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Biomedical subjects

A Ferlini

Publications and source records attributed to A Ferlini.

At least 37 records · Page 2Linked to original sources

Expression, regulation and localisation of dystrophin isoforms in human foetal skeletal and cardiac muscle.

We characterised the expression, localisation and developmental regulation of the three major dystrophin isoforms in human foetal skeletal and cardiac muscles and in the corresponding cultures. Gene expression studies in foetal cardiac muscle-tissue and cultures showed that the Muscle- and the Brain- but not the Purkinje-transcripts were always co-expressed. In skeletal muscle the Muscle-isoform was already present at 11.8 weeks while the Brain-isoform was detected only after 13 weeks. Myoblast cultures showed a similar sequence of isoform transcription. The Purkinje-isoform was never detected. Localisation studies showed that in cardiac muscle dystrophin was seen discontinuously at the sarcolemma from 8.5 weeks, and evenly expressed by 15 weeks. Cardiomyocyte cultures expressed desmin but not dystrophin after 7 days. Protein studies in foetal skeletal muscle suggested that dystrophin is expressed in the cytoplasm from 8.5 weeks and at the sarcolemma only after 10.5 weeks. Similar results were obtained in cultured myoblasts. This study shows that in cardiac muscle both the Muscle- and Brain-isoforms are transcribed in parallel from the very early stages of development, while in skeletal muscle transcription of the Muscle-isoform occurs first, followed by the Brain-isoform.

Bone and Bones↗

Novel transthyretin missense mutation (Thr34) in an Italian family with hereditary amyloidosis.

We report on the genetic and molecular characterisation of an Italian family with a late-onset, autosomal dominant transthyretin amyloidosis. The transthyretin gene was analysed by polymerase chain reaction (PCR), restriction generating PCR, and sequencing, allowing us to discover in one allele a novel point mutation. It consists of a G to C transversion at position 1692 of the genomic sequence, leading to a Thr for Arg substitution at the position 34 of the polypeptidic chain. This mutation is associated with a severe sensory-motor peripheral neuropathy and a restrictive cardiomyopathy.

Aged↗

The 5' region of intron 11 of the dystrophin gene contains target sequences for mobile elements and three overlapping ORFs.

We have characterised the 2371 bp 5' end of intron 11 of the dystrophin gene. Comparative analysis of this intronic region revealed homologies with the following sequences: regions containing mobile elements; target sites for numerous transcription factors, two resolvases, and a histone-like DNA binding protein; three eukaryotic promoters. In addition, we identified three partially overlapping ORFs, and transcription analysis confirmed that one of these is expressed, representing the first gene reported to overlap the human dystrophin gene. We have also characterised a 136 bp sequence rearranged in intron 11 in a patient affected by X-linked dilated cardiomyopathy due to a dystrophinopathy. This is a multiple copy sequence with features of a repetitive element. Its comparative analysis showed a very high homology with human genomic and EST regions, adjacent and clustered with Alu, LINE1, and THE elements. The pattern of homology suggests that it may represent a novel Alu-like, transcriptionally active sequence with a possible retrotransposable capacity. We hypothesise that the 5' region of the dystrophin intron 11, containing common target areas for the insertion of mobile elements, may have a role in the rearrangement of this novel Alu-like sequence.

Cardiomyopathy, Dilated↗

A novel Alu-like element rearranged in the dystrophin gene causes a splicing mutation in a family with X-linked dilated cardiomyopathy.

We have identified and characterized a genomic sequence with some features typical of Alu-like mobile elements rearranged into the dystrophin gene in a family affected by X-linked dilated cardiomyopathy. The Alu-like sequence rearrangement occurred 2.4 kb downstream from the 5' end of intron 11 of the dystrophin gene. This rearrangement activated one cryptic splice site in intron 11 and produced an alternative transcript containing the Alu-like sequence and part of the adjacent intron 11, spliced between exons 11 and 12. Translation of this alternative transcript is truncated because of the numerous stop codons present in every frame of the Alu-like sequence. Only the mutant mRNA was detected in the heart muscle, but in the skeletal muscle it coexisted with the normal one. This result is supported by the immunocytochemical findings, which failed to detect dystrophin in the patient's cardiac muscle but showed expression of a reduced level of protein in the skeletal muscle. Comparative analysis of the Alu-like sequence showed high homology with other repeated-element-containing regions and with several expressed sequence tags. We suggest that this Alu-like sequence could represent a novel class of repetitive elements, reiterated and clustered with some known mobile elements and capable of transposition. Our report underlines the complexity of the pathogenic mechanism leading to X-linked dilated cardiomyopathy but suggests that differences in tissue-specific expression of dystrophin mutations may be a common feature in this condition.

