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Biomedical subjects

G Neri

Publications and source records attributed to G Neri.

At least 145 records · Page 8Linked to original sources

Wiskott-Aldrich syndrome: report of an autosomal dominant variant.

The Wiskott-Aldrich syndrome (WAS) is an X-linked recessive disorder originally described as a clinical triad of thrombocytopenia with small platelets, eczema, and immunodeficiency. Impaired CD43 glycoprotein expression on lymphocytes is a typical hallmark of this disorder. The CD43 gene is located on chromosome 16, and the WAS gene, WASP, was recently isolated from the chromosome X p11.22-p11.23. This gene, mutated in WAS patients, encodes a protein that is likely to play a role in controlling the expression of CD43. However, the molecular mechanism(s) causing WAS are not yet known. Herein, we describe a three-generation family in which clinical and laboratory WAS features were expressed in six of nine subjects available for study. At variance with classic X-linked WAS, this disorder was characterized by the presence of thrombocytopenia with a broad spectrum of platelet size, including giant platelets, and was inherited as an autosomal dominant trait. This last finding led us to hypothesize a mutation of the CD43 gene. However, Southern blot analysis failed to detect structural abnormalities of this gene, and genotype analysis ruled out the possibility that a CD43 allele might be shared by the affected individuals. These findings indicate that an alteration(s) of an autosomal gene distinct from the CD43 gene is responsible for the disease. Thus, results from this family, providing the first observation of an autosomally transmitted WAS variant, indicate that genetic mechanism(s) leading to WAS are more complex than previously recognized.

Adolescent↗

Molecular and cytogenetic characterization of a recurrent unbalanced translocation (4;21)(p16.3;q22.1): relevance to the Wolf-Hirschhorn and Down syndrome critical regions.

We report on an aneuploidy syndrome due to the unbalanced segregation of a familial translocation (4;21)(p16.3;q22.1) causing a partial 4p monosomy and a partial 21q trisomy. The three affected children presented with severe failure to thrive, short stature, microcephaly, profound hypotonia, and mental retardation. The face, very similar in the three children, is characterized by frontal bossing, upslanting of the palpebral fissures, short nose, and deep set ears, giving the overall appearance of the Down syndrome. The molecular study has defined the aneuploid segment on both 4p and 21q. Most of the Down syndrome critical region was found to the trisomic, while only part of the candidate Wolf-Hirschhorn syndrome critical region was deleted, suggesting that this region is not critical for the major malformations characteristic for WHS.

Abnormalities, Multiple↗

Novel findings in a patient with Weaver or a Weaver-like syndrome.

We report on a young male patient with an overgrowth syndrome, who had normal birth weight. He had a number of manifestations typical of the Weaver syndrome (WS), such as advanced bone age, peculiar craniofacial appearance, and camptodactyly. He also showed severe mental and speech retardation and demineralisation of the bones of the hands and feet. The latter can be considered as unreported manifestations of WS, or the patient could represent an example of a new WS-like syndrome.

Abnormalities, Multiple↗

Cardio-facio-cutaneous (CFC) syndrome: report of an adult without mental retardation.

We report on a 25-year-old woman with typical manifestations of the cardio-facio-cutaneous (CFC) syndrome, but without mental retardation. She had valvular and infundibular pulmonic stenosis, brittle and woolly hair with patchy alopecia, scant body hair, dry and hypohydrotic skin, and characteristic facial traits. To our knowledge, this is the first case of CFC syndrome without mental retardation but typical cutaneous findings.

Abnormalities, Multiple↗

Alanine substitutions in calmodulin-binding peptides result in unexpected affinity enhancement.

Calmodulin is a calcium-binding protein that regulates a wide range of enzymes. It is also one of the few examples of a small protein capable of binding to peptides with very high affinity, and is therefore an interesting candidate for biotechnological applications and a good model system for studying how proteins associate. We have synthesized a complete series of peptides derived from the recognition sequence of skeletal muscle myosin light-chain kinase, corresponding to single-point amino acid mutations to alanine. These peptides bind to calmodulin with a biphasic kinetic: a fast association step followed by a slow intramolecular isomerisation. We have measured the isomerisation rate (k(isom)) of these peptides for calmodulin by stopped-flow analysis, and their association and dissociation kinetic constants (k(on) and k(off)) by real-time interaction analysis using surface plasmon resonance detection. In addition, k(off) constants were measured by competition experiments using a high-sensitivity luminescence analyser and native polyacrylamide gels. We have observed that all the alanine-scanning peptides bound to calmodulin with better affinity than the wild-type. In one case, a Asn-->Ala substitution resulted in a 1000-fold improvement in affinity, owing to a slower off-rate. Our results indicate that naturally occurring calmodulin binders may have evolved to have high affinities, but far from the maximum. Our affinity data are in contrast with recently published predictions of interactions responsible for high-affinity calmodulin binding based on modelling and energy calculations.

