4.1. A mutation in the spectrin chain was mostly found in the cases of type I HE. These mutations were depicted on tryptic digest patterns of spectrin. Three pathological variants were thus identified and characterized by the appearance of an abnormal peptide, with a molecular weight of either 74,000 or 65,000, or 46,000 daltons. In one family, the spectrin self-association defect was related to a shortened spectrin beta chain. Deficiency in protein 4.1 was found in 14 patients by means of polyacrylamide gel electrophoresis of red cell membranes. In 12 heterozygous cases of HE, the decrease in the amount of protein band 4.1 was between 40% and 50%. In 2 homozygous HE cases, protein band 4.1 was totally absent. Immunoelectrotransfer blots of red cell membrane proteins using a monoclonal antibody against protein 4.1 allowed characterization of additional bands in two families. In some cases variations in the amount of glycophorin C were noticed. Comparative studies of the two types of membrane abnormalities in HE clearly showed the absence of correlation between clinical, morphological phenotypes, and specific molecular etiology. However, all HE patients with protein 4.1 deficiency were caucasian and most of the type I HE were of black extraction. A study of red cell deformability using an ektacytometer revealed that the cell deformability under isotonic conditions was decreased in all HE patients. When the deformability was studied as a function of the osmolality of the suspending medium, the curve obtained had a trapezoid shape. This typical profile appeared to be constant in type I HE. We showed that the molecular abnormalities of the spectrin alpha chain, found in most type I HE correlated well with the functional spectrin defect.(ABSTRACT TRUNCATED AT 400 WORDS)

Black People↗

A new abnormal variant of spectrin in black patients with hereditary elliptocytosis.

Seven black patients with mild hereditary elliptocytosis (HE) from five unrelated families were studied. The erythrocytes of these patients exhibited an abnormal thermal sensitivity (between 45 degrees C and 47 degrees C instead of 49 degrees C). An important defect of spectrin dimer self-association was detected in two ways: (1) the proportions of spectrin dimer (SpD) extracted from membranes at 4 degrees C under low ionic strength conditions were increased between 25% and 56% (normal value 15% +/- 2%); (2) the spectrin dimer----tetramer conversion in solution were defective with an association constant value between 0.4 and 2.4 X 10(5) M-1 for a normal value of 6 +/- 0.4 X 10(5) M-1. Spectrin (Sp) from HE patients and normal volunteers (32 black and 22 white subjects) was submitted to limited tryptic digestion, followed by one- or two-dimensional separation of the peptides. Peptide patterns of crude Sp from all seven HE patients exhibited a marked and reproducible decrease in 80,000-dalton peptide (previously identified as the dimer-dimer interaction domain of the alpha-chain) and a concomitant appearance of a novel 65,000-dalton peptide. A minor fragment at 28,000 daltons was also decreased. Tryptic digestion of HE spectrin dimer and tetramer (SpT), isolated after the SpD self-association procedure in solution, revealed modifications (decrease in the 80,000-dalton peptide and presence of a 65,000-dalton peptide) predominantly in HE SpD when peptide patterns of HE SpT were quite similar to control SpT patterns. Immunoblots with anti-alpha-chain antibodies revealed that the 65,000-dalton peptide derived from the alpha-chain. Kinetic studies of Sp digestion showed that the 65,000-dalton peptide did not result from further digestion of a 74,000 intermediate and was not a precursor of 46,000- to 50,000-dalton peptides. These results show a new structural defect of Sp-alpha-chain, associated with a defective Sp dimer self-association in HE.

Adult↗

A variant of erythrocyte membrane skeletal protein band 4.1 associated with hereditary elliptocytosis.

A family comprising three patients (a mother and two children) with mild hereditary elliptocytosis was studied. Each patient had prominent elliptocytosis, reduced red cell deformability, and normal erythrocyte thermal sensitivity. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) of the erythrocyte membranes in each patient showed decreased levels of band 4.1 (approximately half of the normal value) and the presence of an additional band migrating below protein band 4.2. This additional band was shown to derive from protein 4.1. Comparative partial proteolytic mapping of protein 4.1 and the additional band revealed a number of common peptides. Enzyme-linked immunoelectrotransfer blots of the patients' erythrocyte membranes using a monoclonal antibody to protein 4.1 revealed that, in addition to protein 4.1, two other bands below protein 4.2 were stained; one of these bands migrated in the same position as the additional band detected in the Coomassie Blue-stained gels. Immunoblotting of the patients' whole cells using the antibody to protein 4.1 revealed that this altered band 4.1 occurred as such in the intact red cell. SDS-PAGE of protein 4.1 purified from one patient showed the presence of two lower molecular weight bands below protein 4.1; the lower band migrated in the same position as the additional band found on SDS-PAGE of the patients' erythrocyte membranes. The patient's purified protein 4.1 displayed a decrease of about 40% in the binding activity with crude spectrin extracted from normal controls. Spectrin-spectrin interactions were normal in the three patients. The additional band present in the patients' red cell membranes probably represents a proteolytic degradation product. This alteration, present both in whole cells and isolated membranes, might affect the intact cells in vivo. We suggest that the patients' erythrocyte membrane instability may be related to the presence of an abnormal protein 4.1 whose modulatory influence on the spectrin-actin interaction in the skeleton is defective.

Adult↗

[Congenital hemolytic anemia with erythrocyte thermal instability and defect of spectrin tetrameric polymerization. Study of erythrocyte deformability in a new case of hereditary pyropoikilocytosis using diffraction viscosimetry].

Hereditary pyropoikilocytosis (HPP) is a rare congenital hemolytic anaemia observed so far in patients of black extraction. In many cases, the severity of the anaemia has led to early splenectomy, which uniformly improved the hematological conditions. The disease is characterized by extreme anisocytosis and poikilocytosis with erythrocyte fragmentation. The pathognomonic feature is the abnormal thermal sensitivity of red cells which fragment in vitro at 45-46 degrees C (instead of 49 degrees C in normal subjects). In the case reported here, erythrocyte fragmentation (which appears at 43 degrees C) and increased osmotic fragility are studied using the Ektacytometer. Observation of different erythrocyte fractions isolated by differential centrifugation shows the extreme heterogeneity of the erythrocyte population. Studies of erythrocyte membrane proteins confirm that the disease is related to defective dimer-dimer association of spectrin which is the major membrane skeletal protein. This molecular spectrin abnormality in accounting for the membrane instability is recognized to a lesser degree in the asymptomatic mother. This may be of use in the diagnosis of HPP which is difficult to establish in a transfusion-dependent infant.

Anemia, Hemolytic, Congenital↗