Adult↗

Identical de novo mutation at the D4F104S1 locus in monozygotic male twins affected by facioscapulohumeral muscular dystrophy (FSHD) with different clinical expression.

Facioscapulohumeral muscular dystrophy (FSHD) is a progressive hereditary neuromuscular disorder, transmitted in an autosomal dominant fashion. Its clinical expression is highly variable, ranging from almost asymptomatic subjects to wheelchair dependent patients. The molecular defect has been linked to chromosome 4q35 markers and has been related to deletions of tandemly repeated sequences located in the subtelomeric region detected by probe p13E-11 (D4F104S1). We describe a pair of monozygotic male twins affected by FSHD, carrying an identical de novo p13E-11 EcoRI fragment of paternal origin and showing great variability in the clinical expression of the disease, one being almost asymptomatic and the other severely affected. Their medical history was the same, with the exception of an anti-rabies vaccination performed at the age of 5 in the more severely affected twin. We hypothesise that the vaccination might have triggered an inflammatory immune reaction contributing to the more severe phenotype.

Adult↗

The role of immunocytochemistry and linkage analysis in the prenatal diagnosis of merosin-deficient congenital muscular dystrophy.

Complete or partial deficiency of the laminin alpha2 chain of merosin has been demonstrated in a proportion of children with classical congenital muscular dystrophy and linkage to the laminin alpha2 chain gene (LAMA2) on chromosome 6q2 has been established. As the laminin alpha2 chain is also expressed in the trophoblast, its detection and linkage analysis are useful tools for prenatal diagnosis. We report our experience of seven prenatal diagnoses in families with partial deficiency or total absence of the laminin alpha2 chain in the muscle of the propositi. In five instances, expression of the laminin alpha2 chain in the trophoblast was normal and linkage data suggested that the fetuses were unaffected. In one family, the immunocytochemical studies of the trophoblast showed the absence of laminin alpha2, suggesting that the fetus was affected. Linkage analysis confirmed that the fetus had inherited the two at-risk haplotypes. In one family with partial laminin alpha2 chain deficiency, the haplotype analysis was hampered by maternal DNA contamination. Immunocytochemical analysis of chorionic villus sampling showed a reduction in laminin alpha2 expression. The pregnancy was presumed to be at high-risk and terminated. However, subsequent analysis of fetal DNA indicated that the fetus was probably heterozygous. Our data suggest that immunocytochemical analysis of the trophoblast can detect abnormalities in affected fetuses and gives normal results in unaffected and carrier fetuses. Nevertheless, we recommend that linkage analysis to the LAMA2 locus is also studied in all cases.

Female↗

Prenatal diagnosis in merosin-deficient congenital muscular dystrophy.

Prenatal diagnosis was carried out in five merosin-deficient congenital muscular dystrophy (CMD) families. We studied both laminin-alpha 2 chain expression in trophoblast using immunocytochemistry and linkage analysis to the LAMA2 locus. In four families there was good agreement between the immunocytochemistry and linkage analysis results: in one case the trophoblast was negative for LAMA2 expression and haplotype analysis suggested the foetus was affected; in the other three cases the laminin-alpha 2 chain expression was normal and foetuses were found to be carriers. In the remaining family, a case of partial laminin-alpha 2 chain expression, the immunostaining of the trophoblast was weaker compared to the control. Linkage analysis, however, could not be performed because of maternal DNA contamination. After termination of pregnancy, the foetal muscle was studied and suggested weak laminin-alpha 2 chain expression. The haplotype analysis however showed that the foetus was probably a carrier, unless a double recombinant event had occurred. We conclude that a combination of immunocytochemistry and linkage analysis can be used for the prenatal diagnosis of merosin deficient CMD. The results are easy to interpret in families with total absence of the protein, while caution is required when dealing with families where partial expression occurs.

Antibodies, Monoclonal↗

Expression of laminin chains in skin in merosin-deficient congenital muscular dystrophy.

