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C Sultan

Publications and source records attributed to C Sultan.

At least 55 records · Page 3Linked to original sources

Molecular study of the 5 alpha-reductase type 2 gene in three European families with 5 alpha-reductase deficiency.

The molecular basis of 5 alpha-reductase (5 alpha R) deficiency was investigated in four patients from three European families. In the French family, the first patient was raised as a female, and gonadectomy was performed before puberty. The second sibling, also raised as female, differed in that gonadal removal was performed after the onset of pubertal masculinization. The other two patients, both from Polish families, developed masculinization of external genitalia during puberty. All patients developed a female sexual identity. In all cases, no known consanguinity or family history of 5 alpha R deficiency was reported. The genomic DNAs of the patients were sequenced after polymerase chain reaction amplification of the five exons of the 5 alpha R type 2 gene. We found two homozygous mutations responsible for glutamine to arginine and histidine to arginine substitution in families 1 and 3, respectively. In family 2, we found a heterozygous mutation responsible for an asparagine to serine substitution at position 193. The glutamine/arginine 126 mutation in the French family was previously reported in a Creole ethnic group, and the Polish histidine/arginine 231 mutation was previously reported in a patient from Chicago. Moreover, all of the mutations created new restriction sites, which were used to determine the kindred carrier status in the three families. Because 5 alpha R deficiency is known to be a heterogenous disease in terms of clinical and biochemical expression, our data suggest that molecular biology analysis of the type 2 gene could be an essential step in diagnosing 5 alpha R deficiency.

3-Oxo-5-alpha-Steroid 4-Dehydrogenase↗

[Genetics and endocrinology of male sex differentiation: application to molecular study of male pseudohermaphroditism].

The various processes involved in sexual differentiation have been considerably clarified over the last few years through advances in biochemistry and molecular genetics. The cloning of the gene responsible for testicular determination SRY, of the anti-Müllerian hormone and anti-Müllerian hormone receptor genes, of the several steroidogenic enzymes genes, of the 5 alpha-reductase type 2 gene and of the androgen receptor gene has permitted to elucidate the molecular defects causing abnormal sexual differentiation. These data have brought a substantial impact on the understanding of human male sexual differentiation and its main disorders.

3-Hydroxysteroid Dehydrogenases↗

5 alpha-reductase activity in cultured epithelial and stromal cells from normal and hyperplastic human prostates--effect of finasteride (Proscar), a 5 alpha-reductase inhibitor.

Benign prostatic hyperplasia (BPH) is the most common benign proliferative disorder of unknown etiology found in men. Dysregulation of testosterone conversion to dihydrotestosterone (DHT) by 5 alpha-reductase has been described as a key step in the development of BPH. We investigated the 5 alpha-reductase activity in primary cultures of epithelial and stromal cells from the four different regions (periurethral, transition, central and peripheral zones) of normal and hyperplastic human prostates. No significant difference in DHT production was observed among the four epithelial zones and the hyperplastic epithelial cells, or among the four normal zones and the hyperplastic stromal cells. To investigate whether the two known 5 alpha-reductase isoenzymes were expressed in prostate, we performed specific enzymatic amplification after reverse transcription which showed the presence of 274 and 383 base-pair fragments, respectively, specific for 5 alpha-reductase type 1 and 5 alpha-reductase type 2, demonstrating the expression of mRNA for both isoenzymes in BPH tissue. To pharmacologically characterize the isoenzyme present in the two cell components of hyperplastic prostate, we used finasteride, a well known inhibitor specific to 5 alpha-reductase type 2, which only slightly inhibits 5 alpha-reductase type 1. In BPH, IC50 was estimated at 62 nM and 45 nM, for stromal and epithelial cells respectively, suggesting predominately 5 alpha-reductase type 2 activity. Our results provide further evidence that 5 alpha-reductase type 2 activity is mainly responsible for DHT production by human prostatic cells.

Base Sequence↗

The chronic myeloid leukaemias: guidelines for distinguishing chronic granulocytic, atypical chronic myeloid, and chronic myelomonocytic leukaemia. Proposals by the French-American-British Cooperative Leukaemia Group.

