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Biomedical subjects

S Amselem

Publications and source records attributed to S Amselem.

At least 37 records · Page 2Linked to original sources

Mutations in LHX3 result in a new syndrome revealed by combined pituitary hormone deficiency.

Combined pituitary hormone deficiency (CPHD) has been linked with rare abnormalities in genes encoding transcription factors necessary for pituitary development. We have isolated LHX3, a gene involved in a new syndrome, using a candidate-gene approach developed on the basis of documented pituitary abnormalities of a recessive lethal mutation in mice generated by targeted disruption of Lhx3 (ref. 2). LHX3, encoding a member of the LIM class of homeodomain proteins, consists of at least six exons located at 9q34. We identified a homozygous LHX3 defect in patients of two unrelated consanguineous families displaying a complete deficit in all but one (adrenocorticotropin) anterior pituitary hormone and a rigid cervical spine leading to limited head rotation. Two of these patients also displayed a severe pituitary hypoplasia, whereas one patient presented secondarily with an enlarged anterior pituitary. These LHX3 mutations consist of a missense mutation (Y116C) in the LIM2 domain at a phylogenetically conserved residue and an intragenic deletion predicting a severely truncated protein lacking the entire homeodomain. These data are consistent with function of LHX3 in the proper development of all anterior pituitary cell types, except corticotropes, and extrapituitary structures.

Abnormalities, Multiple↗

Clinical versus genetic diagnosis of familial Mediterranean fever.

The diagnosis of familial Mediterranean fever (FMF) has until recently been based on clinical signs alone. Discovery of the MEFV gene has enabled a molecular approach to diagnosis, which is already well established for diagnosing typical clinical forms of FMF. We evaluated the utility of this molecular approach in a large series of patients with various clinical presentations and ethnic origins. We looked for mutations in the MEFV gene in 303 unselected consecutive patients with a variable (from high to low) clinical suspicion of FMF. Two mutations were found in 133 patients (44%). In 22 patients (7%), the clinical diagnosis of FMF was unlikely according to the Tel Hashomer clinical criteria. Our results suggest that the spectrum of FMF-associated signs is broader than previously believed. Wider indications for genotyping should lead to more frequent diagnosis of FMF.

Adolescent↗

Liver iron accumulation in patients with chronic active hepatitis C: prevalence and role of hemochromatosis gene mutations and relationship with hepatic histological lesions.

BACKGROUND/AIMS: Liver iron accumulation has been described in patients with chronic active hepatitis (CAH) C, and could play a role in the course of liver disease and negatively influence the response to interferon. The aim of this study was to determine the prevalence and severity of liver iron accumulation in CAH C, to assess its relationship with the HFE C282Y and H63D mutations, and to study its interactions with hepatic histological lesions. METHODS: Two hundred and nine patients (131 men, 78 women, mean age 44.3+/-12.0 years) with CAH C, including 19 patients with cirrhosis (9.1%) were studied. A semiquantitative grading system from 0 to 3 was used for histological assessment of liver iron accumulation on Perls' staining. The HFE C282Y and H63D mutations were screened for by restriction enzyme analysis performed on PCR-amplified products. Histological scores of activity and fibrosis were determined according to a previously validated METAVIR score system. RESULTS: Liver iron accumulation was found in 88/209 patients (42.1%), and was generally mild. The C282Y and H63D allele frequencies were in 23 (11.0%), and 50 (23.9%), respectively. No association was found between the presence of liver iron accumulation and the detection of the C282Y and H63D mutations. A significant relationship was found between the severity of histological activity and liver iron accumulation of macrophagic or mixed (i.e. both macrophagic and hepatocytic) type (p = 0.04). Although the number of cirrhotic patients was small, cirrhosis was more frequently observed in patients with than without liver iron accumulation (17.2% vs. 3.3%, p = 0.004). CONCLUSIONS: Overall, these data suggest that the liver iron accumulation in patients with CAH C is significantly associated with histological activity and cirrhosis, whereas the two missense hemochromatosis gene mutations are not major determinants.

Adult↗

MEFV-Gene analysis in armenian patients with Familial Mediterranean fever: diagnostic value and unfavorable renal prognosis of the M694V homozygous genotype-genetic and therapeutic implications.