Alanine↗

A split hand-split foot (SHFM3) gene is located at 10q24-->25.

The split hand-split foot (SHSF) malformation affects the central rays of the upper and lower limbs. It presents either as an isolated defect or in association with other skeletal or non-skeletal abnormalities. An autosomal SHSF locus (SHFM1) was previously mapped to 7q22.1. We report the mapping of a second autosomal SHSF locus to 10q24-->25. A panel of families was tested with 17 marker loci mapped to the 10q24-->25 region. Maximum lod scores of 3.73, 4.33 and 4.33 at a recombination fraction of zero were obtained for the loci D10S198, PAX2 and D10S1239, respectively. An 19 cM critical region could be defined by haplotype analysis and several genes with a potential role in limb morphogenesis are located in this region. Heterogeneity testing indicates the existence of at least one additional autosomal SHSF locus.

Abnormalities, Multiple↗

Deletions in the SMN gene in infantile and adult spinal muscular atrophy patients from the same family.

Recently, a gene determining spinal muscular atrophy (SMA), termed survival motor neuron (SMN) gene, has been isolated from the 5q13 region. This gene has been found to be deleted in most patients with childhood-onset SMA. We have studied the SMN gene in a clinically heterogeneous family, including one patient affected by infantile chronic SMA and three subjects with mild adult-onset muscle weakness. Deletions in the SMN gene were detected in all of these patients, indicating that the childhood and adult SMAs are genetically homogeneous in this family. Genotyping of the family members established that the three mildly affected individuals were homozygous for the same haplotype from the SMA region, whereas the more severely affected patient was heterozygous with one different haplotype.

Adult↗

Intra-adrenal 11 beta-hydroxysteroid dehydrogenase plays a role in the regulation of corticosteroid secretion: an in vitro study in the rat.

The expression of 11 beta-hydroxysteroid dehydrogenase (11 beta-HSD) has been demonstrated in the adrenal glands, but until now little attention has been paid on its possible physiologic action. In-situ perfused rat adrenals released under basal conditions, in addition to mineralo- and glucocorticoids, notable amounts of 11-dehydrocorticosterone (DH-B), the inactive form to which corticosterone (the main glucocorticoid in rodents) is converted by 11 beta-HSD. The addition to the perfusion medium of glycyrrhetinic acid, a specific inhibitor of 11 beta-HSD, strongly reduced DH-B release and simultaneously evoked a moderate rise in both mineralo- and glucocorticoid output. The bolus administration of ACTH strikingly enhanced mineralo- and glucocorticoid secretion, but it significantly depressed DH-B release Rat adrenal microsome preparations possessed 11 beta-HSD activity, that was inhibited by glycyrrhetinic acid. Conversely, ACTH was without any apparent effect, a finding indicating that the in vivo observed ACTH-induced inhibition of adrenal 11 beta-HSD activity is mediated by an indirect mechanism whose elucidation requires further investigation. In conclusion, our present findings suggest that adrenal 11 beta-HSD plays a role in the regulation of steroid secretion in rats under both basal and stimulated conditions.

11-beta-Hydroxysteroid Dehydrogenases↗

Adrenomedullin stimulates steroid secretion by the isolated perfused rat adrenal gland in situ: comparison with calcitonin gene-related peptide effects.

Adrenomedullin (ADM), a vasodilatatory peptide contained in adrenal medulla, was found to induce a dose-dependent increase in aldosterone (ALDO) and corticosterone (B) release by the in situ perfused rat adrenal gland, along with a rise in the flow rate of the perfusion medium. The minimal effective dose for ALDO response was three and two orders of magnitude less than those able to evoke B and medium flow rate responses. Calcitonin gene-related peptide (CGRP), another vasodilatatory peptide contained in adrenal medulla and showing a slight homology in its amino acid sequence with ADM, elicited similar effects. CGRP (8-37), a specific antagonist of CGRP1 receptors, annulled all the effects of both ADM and CGRP, whereas l-alprenolol, a beta-adrenoceptor antagonist, partially reversed only ALDO response to the peptides. In light of these findings the following conclusions are drawn: i) ADM and CGRP stimulate rat adrenals in vivo to release B by raising blood flow rate; ii) ADM and CGRP enhance ALDO secretion via an indirect mechanism probably requiring the release of catecholamines by medullary chromaffin cells; and iii) the effects of ADM and CGRP on the rat adrenal gland are mediated by a common receptor of the CGRP1 subtype.