We have reviewed our experience with four of the entities that are included under the generic term chronic myeloid leukaemia (CML), namely the classic Ph+ CGL, both BCR+ and BCR-, aCML and CMML. We have developed a statistical model that confirms that CGL, aCML and CMML can be distinguished from each other with reasonable success employing five quantitative parameters (WBC, percentage immature granulocytes, percentage monocytes, percentage basophils, percentage erythroid precursors in bone marrow) and one qualitative parameter (granulocytic dysplasia). It is hoped that these detailed recommendations will enable investigators to improve their diagnostic accuracy. This should permit more uniform comparisons of molecular biologic and clinical studies.

Bone Marrow↗

Molecular prenatal diagnosis of partial androgen insensitivity syndrome based on the Hind III polymorphism of the androgen receptor gene.

OBJECTIVE: Partial androgen insensitivity syndromes are the cause of genital ambiguity that is at times quite severe; there is, therefore, a high demand for prenatal diagnosis in families already afflicted with this syndrome. When the mutation has not been identified, the diagnosis can be made by the study of the polymorphisms of the androgen receptor gene. To perform molecular prenatal diagnosis in a family with partial androgen insensitivity syndrome, we studied the Hind III polymorphism of the androgen receptor gene on the trophoblastic DNA. The use of this restriction fragment length polymorphism tracked maternal X chromosome segregation and established prenatal diagnosis although the mutation had not yet been identified in this family. FAMILY: The mother had been previously described as heterozygous for the Hind III polymorphism and chromosomal segregation analysis showed that the affected allele was associated with the 6.7-kb Hind III fragment. MEASUREMENTS: Hind III RFLP with an androgen receptor gene cDNA probe was realized on the trophoblastic DNA, along with measurement of androgen binding activity on the trophoblastic cells. RESULTS: We detected the presence of the 6.7-kb fragment in the DNA of the trophoblastic cells suggesting the fetus was affected. Partial androgen insensitivity syndrome was confirmed by a considerable decrease in androgen binding activity on the trophoblastic cells and by sonography of the fetus. After a therapeutic abortion requested by the parents, the diagnosis was confirmed by clinical examination of the fetus, biochemical analyses of the fetal androgen receptor, and molecular studies of the fetal DNA. CONCLUSIONS: When the mutation of the androgen receptor gene has not been identified, Hind III polymorphism of the trophoblastic DNA is useful in the prenatal diagnosis of androgen insensitivity syndrome in high-risk families.

Androgens↗

Study of final height in Turner's syndrome: ethnic and genetic influences.

In understanding Turner's syndrome, spontaneous adult height is a prerequisite for an accurate assessment of the therapeutic efficiency of growth hormone treatment. The heights described in the literature reveal significant differences (136-147 cm). Our collaborative study pooled results from 16 pediatric endocrinology centers and obtained a large number of spontaneous adult heights (n = 216). The selective criteria were: chronological age (CA) > 18 years, bone age (BA) > 16 years, typical karyotype, no treatment with growth hormone or anabolic steroids. Mean CA was 23.3 +/- 5.6 years. Chromosomal anomalies were: monosomy X 56%; mosaicism 37.2%; structural aberration 10.6%. Mean final height in the whole group was 141.5 (129-160) cm. There was no significant difference in height between the three groups: monosomy X (n = 121: 141.1 +/- 6.4 cm); mosaicism (n = 72: 141.5 +/- 7.5 cm); X anomaly (n = 23: 141.4 +/- 5.0 cm). Mean parental height was 170.4 +/- 7.1 cm (father) and 160.1 +/- 6.2 cm (mother). Parental height and patients' heights correlated significantly, but more so with fathers' heights (r = 0.50) than with mothers' (r = 0.42). The correlation was still apparent with the target height (r = 0.55). The results of different series in the literature show the existence of significant variations as mean final heights are between 136 and 147 cm. These differences can be explained by the variations in normal female heights in each country. We have found in these different countries a very strong correlation (r = 0.91) between normal height and final height in Turner's syndrome.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Molecular prenatal exclusion of familial partial androgen insensitivity (Reifenstein syndrome)

