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Biomedical subjects

B Dallapiccola

Publications and source records attributed to B Dallapiccola.

At least 145 records · Page 8Linked to original sources

A possible role of NAIP gene deletions in sex-related spinal muscular atrophy phenotype variation.

Childhood SMAs are common neuromuscular disorders, due to the occurrence of large genomic deletions encompassing the SMN gene and often extending to involve the NAIP gene. Although NAIP deletions are more frequently observed in patients affected by the acute form of the disease, it is not possible to establish an unambiguous correlation between deletion size and clinical severity. We have investigated the effects of gender on the association between NAIP gene deletion and disease severity. NAIP deletions were screened in 197 Italian SMA patients lacking SMN; the results obtained were correlated with disease severity in male and female samples separately. No significant relationship between deletion size and clinical phenotype was observed among male subjects, whereas in females the absence of NAIP was strongly associated with a severe phenotype (p <0.0001). These results provide a possible molecular explanation for the sex-dependent phenotype variation observed in SMA patients.

Cyclic AMP Response Element-Binding Protein↗

From genetic research into clinical practice.

The present genome era is characterized by speedy progress and prompt transfer of results into clinical practice. This creates the need for rapid disclosure of results and renewal of laboratory's protocols. Molecular cytogenetics has provided and increased ability to identify chromosomes, correlate chromosome structure with gene location, find out cryptic aberrations, and detect specific DNA sequences. These advances have allowed the confident discovery of a number of contiguous gene syndromes. The positional cloning and positional candidate strategies have greatly expedited the search process of disease genes, and become relevant methods for genes' discovery. Understanding the molecular basis of diseases has shown an unpredicted wide genetic heterogeneity, which has splitted single disorders into many clinically similar conditions, and added complexity to the nosology of human diseases. The opposite process, allelism, where clinical diversity results from allelic mutations, has lumped together many distinct disorders, by showing that different clinical entities are not necessarily due to mutations in different genes. Dynamic mutations have provided the molecular understanding of interindividual and intrafamilial variability including anticipation, in a number of diseases. The discovery of distinct correlations between the molecular pattern and disease severity is providing a unique opportunity for using molecular results to assess the clinical outcome. Diagnostic, presymptomatic and predictive molecular testing are becoming widely used and provide enormous opportunities for improving the lot of our patients.

Genetic Diseases, Inborn↗

UFD1L, a developmentally expressed ubiquitination gene, is deleted in CATCH 22 syndrome.

The CATCH 22 acronym outlines the main clinical features of 22q11.2 deletions (cardiac defects, abnormal facies, thymic hypoplasia, cleft palate and hypocalcemia), usually found in DiGeorge (DGS) and velo-cardio-facial (VCFS) syndromes. Hemizygosity of this region may also be the cause of over 100 different clinical signs. The CATCH 22 locus maps within a 1.5 Mb region, which encompasses several genes. However, no single defect in 22q11.2 hemizygous patients can be ascribed to any gene so far isolated from the critical region of deletion. We have identified a gene in the CATCH 22 critical region, whose functional features and tissue-specific expression suggest a distinct role in embryogenesis. This gene, UFD1L, encodes the human homolog of the yeast ubiquitin fusion degradation 1 protein (UFD1p), involved in the degradation of ubiquitin fusion proteins. Cloning and characterization of the murine homolog (Ufd1l) showed it to be expressed during embryogenesis in the eyes and in the linear ear primordia. These data suggest that the proteolytic pathway that recognizes ubiquitin fusion proteins for degradation is conserved in vertebrates and that the UFD1L gene hemizygosity is the cause of some of the CATCH 22-associated developmental defects.

Adaptor Proteins, Vesicular Transport↗

Two mosaic-YY males carrying asymmetric Y chromosomes.

Two patients were referred because of oligospermia and azospermia, respectively. Karyotypic analysis revealed two mosaic-YY males carrying asymmetric Y chromosomes. To our knowledge, no instance of double unequal Y chromosomes has been reported so far in human males. Results of fluorescent in situ hybridization (FISH) studies in spermatozoa from one of these patients revealed a significantly high number of hyperaploid spermatozoa.

Adult↗

Spectrum of clinical features associated with interstitial chromosome 22q11 deletions: a European collaborative study.