Familial Mediterranean fever (FMF) is a recessively inherited disorder that is common in patients of Armenian ancestry. To date, its diagnosis, which can be made only retrospectively, is one of exclusion, based entirely on nonspecific clinical signs that result from serosal inflammation and that may lead to unnecessary surgery. Renal amyloidosis, prevented by colchicine, is the most severe complication of FMF, a disorder associated with mutations in the MEFV gene. To evaluate the diagnostic and prognostic value of MEFV-gene analysis, we investigated 90 Armenian FMF patients from 77 unrelated families that were not selected through genetic-linkage analysis. Eight mutations, one of which (R408Q) is new, were found to account for 93% of the 163 independent FMF alleles, with both FMF alleles identified in 89% of the patients. In several instances, family studies provided molecular evidence for pseudodominant transmission and incomplete penetrance of the disease phenotype. The M694V homozygous genotype was found to be associated with a higher prevalence of renal amyloidosis and arthritis, compared with other genotypes (P=.0002 and P=.006, respectively). The demonstration of both the diagnostic and prognostic value of MEFV analysis and particular modes of inheritance should lead to new ways for management of FMF-including genetic counseling and therapeutic decisions in affected families.

Adolescent↗

Evaluation of parental mitochondrial inheritance in neonates born after intracytoplasmic sperm injection.

Intracytoplasmic sperm injection (ICSI) is now used when severe male-factor infertility has been documented. Since defective mitochondrial functions may result in male hypofertility, it is of prime importance to evaluate the risk of paternal transmission of an mtDNA defect to neonates. DNA samples from the blood of 21 infertile couples and their 27 neonates born after ICSI were studied. The highly polymorphic mtDNA D-loop region was analyzed by four PCR-based approaches. With denaturing gradient gel electrophoresis (DGGE), which allows 2% of a minor mtDNA species to be detected, the 27 newborns had a DGGE pattern identical to that of their mother but different from that of their father. Heteroplasmy documented in several parents and children supported an exclusive maternal inheritance of mtDNA. The parental origin of the children's mtDNA molecules also was studied by more-sensitive assays: restriction-endonuclease analysis (REA) of alpha[32P]-radiolabeled PCR products; paternal-specific PCR assay; and depletion of maternal mtDNA, followed by REA. We did not detect paternal mtDNA in nine neonates, with a sensitivity level of 0.01% in five children, 0.1% in two children, and 1% in two children. The estimated ratio of sperm-to-oocyte mtDNA molecules in humans is 0.1%-1.5%. Thus, we conclude that, in these families, the ICSI procedure performed with mature spermatozoa did not alter the uniparental pattern of inheritance of mtDNA.

Base Sequence↗

Loss-of-function mutations in a human gene related to Chlamydomonas reinhardtii dynein IC78 result in primary ciliary dyskinesia.

Primary ciliary dyskinesia (PCD) is a group of heterogeneous disorders of unknown origin, usually inherited as an autosomal recessive trait. Its phenotype is characterized by axonemal abnormalities of respiratory cilia and sperm tails leading to bronchiectasis and sinusitis, which are sometimes associated with situs inversus (Kartagener syndrome) and male sterility. The main ciliary defect in PCD is an absence of dynein arms. We have isolated the first gene involved in PCD, using a candidate-gene approach developed on the basis of documented abnormalities of immotile strains of Chlamydomonas reinhardtii, which carry axonemal ultrastructural defects reminiscent of PCD. Taking advantage of the evolutionary conservation of genes encoding axonemal proteins, we have isolated a human sequence (DNAI1) related to IC78, a C. reinhardtii gene encoding a dynein intermediate chain in which mutations are associated with the absence of outer dynein arms. DNAI1 is highly expressed in trachea and testis and is composed of 20 exons located at 9p13-p21. Two loss-of-function mutations of DNAI1 have been identified in a patient with PCD characterized by immotile respiratory cilia lacking outer dynein arms. In addition, we excluded linkage between this gene and similar PCD phenotypes in five other affected families, providing a clear demonstration of locus heterogeneity. These data reveal the critical role of DNAI1 in the development of human axonemal structures and open up new means for identification of additional genes involved in related developmental defects.

Amino Acid Sequence↗

Relationship between phenotype and genotype in growth hormone insensitivity syndrome.