In a large family with Reifenstein syndrome, we previously performed molecular analysis of the androgen receptor gene. Direct sequencing showed a G-A point mutation at position 2818 of exon 7, which was responsible for an arginine-histidine substitution at position 840 of the androgen receptor. In this family, the proband's mother became pregnant and wished to know whether she was carrying an unaffected fetus. Polymerase chain reactions of the sex-determining region of the Y chromosome (the SRY gene) on trophoblastic DNA at week 14 revealed a 46,XY genotype. Sequencing analysis showed the canonical sequence (CGT, encoding an Arg residue), suggesting that the fetus was not affected. The expectation of normal male sexual development was confirmed by detection of normal male external genitalia through ultrasonography at week 24. These data confirm that sequence analysis of the androgen receptor gene on trophoblastic DNA is the most reliable method for prenatally diagnosing or excluding androgen insensitivity syndrome in high-risk families.

Base Sequence↗

An expert system for the interpretation of flow cytometric immunophenotyping data.

The development of high-grade non-Hodgkin's lymphomas in HIV-positive patients and patients with acquired immune deficiency syndrome (AIDS) is a well known phenomenon. The proper classification of these neoplasms often requires a multiparameter approach, including the interpretation of a large panel of immunologic markers analyzed by flow cytometry. The availability of individuals with the required expertise to properly interpret these marker studies is limited. For this reason, we have designed an expert system to automate the analysis of immunophenotyping panels in both HIV-related and non-HIV-related hematopoietic neoplasms. The expert system, which we call "Professor Fidelio", runs on IBM-compatible computers under Windows 3.0. The system is designed to accept any number of markers studied from a repertoire of 35 markers. Professor Fidelio functions on the basis of heuristic classification of defined diagnostic patterns. Nine specific patterns (Stem Cell, Myeloid and/or Monocytic, Erythroid, Megakaryocytic, Immature B-cell, Immature T-cell, Mature B-cell, Mature T-cell, and Plasma cell) and one "non-specific" pattern have been agreed upon. Fidelio's knowledge base contains the definitions of each of these patterns and the heuristics for excluding patterns when an incomplete panel of markers is performed. The inference engine interprets the findings (including the age of the patient) and reports the patterns which are matched, the differential diagnosis, the suggested diagnosis from the list of differentials if the marker studies are specific, and recommendations for additional tests which may be valuable in establishing the diagnosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Acquired Immunodeficiency Syndrome↗

Molecular genetics of androgen insensitivity syndromes.

The androgen receptor belongs to the family of nuclear receptors and contains three functional domains: a carboxy-terminal hormone binding region, a central cystein rich DNA binding region and an amino-terminal region involved in the expression of androgen regulated genes. Cloning of the complementary DNA encoding the androgen receptor enabled the characterization of the molecular defects associated with androgen insensitivity syndromes, X-linked disorders resulting from androgen action defects in target cells. Moreover, androgen receptor gene alterations have been recently described in two unrelated diseases: male breast cancer and spinal and bulbar muscular atrophy. Our group have identified 16 androgen receptor gene alterations in patients with androgen insensitivity syndrome, an amino acid substitution in a patient with a partial androgen insensitivity syndrome and a breast cancer. In 2 families, the molecular diagnosis of spinal and bulbar muscular atrophy has been performed.

Base Sequence↗

[Genes of the Y chromosome and Turner syndrome].

Turner syndrome is a complex human phenotype most commonly seen in association with a 45,X karyotype and it has been proposed that the phenotype is the result of monosomy for genes common to the X and Y chromosomes. Detection of unrecognized Y derived material is now possible by PCR of the SRY gene. Its presence is correlated with the presence of testicular tissue, known to increase the risk of developing gonadal neoplasia. Study of Y chromosome allowed the localisation of a candidate gene for the development of gonadoblastoma, GBY. Moreover, some groups described genes on the Y chromosome whose defects seem to be involved in the development of Turner stigmata: ZFY and RPS4Y. In conclusion; molecular genetics of the Y chromosome develops new pathophysiological and fundamental perspectives of the molecular genetics of the Turner syndrome.

