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Biomedical subjects

S Lyonnet

Publications and source records attributed to S Lyonnet.

At least 145 records · Page 8Linked to original sources

Upper limb malformations in DiGeorge syndrome.

We report on upper limb anomalies in two children with a complete DiGeorge sequence: conotruncal defects, hypocalcemia, thymic aplasia, and facial anomalies. One child had preaxial polydactyly, and the other had club hands with hypoplastic first metacarpal. In both patients, molecular analysis documented a 22q11 deletion. To our knowledge, limb anomalies have rarely been reported in DiGeorge syndrome, and they illustrate the variable clinical expression of chromosome 22q11 deletions.

Chromosome Deletion↗

Exclusion of RET and Pax 3 loci in Waardenburg-Hirschsprung disease.

The RET and the Pax 3 genes have recently been shown to account for autosomal dominant Hirschsprung's disease (HSCR) and Waardenburg syndrome type 1 (WS1) respectively, which led us to consider them as candidate genes in the WS/HSCR association. Linkage analyses performed in a consanguineous WS/HSCR family support the view that neither the RET locus nor the Pax 3 locus are involved in the disease phenotype. Hence, at least one further locus altering neural crest cell development is responsible for the pleiotropic features observed in the WS/HSCR association.

Consanguinity↗

Filippi syndrome: a new case with skeletal abnormalities.

We report on a 9 year old girl, born to consanguineous parents, with major microcephaly, cutaneous syndactyly of the toes, and moderate mental retardation with marked speech involvement. In addition, moderate dysmorphic features and skeletal abnormalities were noted. This multiple congenital anomalies/mental retardation pattern very much resembles that described by Filippi. This observation confirms that this syndrome is a distinct, probably autosomal recessive entity.

Abnormalities, Multiple↗

[Gene localisation in 12q12 in Holt-Oram atrio-digital syndrome].

The Holt-Oram syndrome, first described in 1960, consists of non-cyanotic congenital heart disease, usually an atrial septal defect, arrhythmias and malformations of the upper limbs affecting the radial segment. The transmission of the syndrome is autosomal dominant with almost complete penetrance. The authors report the localisation of a genetic abnormality of the Holt-Oram syndrome on the long arm of chromosome 12 (12q21-q3) by analysis of linkage in 9 multiplex families (Zmax = 8.19 at locus D12S354). Multipoint analysis showed a genetic interval of 7 centimorgans containing a gene of the Holt-Oram syndrome between loci D12S84 and D12S79 (multipoint lod score, 10 g base 10 = 8.96). In situ hybridization of artificial yeast chromosomes containing the surrounding markers showed that a gene of the Holt-Oram syndrome is located in 12q23-q24. The genetic heterogeneity was demonstrated in 3 families of the Holt-Oram syndrome with polydactyly or without cardiac disease (homog-test: chi 2 = 13.28; p = 0.0001). The localisation of a gene of the Holt-Oram syndrome is, to the authors' knowledge, the first chromosomal localisation of a cardiac malformation with septal defects in man. The identification of this gene should open wide perspectives for genetic research of cardiac morphogenesis and clarify the molecular mechanisms which govern cardiac septation during embryogenesis.

Chromosome Mapping↗

Second locus for Hirschsprung disease/Waardenburg syndrome in a large Mennonite kindred.

We have studied a large Mennonite kindred in which 20 members were affected with Hirschsprung disease (HSCR), 5 of whom had one or more manifestations of Waardenburg syndrome (WS) type II (WS2). Eleven additional relatives had signs of WS2 without HSCR. Since HSCR and WS2 each represent perturbations of neural crest migration/differentiation, this large pedigree with apparent cosegregation of HSCR and WS2 offered an opportunity to search for linkage between these loci, candidate genes, and random DNA markers, particularly in view of recent discoveries of genes for Waardenburg syndrome type I (WS1) and Hirschsprung disease (c-ret). We have examined the following possible linked markers in 69 relatives in this family: the c-ret gene (HSCR); the human PAX3 gene (HuP2) on chromosome 2q (WS1) and placental alkaline phosphatase (ALPP) on chromosome 2q (linked to WS1); argininosuccinate synthetase (ASS) on chromosome 9q, close to ABO blood groups which have shown weak linkage to WS; and the beta 1 GABA receptor gene (GABARB1) on chromosome 4q13-11, close to c-kit, deletions of which cause piebaldism. Linkage between any of these loci and HSCR/WS in this kindred was excluded, demonstrating that there is at least one further locus for HSCR other than c-ret.