We present clinical data on 558 patients with deletions within the DiGeorge syndrome critical region of chromosome 22q11. Twenty-eight percent of the cases where parents had been tested had inherited deletions, with a marked excess of maternally inherited deletions (maternal 61, paternal 18). Eight percent of the patients had died, over half of these within a month of birth and the majority within 6 months. All but one of the deaths were the result of congenital heart disease. Clinically significant immunological problems were very uncommon. Nine percent of patients had cleft palate and 32% had velopharyngeal insufficiency, 60% of patients were hypocalcaemic, 75% of patients had cardiac problems, and 36% of patients who had abdominal ultrasound had a renal abnormality. Sixty-two percent of surviving patients were developmentally normal or had only mild learning problems. The majority of patients were constitutionally small, with 36% of patients below the 3rd centile for either height or weight parameters.

Adolescent↗

Spondylo-mesomelic-acrodysplasia with joint dislocations and severe combined immunodeficiency: a newly recognised immuno-osseous dysplasia.

A newborn girl is described with an association of spondylo-acrodysplasia, mild short limbed dwarfism without significant metaphyseal changes, joint dislocations, and severe immune system dysfunction. This association is distinct from other known immuno-osseous dysplasias, including Schimke dysplasia, ADA deficiency with osseous changes, and Omenn phenotype with short limbed dwarfism.

Female↗

Conotruncal heart defect/microphthalmia syndrome: delineation of an autosomal recessive syndrome.

We report on three sibs born to healthy parents, one livebirth and two terminated pregnancies, presenting with a malformation complex characterised by conotruncal heart defect (CTHD), microphthalmia, genital anomalies, and facial dysmorphism. The recurrence of the association of CTHD, particularly truncus arteriosus, and microphthalmia in sibs has previously been reported in rare instances, but a correlation between the single descriptions has never been noted. CTHDs are included among the cardiac malformations characteristically associated with the group of syndromes caused by the microdeletion of chromosome 22q11, but no detectable hemizygosity has been found in our family. An autosomal recessive gene seems to be involved in syndromic patients with the combination of CTHD and microphthalmia. The map location of this gene is at present unknown, but autosomal recessive inheritance must be considered in genetic counselling of families with children presenting with this malformation complex.

Abnormalities, Multiple↗

Radial aplasia and chromosome 22q11 deletion.

We report on a neonate with deletion 22q11 (del22q11) presenting with facial dysmorphism, ocular coloboma, congenital heart defect, urogenital malformations, and unilateral radial aplasia. This malformation complex includes features frequently occurring in velocardiofacial syndrome as well as findings described in the CHARGE and VACTERL associations. To our knowledge, the present case is the first report of radial aplasia in del22q11. This observation further supports and extends the clinical variability of del22q11.

Abnormalities, Multiple↗

Recurrence risk figures for isolated tetralogy of Fallot after screening for 22q11 microdeletion.

Isolated tetralogy of Fallot (TF) has a multifactorial mode of inheritance in most cases, and recurrence risk rates of 2.5-3% have been attributed to first degree relatives of an affected child. In a subgroup of patients with a strong family history, the transmission of a monogenic trait has been suspected. Microdeletion 22q11 (del(22q11)) can cause TF in the setting of DiGeorge and velocardiofacial syndromes, and has also been related to familial conotruncal cardiac defects. Empirical risk figures in families after exclusion of del(22q11) have never been calculated. We have investigated the overall occurrence of congenital heart defect (CHD) in relatives of 102 patients with isolated non-syndromic TF previously screened for del(22q11). Our results show that the frequency of CHD is 3% in sibs, 0.5% in parents, 0.3% in grandparents, 0.2% in uncles or aunts, and 0.6% in first cousins. The recurrence risk rate for sibs in our series is the same as that previously estimated, indicating that after exclusion of patients with del(22q11) genetic counselling to patients with isolated TF should not be modified. A high concordance rate among our affected sibs has been documented. Gene(s) different from those located on chromosome 22q11 must be involved in causing familial aggregation of non-syndromic TF in these cases.

Adolescent↗

Prediction of myotonic dystrophy clinical severity based on the number of intragenic [CTG]n trinucleotide repeats.

We carried out a genotype-phenotype correlation study, based on clinical findings in 465 patients with myotonic dystrophy (DM), in order to assess [CTG] repeat number as a predictive test of disease severity. Our analysis showed that the DM subtypes defined by strict clinical criteria fall into three different classes with a log-normal distribution. This distribution is useful in predicting the probability of specific DM phenotypes based on triplet [CTG] number. This study demonstrates that measurement of triplet expansions in patients' lymphocyte DNA is highly valuable and accurate for prognostic assessment.

Disease Progression↗