Chromosome Mapping↗

Genetic and molecular analysis of familial isolated growth hormone deficiency.

Familial isolated growth hormone deficiency (IGHD) has been associated with complete deletions of the hGH-N gene encoding the pituitary growth hormone (GH) in a large number of cases. However, there is still no alternative empirical explanation for the remaining familial or non-familial IGHD cases. We studied a large kindred including five IGHD-affected first cousins to determine possible IGHD inheritance and whether the hGH-N gene was the cause of IGHD in this pedigree. Sex-linked and autosomal recessive transmission of IGHD in this kindred was rejected. Autosomal dominant inheritance was the most probable explanation according to a model of one locus with two alleles, one being dominant for IGHD, under genetic modifiers or epistasis. Southern blotting analysis (BamHI and HindIII digestions) was used to determine whether the hGH-N gene was present in the patients and their family members. Because we found that the hGH-N gene was present, five restriction fragment length polymorphisms (RFLPs; HincII, MspI-A and B, and BglII-A and B) linked to the hGH-N gene were used to try to identify the possible RFLP haplotypes in the pedigree that could be markers or associated with the abnormal hGH-N alleles responsible for IGHD. From the haplotype analysis, it appeared that other genes not linked to the hGH-N gene cluster were the cause of the IGHD phenotype in this kindred. An alternative conclusion could be that the hGH-N gene was responsible for IGHD in this kindred, if a mutation (gene conversion) at the MspI-B site or a reciprocal recombination event between the HincII and MspI-B sites occurred from generation P to F1 and a similar event took place from generation F1 to F2. The non-significant GH responses of patients to the growth releasing factor test confirmed that the hGH-N gene structural product or some step in its regulation was responsible for causing IGHD in this kindred. We suggest that genetic micromutations in the hGH-N gene are present and are responsible for IGHD. We developed a method using the polymerase chain reaction to amplify a 790-bp fragment of the hGH-N gene. The fragment spanned from the second part of the dyad symmetry region in the non-transcribed 5' end of the hGH-N gene to 9 bp before the alternative splice-acceptor site in exon 3. The expected fragment was verified by its digestion with seven diagnostic restriction endonucleases (BamHI, FspI, PstI, NdeI, BssHII, BglII and HincII).(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent↗

Tyrosine kinases and phosphoinositide metabolism in thrombin-stimulated human platelets.

In this study we have examined the implication of tyrosine kinase activities in aggregation, 5-hydroxytryptamine secretion and mainly phosphoinositide metabolism in response to human platelet stimulation by thrombin. Using the potent tyrosine kinase inhibitor tyrphostin AG-213, we have observed a significant inhibition of aggregation and 5-hydroxytryptamine release; however, this percentage inhibition was lower at high thrombin concentrations. On the other hand, tyrphostin treatment of metabolically 32P-labelled platelets significantly inhibited the thrombin-dependent accumulation of PtdIns(3,4)P2, which involves at least a PtdIns 3-kinase and/or a PtdIns3P 4-kinase, whereas the synthesis of phosphatidic acid (PtdOH), a good reflection of the phospholipase C (PLC) activation in platelets, was partially blocked. Inositol phosphate production was also inhibited by about 40% when tyrphostin-treated platelets were stimulated with thrombin. In addition, we show by Western-blot analysis that PLC gamma 1, as well as the regulatory subunit (p85) of the PtdIns 3-kinase, were present in the anti-phosphotyrosine immunoprecipitate isolated from thrombin-stimulated platelets. Furthermore, tyrphostin treatment clearly decreased the PLC gamma 1 and p85 contents in such an anti-phosphotyrosine immunoprecipitate. Our results provide the first evidence for a direct or indirect regulation of PtdIns(3,4)P2 accumulation and PLC gamma 1 activity by tyrosine phosphorylation during thrombin stimulation of human platelets.