Christianity↗

Apparent genetic homogeneity of the Treacher Collins-Franceschetti syndrome.

The Treacher Collins-Franceschetti syndrome (TCOF) or mandibulofacial dysostosis (MFD) is an autosomal dominant disorder characterized by craniofacial abnormalities and hearing loss. A refined genetic linkage map of the TCOF locus was established in 8 independent families, using 12 microsatellite DNA markers of the distal 5q. Positive lod score values were obtained for all markers with a maximum at the D5S413 locus (Zmax = 3.79 at theta = 0%). Multipoint linkage analysis and haplotype analysis supported the location of the gene between loci D5S434 and D5S412. These results are consistent with previous linkage analyses [Dixon et al.: Am J Hum Genet 49:17-22, 1991, Am J Hum Genet 52:907-914, 1993; Jabs et al.: Genomics 11:193-198, 1991, Genomics 18:7-13, 1993] and provide further evidence of genetic homogeneity in this syndrome.

Chromosomes, Human, Pair 5↗

Three new cases of the Schinzel-Giedion syndrome and review of the literature.

Three fetuses with normal chromosomes were found to have uni- or bilateral hydronephrosis during the third trimester of pregnancy. At birth, they presented with coarse face, hypertelorism, and a deep groove under the eyes. Fontanelles and sutures were wide open. Genital abnormalities were present in 2 cases. Skeletal radiographs showed delayed bone maturation, broad and dense ribs, and a wide synchondrosis between the exoccipital and supraoccipital bones. The combination of such findings suggested the diagnosis of Schinzel-Giedion syndrome. Two patients died soon after birth, whereas the third one developed severe mental and motor retardation with seizures and spasticity, and died at 18 months. Schinzel-Giedion syndrome is rare and likely to be inherited as an autosomal recessive trait. So far, 13 well-documented cases have been reported allowing major and minor traits of the syndrome to be distinguished. Since no genetic marker is available, the prenatal diagnosis of Schinzel-Giedion syndrome relies on ultrasound examination, especially detection of renal abnormalities.

Abnormalities, Multiple↗

Mutations of the RET proto-oncogene in Hirschsprung's disease.

Hirschsprung's disease (HSCR) is a common condition (1 in 5,000 live births) resulting in intestinal obstruction in neonates and megacolon in infants and adults. This disease has been ascribed to the absence of autonomic ganglion cells, which are derived from the neural crest, in the terminal hindgut. Segregation analyses have suggested incompletely penetrant dominant inheritance in familial HSCR. Recently, a gene for HSCR has been mapped to chromosome 10q11.2 (refs 6, 7). No recombination was observed between the disease locus and the locus for the RET proto-oncogene, a protein tyrosine kinase gene expressed in the cells derived from the neural crest. Here we report nonsense and missense mutations in the extracellular domain of RET protein (exons 2, 3, 5 and 6) in six unrelated probands and show that the mutant genotypes segregate with the disease in HSCR families. Mutations of RET have been previously reported in multiple endocrine neoplasia type 2A (MEN 2A). Thus, germ-line mutations of the RET gene may contribute either to developmental anomalies in HSCR or to inherited predisposition to cancer in MEN 2A.

Base Sequence↗

Molecular genetic characterization and urinary excretion pattern of metabolites in two families with MCAD deficiency due to compound heterozygosity with a 13 base pair insertion in one allele.