Adrenal Glands↗

In vitro studies of the subtypes of endothelin (ET) receptors present in the rat testis, and of their involvement in the secretory response of Leydig cells to ET-1.

The distribution of the endothelin (ET)-receptor subtypes ET(A) and ET(B) in the rat testis and their involvement in the secretory response of Leydig cells to ET-1 have been investigated by the use of specific ligands. Autoradiography showed that [125I]ET-1 binding was intense in the interstitial area of the testis, containing Leydig cells, and virtually absent in the walls of seminiferous tubules. Labelling was almost completely displaced by BQ-123, a selective ETA receptor antagonist, while sarafotoxin-6C and BQ-788, two specific ET(B) ligands, were ineffective. ET-1 concentration-dependently enhanced testosterone secretion of dispersed rat Leydig cells, and the response was suppressed by BQ-123, but not by BQ-788. Both antagonists per se did not affect either basal and hCG stimulated secretion of Leydig cells. Taken together our findings indicate that rat Leydig cells are mainly, provided with ETA, and that this ET-receptor subtype mediates their secretory response to ET-1.

Animals↗

Combined molecular and cytogenetic analysis for the rapid diagnosis of fragile X syndrome.

The fragile X mutation is the result of an abnormal expansion of a CGG repeat sequence in the FMR-1 gene. Molecular techniques enable the detection of the mutation and also of the exact length of this DNA sequence, allowing the classification of the tested subjects as normal, carrier or affected. We propose a protocol of analysis that combines a method of non-radioactive PCR, Southern blotting and cytogenetic testing. This protocol can be used for screening programme of selected groups of mentally retarded individuals and for prevention studies in families at risk.

Blotting, Southern↗

Mutations in GPC3, a glypican gene, cause the Simpson-Golabi-Behmel overgrowth syndrome.

Simpson-Golabi-Behmel syndrome (SGBS) is an X-linked condition characterized by pre- and postnatal overgrowth with visceral and skeletal anomalies. To identify the causative gene, breakpoints in two female patients with X;autosome translocations were identified. The breakpoints occur near the 5' and 3' ends of a gene, GPC3, that spans more than 500 kilobases in Xq26; in three families, different microdeletions encompassing exons cosegregate with SGBS. GPC3 encodes a putative extracellular proteoglycan, glypican 3, that is inferred to play an important role in growth control in embryonic mesodermal tissues in which it is selectively expressed. Initial western- and ligand-blotting experiments suggest that glypican 3 forms a complex with insulin-like growth factor 2 (IGF2), and might thereby modulate IGF2 action.

Abnormalities, Multiple↗

Effects of substance P and its antagonist spantide on corticosterone secretion and cytosolic free calcium concentration of dispersed zona fasciculata-reticularis cells of the rat adrenal cortex.

Substance P (SP) did not change basal corticosterone (B) secretion of dispersed zona fasciculata-reticularis cells of the rat adrenal cortex. Conversely, spantide II (SPA), an antagonist of SP receptors, at a concentration 10(-7)/10(-6) M markedly raised it, and the effect was annulled by equimolar concentrations of SP. Both SP and SPA (10(-6) M) increased cytosolic free calcium concentration in our cell preparations; however, the response to SP was immediate, while that to SPA showed a lag-period of 4-5 min. SP concentration-dependently (from 10(-8) M to 10(-5) M) partially inhibited maximally ACTH (10(-8) M)-induced stimulation of B secretion of dispersed cells, and unexpectedly a similar effect was observed after SPA exposure. In light of these findings, the conclusion is drawn that SP, under basal conditions, does not exert a direct modulatory action of B secretion of rat adrenocortical cells. However, the possibility remains to be explored that SP may play a role in quenching, via a receptor-independent mechanism, the exceedingly high glucocorticoid responses to ACTH of rat adrenocortical cells.

Adrenocorticotropic Hormone↗

Frameshift mutation in the survival motor neuron gene in a severe case of SMA type I.