Growth hormone insensitivity syndrome (GHIS) of genetic origin is associated with many different mutations of the growth hormone receptor (GHR) gene and a recently described genetic defect of the insulin-like growth factor I (IGF-I) gene. Phenotypic and biochemical features were examined in a cohort of 82 patients with GHIS from 23 countries. The mean age of these patients was 8.3 years, their mean height SDS was -6.09 and their median IGF-binding protein-3 (IGFBP-3) SDS was -8.5. In total, 19 of the 82 patients (23%) were growth hormone-binding protein (GHBP)-positive (> 10%). The mean heights in GHBP-negative and GHBP-positive patients were -6.45 SDS and -4.89 SDS, respectively (p < 0.001). Sixteen different GHR gene mutations were identified in 27 patients with GHIS. All of these patients had homozygous mutations, except one who had a compound heterozygous mutation. There was no relationship between the type or site within the GHR gene of the mutation and the height SDS or IGFBP-3 SDS of the patients. GHIS is associated with a wide variation in the severity of clinical and biochemical phenotypes. This variation cannot clearly be accounted for by defects in the GHR gene alone. Other genes or environmental factors must contribute to the control of growth in patients with GHIS.

Adolescent↗

The human growth hormone (GH) receptor and its truncated isoform: sulfhydryl group inactivation in the study of receptor internalization and GH-binding protein generation.

The human GH receptor (hGHR) contains nine intracellular and seven extracellular cysteines, of which six are linked by disulfide bonds and one, at position 241 proximal to the membrane, is free. Recently, an alternatively spliced GHR isoform has been isolated; it encodes a truncated receptor lacking most of the cytoplasmic domain (hGHRtr). In the present study, we have examined the effect of sulfhydryl group(s) inactivation on receptor internalization and GH binding-protein (GHBP) generation from the human (h) and rabbit (rb) full-length GHR, as well as from hGHRtr and a mutant of the free extracellular cysteine (hGHRtr-C241A), expressed in Chinese hamster ovary (CHO) cells. In CHO/rbGHR and CHO/hGHR cells, permeable sulfhydryl-reactive agents, like N-ethylmaleimide (NEM) and iodacetamide (IA), inhibited GHR internalization and induced an immediate dose-dependent loss of cellular GHR, associated with a concomitant marked increase in released GHBP. In contrast, the membrane impermeable IA derivative A-484 had no effect on either GHBP release or on GHR internalization. NEM exposure of CHO cells, expressing hGHRtr, resulted in a dose-dependent increase in GHBP generation, but only a moderate decrease in cellular hGHRtr. The importance of the only unpaired cysteine in these processes was evaluated in CHO/hGHRtr-C241A cells. hGHRtr-C241A was similar to hGHRtr in its impaired internalization and enhanced GHBP release by NEM. Taken together, these data suggest that intracellular sulfhydryl groups, within membranal endocytic vesicles, that do not belong to the GHR molecule, are involved in receptor internalization and GHBP generation. In addition, the present study demonstrates that despite impaired hGHR internalization/down-regulation, the inducible release of GHBP was not affected, further suggesting that GHR endocytosis is not a prerequisite for GHBP generation.

4-Chloromercuribenzenesulfonate↗

Human Prop-1: cloning, mapping, genomic structure. Mutations in familial combined pituitary hormone deficiency.

Prop-1 is a newly isolated pituitary-specific paired-like homeodomain transcription factor whose cDNA sequence is well known in mouse. To study its involvement in human combined pituitary hormone deficiency (CPHD), we have isolated the human cDNA ortholog and determined the exon/intron organization and chromosomal localization of the human gene. A Prop-1 defect was characterized in three CPHD families. One missense mutation (R73C) involves a residue conserved in 95% of the more than 400 homeodomain proteins so far identified; in vitro splicing assays demonstrated the functional importance of the second defect, whereas the remaining mutation is a frameshift. Given the disease phenotype documented in the patients, these data, which will facilitate molecular investigations in other patients, demonstrate the crucial role of Prop-1 in the proper development of somatotrophs, lactotrophs, thyreotrophs and gonadotrophs.

Amino Acid Sequence↗

Evolutionary divergence of the truncated growth hormone receptor isoform in its ability to generate a soluble growth hormone binding protein.