Laminin-2 (merosin) is a heterotrimer composed of alpha 2, beta 1 and gamma 1 chains. Approximately half of the cases with the classical form of congenital muscular dystrophy (CMD) have a deficiency of the laminin alpha 2 chain, encoded by the LAMA2 gene on chromosome 6q22. This disorder is often termed merosin-deficient CMD. Skeletal and cardiac muscle, and the peripheral and central nervous systems, all express laminin alpha 2 and can be affected in merosin-deficient CMD. Normal skin also expresses all three chains of laminin-2 at the epidermal/dermal junction, around hair follicles and in the sensory nerves. Skin biopsies can therefore be used to assess merosin status in patients. We show here an absence of laminin alpha 2 in skin from four cases of CMD with a severe phenotype and abnormal magnetic resonance image (MRI) of the brain, in contrast to normal expression in one case of mild CMD with normal MRI, and in five controls. An additional case of CMD had a partial deficiency of laminin alpha 2 in the skin and severe motor disability, but a normal MRI. Sensory nerves in this case showed normal expression of laminin alpha 2, in contrast to its absence in the severe cases. The expression of laminin beta 1 was also reduced in skin from cases of merosin-deficient CMD. In contrast to human fetal muscle, the laminin alpha 2 protein was not detected in fetal skin up to 23 weeks of gestation. The laminin beta 1 and gamma 1 chains, and the mRNA for laminin alpha 2, however, were present. Studies of mRNA of cultured skin cells suggest that fibroblasts are the major source of laminin alpha 2, not keratinocytes. Our data show that skin is useful for the assessment of merosin status in patients with CMD and that skin fibroblasts may be a useful source of tissue-specific RNA. In addition, we show that there is a tissue-specific difference in the developmental expression of the laminin alpha 2 protein.

Adolescent↗

Dystrophin gene abnormalities in two patients with idiopathic dilated cardiomyopathy.

Two new cases of dilated cardiomyopathy (DC) caused by dystrophinopathy are reported. One patient, a 24 year old man, had a family history of X linked DC, while the other, a 52 year old man, had sporadic disease. Each had abnormal dystrophin immunostaining in muscle or cardiac biopsy specimens, but neither had muscle weakness. Serum creatine kinase activity was raised only in the patient with familial disease. Analysis of dystrophin gene mutations showed a deletion of exons 48-49 in the patient with familial DC and of exons 49-51 in the other. Dystrophin transcription in cardiac tissue from the patient with sporadic disease showed abundant expression, predominantly of the muscle isoform. This study, together with previous reports, suggests that some patients with DC have a dystrophinopathy that can be diagnosed using a combination of biochemical and genetic analyses.

Adult↗

Refinement of the laminin alpha2 chain locus to human chromosome 6q2 in severe and mild merosin deficient congenital muscular dystrophy.

About half of the children with classical congenital muscular dystrophy (CMD) show an absence in their skeletal muscle of laminin alpha2 chain, one of the components of the extracellular matrix protein, merosin. Linkage analysis implicated the laminin alpha2 chain gene (LAMA2) on chromosome 6q2, now confirmed by the discovery of mutations in the laminin alpha2 chain gene. We have further investigated the location of the LAMA2 locus on chromosome 6q2, using both linkage analysis in nine informative families and homozygosity mapping in 13 consanguineous families. Four of these families only had mild or moderate down regulation of laminin alpha2 chain expression and a milder phenotype; the rest had no protein or only a trace. Haplotype analysis in all the informative families, including those with partial laminin alpha2 expression, was compatible with linkage to chromosome 6q2. This observation expands the spectrum of the phenotype secondary to laminin alpha2 chain deficiency. Our results suggest that the LAMA2 locus is more centromeric than previously proposed. Recombinant events place the locus between markers D6S470 and D6S1620 in an interval of less than 3 cM.

Chromosome Mapping↗

Decreased affinity of apolipoprotein AII to high-density lipoprotein in patients with transthyretin-related amyloidosis (Met30, Gln89, Pro36, and Thr34).

We previously reported that patients with familial amyloidotic polyneuropathy (FAP) (Met30) showed low plasma apolipoprotein AII (apoAII) levels and apolipoprotein AII/AI (apoAII/AI) ratio as the progression of the disease while plasma levels of apoAI, B, CII, CIII, and E were all within normal ranges. In the present study, we investigated these apolipoproteins contained in high density lipoprotein (HDL) extracted from plasma of FAP (Met30), and the levels of apoAII gene expression in the liver from patients with FAP (Met30). Plasma apoAII levels and the apoAII/AI ratio in extracted HDL in all the FAP types examined decreased compared with those in normal control subjects. Levels of apoAII mRNA expression in the liver of FAP (Met30) patients did not show significant changes compared with those in control subjects. These results suggest that decreased affinity of apoAII to HDL could not be compensated by overproduction of apoAII in the liver of the FAP patients and as a result of this phenomenon, plasma apoAII levels might decrease as the progression of FAP.

Amino Acid Sequence↗

X-linked bulbar and spinal muscular atrophy, or Kennedy disease: clinical, neurophysiological, neuropathological, neuropsychological and molecular study of a large family.