Blood Platelets↗

Distinct molecular origins for Denys-Drash and Frasier syndromes.

The direct involvement of the Wilm's tumor suppressor gene (WT1) in Denys-Drash syndrome through mutations within exons 8 or 9 has recently been established. The absence of such alterations in three patients with Frasier syndrome provides a molecular basis for distinguishing these two syndromes that are associated with streak gonads, pseudohermaphroditism and renal failure.

Base Sequence↗

Complete androgen insensitivity syndrome associated with a de novo mutation of the androgen receptor gene detected by single strand conformation polymorphism.

In a French child with complete androgen insensitivity syndrome and negative receptor-binding, no gross deletion has been found. Using single-strand conformation polymorphism assay, a useful screening method for rapid detection of DNA sequence alterations, and direct DNA sequencing, a G-T nucleotide substitution in exon 5 of the androgen receptor gene at nucleotide 2590 was found. This changed codon 743, glycine to valine, in the hormone-binding domain and created a new recognition sequence for the restriction endonuclease Asp HI. Amplification of exon 5 by polymerase chain reaction followed by digestion with Asp HI enabled easy recognition of the described mutation. Since the mother's exon 5 was undigested, we suspected the de novo nature of this nucleotide substitution. This was confirmed by direct sequencing of the mother's DNA which only showed the canonical sequence. To our knowledge, there has been no previous report of a de novo mutation described within the androgen receptor gene in patients with androgen insensitivity syndrome.

Amino Acid Sequence↗

Mutations of androgen receptor gene in androgen insensitivity syndromes.

The androgen receptor belongs to the family of steroid-thyroid hormone-retinoid nuclear receptors. It contains 3 major domains: a hormone-binding region, a DNA-binding region and an amino-terminal region. Cloning of the cDNA encoding the androgen receptor and elucidation of the androgen receptor gene structure enabled the characterization of the molecular defects associated with androgen insensitivity. Mutations of the androgen receptor in 46,XY individuals cause a spectrum of androgen insensitivity syndromes, ranging from female phenotype (testicular feminization) to minor degrees of undervirilization or infertility. Reports on androgen receptor gene structure in patients with complete or partial forms of androgen insensitivity demonstrate that gene deletions are very rare. Several categories of mutations have been reported and are reviewed in this paper. Nucleotide substitutions in the androgen-binding domain or the N-terminal region that cause insertion of premature termination codons result in failure to form a functional protein. Missense mutations within the androgen-binding domain are responsible for a decrease or absence of receptor-binding activity. Mutations within the DNA-binding domain are associated with a positive receptor-binding form of androgen insensitivity. Analysis of described mutations indicates that they are spread throughout the gene, either associated with partial or complete androgen insensitivity. Furthermore, the same point mutation was reported to be associated with variable phenotypic expression of androgen insensitivity syndrome. It is thus difficult to define a genotype/phenotype relationship. However, mutations causing androgen insensitivity will certainly yield important new insights into the molecular basis of androgen action.

Androgen-Insensitivity Syndrome↗

A new mutation within the deoxyribonucleic acid-binding domain of the androgen receptor gene in a family with complete androgen insensitivity syndrome.

OBJECTIVE: To study the androgen receptor gene in a large kindred with complete androgen insensitivity syndrome and positive receptor-binding activity. DESIGN: Enzymatic amplification coupled with single strand conformation polymorphism and DNA sequencing were used. RESULTS: In all the affected members, single strand conformation polymorphism showed a mobility shift in exon 2, suggesting a sequence alteration. Sequencing identified a valine into phenylalanine substitution at position 581 in the first zinc finger of the DNA-binding domain. CONCLUSIONS: This valine 581 is conserved in all nuclear receptors and has an important role for the recognition of the androgen response elements by the activated androgen receptor. This amino acid substitution has not been previously described in the androgen receptor in patients with androgen insensitivity syndrome. Moreover, single strand conformation polymorphism allowed determination of the generation in which the mutation appeared and performance of carrier diagnosis in this family.

Amino Acid Sequence↗