Recently, a spinal muscular atrophy (SMA) determining gene, termed survival motor neuron (SMN) gene, has been isolated from the 5q13 region and found deleted in most patients. A highly homologous copy of this gene has also been isolated and located in a centromeric position. We have analyzed 158 patients (SMA types I-IV) and found deletions of SMN exon 7 in 96.8%. Mutations other than gross deletions seem to be extremely rare. In one of the undeleted SMA type I patients, a newborn who survived for only 42 days, we detected a maternally inherited 5 bp microdeletion in exon 3, resulting in a premature stop codon. By RT-PCR and long range PCR amplification we were able to show that the deletion belongs to the SMN gene, rather than to the centromeric copy, and that the proposita had no paternal SMN gene. Analysis of the neuronal apoptosis inhibitor protein (NAIP) gene, which maps close to SMN and has been proposed as a SMA modifying gene, suggests the presence of at least one full-length copy. Haplotype analysis of closely linked polymorphic markers suggests that the proposita also lacks the maternally derived copy of the centromeric homologue of SMN supporting the hypothesis that the severity of the phenotype might depend on the reduced number of centromeric genes in addition to the frameshift mutation.

Cyclic AMP Response Element-Binding Protein↗

Endothelin adrenocortical secretagogue effect is mediated by the B receptor in rats.

We investigated the gene expression and localization of endothelin-1 (ET-1) receptor subtypes ET(A) and ET(B) in the rat adrenal cortex as well as their involvement in the corticosteroid secretagogue effect of ET-1 in vitro. Reverse transcription-polymerase chain reaction with primers specific for ET(A) and ET(B) cDNAs demonstrated the expression of both receptor genes in homogenates of adrenocortical tissue. However, in isolated zona glomerulosa and zona fasciculata cells, only ET(B) mRNA was detected. Autoradiographic examination of the selective displacement of 125I-ET-1 binding by BQ-123 and BQ-788 (specific ligands for ET(A) and ET(B), respectively) indicated that zona glomerulosa possesses both ET(A) and ET(B), whereas zona fasciculata is exclusively provided with ET(B). ET-1 enhanced in a concentration-dependent manner aldosterone and corticosterone secretions of dispersed zona glomerulosa and zona fasciculata cells, respectively. The ET(B) antagonist BQ-788 markedly reduced the secretory response of zona glomerulosa cells and completely suppressed that of zona fasciculata cells, whereas the ET(A) antagonist BQ-123 was ineffective. These findings indicate that in the rat, the adrenocortical secretagogue action of ET-1 is mediated by the ET(B) receptor subtype and that the ET(A) receptor is not directly involved in such an effect.

Adrenal Cortex↗

Pituitary adenylate-cyclase activating peptide enhances aldosterone secretion of human adrenal gland: evidence for an indirect mechanism, probably involving the local release of catecholamines.

Evidence is accumulating that the adrenal medulla exerts a paracrine control on the secretory activity of the cortex by releasing catecholamines and several regulatory peptides. Pituitary adenylate-cyclase activating peptide (PACAP) is contained in the adrenal medulla of several mammalian species and in human pheochromocytomas. Thus, we investigated whether PACAP exerts a modulatory action on steroid secretion by the human adrenal cortex in vitro. Adrenal slices (including both capsule and medulla) and dispersed adrenocortical cells (obtained from the gland tail deprived of medulla) were employed. Both adrenal preparations secreted aldosterone (ALDO) and cortisol in response to 10 nmol/L ACTH. PACAP (10 nmol/L) was found to enhance basal ALDO production by adrenal slices, but not by dispersed cells. PACAP was ineffective on cortisol secretion of both preparations. Adrenal slices displayed a marked ALDO, but not cortisol, secretory response to 100 nmol/L isoprenaline or noradrenaline. l-Alprenolol (1 mumol/L), a specific beta-adrenoceptor antagonist, completely suppressed the ALDO response to both beta-adrenoceptor agonists and 10 nmol/L PACAP, without per se altering basal ALDO output by adrenal slices. PACAP (10 nmol/L) induced a net rise in catecholamine release by adrenal slices. Taken together, our present findings suggest that PACAP indirectly stimulates ALDO secretion by the human adrenal cortex, probably by eliciting the local release of catecholamines by medullary chromaffin cells that are also scattered in the cortical tissue, especially the zona glomerulosa.

Adrenal Cortex↗

[Effects on myocardial perfusion of epidural spinal cord stimulation in refractory angina. Description of a case studied with positron emission tomography].

We describe a case of patient with severe angina pectoris unresponsive to medical therapy who was treated with spinal cord stimulation. The patient was studied by dynamic positron emission tomography (PET) (13-N ammonia) and with heart rate variability. Spinal cord stimulation was effective in reducing anginal attacks and PET documented an enhancement of myocardial perfusion when spinal stimulator was activated. Heart rate variability did not change during spinal cord stimulation.

Aged↗