We report the clinical, neurophysiological, neuropsychological, neuropathological and molecular findings in a large family with X-linked bulbar and spinal muscular atrophy (X-BSMA). Molecular study, performed in 28 family members, showed an increase in the number of CAG repeats in 6 affected males (including 2 presymptomatic patients), and in 10 females, of whom 5 were obligate carriers. All symptomatic patients showed, besides the typical manifestation of X-BSMA, neurophysiological signs of sensory nerve involvement, and abnormal findings in neuropsychological tests. Sural nerve biopsy, performed in two patients, was consistent with axonal atrophy and slow-rate degeneration, with secondary demyelination. Neurophysiological alterations were also present in 6 out of 8 carriers, consisting of neurogenic EMG changes in 3 cases and abnormal sensory action potentials (SAP) and reduced conduction velocity of the sural nerve in 3 cases. Abnormalities of at last two neuropsychological tests were found in 6 out of 8 carriers. Alterations of the sensory nerves in X-BSMA patients have been previously reported in some cases; however, we demonstrate for the first time sensory nerve involvement also in carriers. Evidence of central nervous system involvement, with neuropsychological impairment in all symptomatic patients and in some carriers, is another feature of this family, not previously reported in X-BSMA. In spite of the variable phenotypic features, the number of CAG repeats ranged from 40 to 44 in the affected patients, indicating that phenotypic expression was not related to the size of the mutation, but was probably age-related.

Adolescent↗

Homozygosity and heterozygosity for the transthyretin Leu64 mutation: clinical, biochemical and molecular findings.

Transthyretin gene point mutations cause hereditary amyloidosis with an autosomal dominant pattern of inheritance. The disease usually manifests itself in heterozygous patients, although a few homozygotes have been reported. We describe two unrelated patients carrying the Leu64 mutation, one of whom presents a homozygous genotype (Family B). Homozygosity was confirmed by sequence analysis, RG-PCR and double one-dimensional electrophoresis of the plasma protein. Although the clinical picture of the homozygous patient of Family B was more severe than that shown by the heterozygous members of Family A, the variability often displayed by FAP patients does not allow any firm conclusion about the role of homozygosity in the seriousness of the disease.

Aged↗

Seven novel additional small mutations and a new alternative splicing in the human dystrophin gene detected by heteroduplex analysis and restricted RT-PCR heteroduplex analysis of illegitimate transcripts.

Around 35% of Duchenne and Becker muscular dystrophy (DMD/BMD) patients cannot be identified by techniques which identify major DMD rearrangements in the dystrophin gene. In order to characterize the gene defect in these patients, we screened 40 exons of the dystrophin gene by heteroduplex analysis on genomic DNA in 50 affected Italian males. Using conventional heteroduplex analysis and a modified heteroduplex analysis on restricted RT-PCR products of illegitimate transcripts, restricted RT-PCR heteroduplex analysis, we were able to identify 7 novel small mutations and a new alternative splicing involving exon 25 of the dystrophin gene in peripheral blood lymphocytes and skeletal muscle transcripts.

Alternative Splicing↗

Electromyographic findings in transthyretin (TTR)-related familial amyloid polyneuropathy (FAP).

Affected members and asymptomatic relatives of 9 Italian families with transthyretin (TTR)-related hereditary amyloidosis carrying different TTR mutations (Met30, Pro36, Ala47, Ala49, Gln89) were followed up with repeated EMG investigations. In 3 patients, spontaneous myoclonic discharges with synkinesia were found in the facial muscles. EMG signs of chronic denervation with features of proximal neural involvement were also found in proximal limb muscles. Neuropathy worsened step-wise with progressing clinical stage. Sympathetic skin responses progressively decreased, disappearing in the late stages of the disease. Symptomatic relatives carrying the TTR mutations had significantly reduced sensory conduction velocities and amplitudes of compound motor action potentials. Follow-up studies in 3 patients after liver transplant showed progression of sensory-motor neuropathy 1 year after the transplant, and a slight improvement 18 months later. Based on our electrophysiological findings and a review of the literature, we propose that TTR-related FAP type I be considered not only a peripheral neuropathy, but also a meningoradiculopathy due to deposition of amyloidogenic TTR in the leptomeninges.

Adult↗

Hydrocephalus, skeletal anomalies, and mental disturbances in a mother and three daughters: a new syndrome.

We report on a family in which a mother and her 3 daughters have delayed psychomotor development and/or psychosis, hydrocephalus with white matter alterations, arachnoid cysts, skeletal anomalies consisting of brachydactyly, and Sprengel anomaly. Biochemical and cytogenetic analyses were normal on all 4 patients. The pattern of inheritance, clinical manifestations, and variability of expression suggest that this is a new hydrocephalus syndrome possibly transmitted as an X-linked dominant trait.

Adolescent↗