The soluble growth hormone binding protein (GHBP), which is encoded by the GH receptor (GHR) gene, is generated by several mechanisms. In rabbits (rb) and humans (h), it is derived by proteolytic cleavage of the full-length membrane-bound receptor molecules (GHR-fl), whereas in rats (r) and mice, it results from an alternative splice excluding the transmembrane domain. Furthermore, in all these species, alternative splicing in the cytoplasmic domain results in a truncated isoform (GHR-tr), that, in humans, produces large amounts of GHBP through proteolysis. To further characterize the species specificity of the mechanism underlying GHBP generation, rbGHR-tr and rGHR-tr expressed in COS-7 cells were assayed for their ability to produce a GHBP in comparison with the corresponding full-length receptors. Large amounts of GHBP were secreted by cells expressing the rabbit constructs, the rbGHR-tr isoform being more efficient in GHBP generation than rbGHR-fl. In contrast, no GHBP was detected from cells expressing rGHR-tr, the cytoplasmic deletion having no effect on GHBP release from membrane receptors. These data further demonstrate evolutionary divergence in the mechanism by which GHBP is generated and provide new clues to decipher the molecular process underlying the cleavage step.

Adipose Tissue↗

[Phenotype-genotype relations in growth hormone insensitivity].

Growth hormone (GH) insensitivity is associated with several different mutations of the GH receptor gene and a recently described new genetic disorder of the IFGI gene. The phenotype and biochemical characteristics were studied in 82 patients with growth hormone insensitivity, from 23 different countries, with a mean age of 8.25 years. Mean height SDS was -6.09. SDS of the IGF binding protein -3 (IGF BP3) was 7.99. Twenty three per cent of the patients were GH binding protein (GHBP) positive (> 10%). Mean height SDS score was -6.5 in the GHBP negative patients and -4.9 in the GHBP positive patients (p < 0.001). Fifteen different mutations of the GH receptor gene were identified in 27 patients. There were no relationships between the type of mutation or the involved GH receptor gene exon and height or IGFBP-3 SDS. The new phenotype due to a partial deletion of the IGFI gene was described in a 15-year-old boy who presented with a severe intrauterine growth retardation, a very poor postnatal statural growth, a neurosensorial deafness and a mild mental retardation. He had elevated GH levels, normal levels of IGFBP3, undetectable levels of IGFI, and showed no response to GH treatment. A partial deletion concerning the exons 4 and 5 of the IGFI gene was found. Thus, GH insensitivity is associated with large variations in the clinical and biochemical phenotypes.

Adolescent↗

Heterozygous mutation in the WSXWS equivalaent motif of the growth hormone receptor in a child with poor response to growth hormone therapy.

Besides complete GH insensitivity syndrome (GHIS) described by Laron, clinical and molecular evidences have accumulated concerning partial GHIS. We studied GH receptor (GHR) gene in children who show poor response to GH treatment and detected a patient with a heterozygous mutation in exon 7 leading to the Y222H substitution. This missense mutation, located in the YGEFS motif of the GHR equivalent to the WSXWS motif highly conserved throughout all members of the cytokine receptor family, has not been described so far. Although we cannot conclude on the deleterious effect of this mutation, there are several lines of evidence suggesting that it could account for the partial GH insensitivity: (i) hormonal data including IGF-I generation test; (ii) molecular data - no other mutation was identified in the coding sequence, the father who has the same mutation is short, the brother did not inherit the mutated allele and was of normal height.

Amino Acid Motifs↗

Exhaustive scanning approach to screen all the mitochondrial tRNA genes for mutations and its application to the investigation of 35 independent patients with mitochondrial disorders.

To gain a better understanding of the molecular basisof mitochondrial (mt) encephalomyopathies, a highly heterogeneous condition, we developed a denaturing gradient gel electrophoresis-based approach that allows rapid and exhaustive screening for mutations of all 22 mt tRNA-encoding genes and their flanking regions in large cohorts of patients. This method, that detects heteroplasmy (i.e. co-existence of mutant and wild-type mtDNA species in various ratios) directly, was applied to the investigation of 35 independent patients with a disease phenotype compatible with a mitochondrial encephalomyopathy. Twenty-five of the 35 patients investigated displayed a sequence variation in at least one tRNA gene. A total of 46 different sequence variations (41 point mutations, four short insertions and one short deletion), among which 20 are new, were characterized. Forty of them were present in a homoplasmic state, whereas six were heteroplasmic. Twenty-two were located in tRNA genes, among which 10 are new homoplasmic or heteroplasmic sequence variations; 24 were located in flanking regions (12 in mRNA-encoding genes, seven of them leading to missense sequence variations; two in rRNA genes; and 10 in non-coding regions). This study demonstrates (i) the high frequency of homoplasmic tRNA gene sequence variations in our patient sample, and (ii) the existence of several polymorphic sites in tRNA gene regions that may be helpful for defining haplogroups in different populations. It relies on a screening method that can now be applied easily to other population samples.

DNA, Mitochondrial↗