Two families with medium-chain acyl-CoA dehydrogenase (MCAD) deficiency due to compound heterozygosity are described. All patients have a 13 bp insertion in exon 11 of one allele at the MCAD gene locus. In the other allele patients in one of the families harbour the prevalent G985 mutation, and the other family possess an unidentified mutation causing reduced levels of MCAD mRNA. We demonstrate that the disease in these families is inherited as an autosomal recessive trait. Individuals heterozygous for the mutations show heterozygous/control levels of beta-oxidation activities in cultured fibroblasts (9.1-16.3 pmol/min per mg protein; control 10-17 pmol/min per mg protein), and in the excretion of the 'beta-oxidation metabolites', hexanoylglycine (< 2 mumol/mmol creatinine), suberylglycine (< 2 mumol/mmol creatinine) and phenylpropionylglycine (< 2 mumol/mmol creatinine). This shows that there is no 'negative dominance' from the mutant monomeric protein onto the normal ones, in accordance with the finding of low levels of MCAD mRNA from the allele harbouring the 13 bp insertion as well as the allele with the unidentified mutation, and the low steady-state level of enzyme protein expressed from the G985-bearing allele. In the family possessing the G985 and the 13 bp insertion mutations, two asymptomatic compound heterozygous individuals were detected. They exhibited elevated excretion of hexanoylglycine (5-15 mumol/mmol creatinine) and suberylglycine (4-13 mumol/mmol creatinine), together with beta-oxidation activity in fibroblasts in the homozygous range (2.9 pmol/min per mg protein), showing a lack of correlation between the genotype, some biochemical parameters and the clinical phenotype.

Acyl-CoA Dehydrogenase↗

Diverse phenotypes associated with exon 10 mutations of the RET proto-oncogene.

Mutations of the RET proto-oncogene are the underlying cause of some cases of Hirschsprung disease (HSCR) and the inherited cancer syndromes multiple endocrine neoplasia types 2A (MEN 2A) and 2B (MEN 2B) and familial medullary thyroid carcinoma (FMTC). In HSCR these mutations are dispersed throughout the gene, while in MEN 2A and FMTC, they are tightly clustered in five cysteine codons of the RET extracellular domain. HSCR and MEN 2 are usually distinct but occasional families have been reported with both diseases. In each of five families with HSCR with or without MEN 2A or FMTC, we have identified a nucleotide substitution in one of the five cysteine codons previously associated with MEN 2A or FMTC. In one family, which had HSCR as its only phenotype, we detected a Cys-->Trp mutation at codon 609 which had not been previously observed. In three families, both HSCR and MEN 2A were associated with a single Cys-->Arg mutation at either codon 618 or 620 of RET. In the fifth family, FMTC and HSCR were present but we could not determine whether HSCR arose from mutation of the RET locus. We suggest that specific mutations in cysteine codons 618 and 620 result in MEN 2A or FMTC, but can also predispose to HSCR with low penetrance.

Base Sequence↗

Disseminated superficial porokeratosis in a patient with AIDS.

We report the case of a 50-year-old male homosexual suffering from AIDS, who developed diffuse annular hyperkeratotic lesions on the arms and legs. Histopathological examination revealed typical features of porokeratosis, which clinically was of the disseminated superficial type. Ultrastructural examination showed a paucity of keratohyalin granules and lamellar bodies. Immunohistochemical studies showed an almost complete absence of Langerhans cells in lesional epidermis. Involucrin and filaggrin expression were altered in areas of cornoid lamella formation, whereas basal keratinocytes in these areas expressed PCNA/cyclin and, to a lesser degree, p53 protein. Porokeratosis may affect immunocompetent patients, but has also been reported in the setting of immunosuppression following organ transplantation. As far as we are aware, the development of porokeratosis during the course of HIV infection has not been reported previously.

Acquired Immunodeficiency Syndrome↗