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J Laporte

Publications and source records attributed to J Laporte.

At least 19 recordsLinked to original sources

Localization of a human nucleoporin 155 gene (NUP155) to the 5p13 region and cloning of its cDNA.

Nucleoporins are the main components of nuclear pore complexes (NPCs) involved in nucleo-cytoplasmic transport. Starting with an expressed DNA fragment retrieved by exon trapping from pooled human BAC clones mapped to the short arm of chromosome 5, we identified a human nucleoporin cDNA sequence by PCR from a human testis cDNA library. The coding sequence showed high homology to that of the rat nucleoporin 155 (Nup155) cDNA. FISH analysis with the human BAC clone as probe localized the human NUP155 gene to chromosome band 5p13. Northern analysis showed that the human NUP155 gene was expressed at different levels in all tissues tested. Two species of transcripts were observed with estimated lengths of 5.4 and 4.7 kb, respectively, in concordance with the finding of two alternative polyadenylation sites in the cDNA. The genomic location of the human NUP155 gene suggests a possible role in the mental and developmental retardation associated with hemizygous deletions of the 5p13 region.

Amino Acid Sequence

Identification of novel mutations in the MTM1 gene causing severe and mild forms of X-linked myotubular myopathy.

X-linked myotubular myopathy (XLMTM) is a congenital muscular disease characterized by severe hypotonia and generalized muscle weakness, leading in most cases to early postnatal death. The gene responsible for the disease, MTM1, encodes a dual specificity phosphatase, named myotubularin, which is highly conserved throughout evolution. To date, 139 MTM1 mutations in independent patients have been reported, corresponding to 93 different mutations. In this report we describe the identification of 21 mutations (14 novel) in XLMTM patients. Seventeen mutations are associated with a severe phenotype in males, with death occurring mainly before the first year of life. However, four mutations-three missense (R241C, I225T, and novel mutation P179S) and one single-amino acid deletion (G294del)-were found in patients with a much milder phenotype. These patients, while having a severe hypotonia at birth, are still alive at the age of 4, 7, 13, and 15 years, respectively, and display mild to moderate muscle weakness.

Adolescent

Confirmation of prenatal diagnosis results of X-linked recessive myotubular myopathy by mutational screening, and description of three new mutations in the MTM1 gene.

X-linked recessive myotubular myopathy (XLMTM; MTM1) is a severe neonatal disorder often causing perinatal death of the affected males. The responsible gene, designated MTM1, was localized to proximal Xq28 and recently isolated. The characterization of MTM1 allowed us to screen for causing mutations in three families, previously investigated by linkage analysis. Using exon amplification, single strand conformation polymorphism, and subsequent sequencing analysis, three new mutations and their mutational origin were characterized by analyzing 10 exons. An acceptor splice site and a frameshift mutation were correlated with the concurrent appearance of XLMTM in two families. A third intronic mutation was also analyzed by reverse transcription PCR and revealed a cryptic splice site mutation cosegregating with the presumed XLMTM haplotype in the third family. These results further support the implication of the MTM1 gene in XLMTM and allow efficient and reliable carrier and prenatal diagnosis in these families. Direct mutational diagnosis of families at risk in combination with haplotype analysis avoid the drawbacks using only linkage analysis, make genetic counselling far more reliable, and early clinical management of this disease more appropriate. Moreover, pedigree analyses provide first information on de novo mutation frequency in this newly identified human disease gene.

DNA Mutational Analysis

Characterization of the myotubularin dual specificity phosphatase gene family from yeast to human.

X-linked myotubular myopathy (XLMTM) is a severe congenital muscle disorder due to mutations in the MTM1 gene. The corresponding protein, myotubularin, contains the consensus active site of tyrosine phosphatases (PTP) but otherwise shows no homology to other phosphatases. Myotubularin is able to hydrolyze a synthetic analogue of tyrosine phosphate, in a reaction inhibited by orthovanadate, and was recently shown to act on both phosphotyrosine and phosphoserine. This gene is conserved down to yeast and strong homologies were found with human ESTs, thus defining a new dual specificity phosphatase (DSP) family. We report the presence of novel members of the MTM gene family in Schizosaccharomyces pombe, Caenorhabditis elegans, zebrafish, Drosophila, mouse and man. This represents the largest family of DSPs described to date. Eight MTM-related genes were found in the human genome and we determined the chromosomal localization and expression pattern for most of them. A subclass of the myotubularin homologues lacks a functional PTP active site. Missense mutations found in XLMTM patients affect residues conserved in a Drosophila homologue. Comparison of the various genes allowed construction of a phylogenetic tree and reveals conserved residues which may be essential for function. These genes may be good candidates for other genetic diseases.

Amino Acid Sequence

Extensive germinal mosaicism in a family with X linked myotubular myopathy simulates genetic heterogeneity.

A family with two male cousins affected with myotubular myopathy (MTM) was referred to us for genetic counselling. Linkage analysis appeared to exclude the Xq28 region. As a gene for X linked MTM was recently identified in Xq28, we screened the obligatory carrier mothers for mutation. We found a 4 bp deletion in exon 4 of the MTM1 gene, which originated from the grandfather of the affected children and which was transmitted to three daughters. This illustrates the importance of mutation detection to avoid pitfalls in linkage analysis that may be caused by such cases of germinal mosaicism.

DNA Mutational Analysis

The presence of cytoplasmic antineutrophil cytoplasmic antibodies (C-ANCA) in the course of subacute bacterial endocarditis with glomerular involvement, coincidence or association?

Antineutrophil cytoplasmic antibodies positivity with cytoplasmic pattern (C-ANCA) and proteinase-3 (PR-3) specificity was found in two patients with both subacute bacterial endocarditis (SBE) and glomerular involvement. Renal biopsy showed membranoproliferative glomerulonephritis in one case and focal segmental glomerulonephritis in the second case. Immunofluorescence study showed granular immune deposits in both cases evocating immune complex glomerulonephritis. Renal and biological manifestations disappeared with clinical improvement secondary to antibiotherapy. Physicians have to consider the possible occurrence of such C-PR-3 ANCA, claimed to be specific markers for Wegener's granulomatosis, in infectious diseases such as SBE. Hence we focus on the necessity of performing a renal biopsy with light microscopy and immunofluorescence studies in all patients with ANCA associated glomerular disease.

Antibodies, Antineutrophil Cytoplasmic

Cloning and characterization of an alternatively spliced gene in proximal Xq28 deleted in two patients with intersexual genitalia and myotubular myopathy.

We have identified a novel human gene that is entirely deleted in two boys with abnormal genital development and myotubular myopathy (MTM1). The gene, F18, is located in proximal Xq28, approximately 80 kb centromeric to the recently isolated MTM1 gene. Northern analysis of mRNA showed a ubiquitous pattern and suggested high levels of expression in skeletal muscle, brain, and heart. A transcript of 4.6 kb was detected in a range of tissues, and additional alternate forms of 3.8 and 2.6 kb were present in placenta and pancreas, respectively. The gene extends over 100 kb and is composed of at least seven exons, of which two are noncoding. Sequence analysis of a 4.6-kb cDNA contig revealed two overlapping open reading frames (ORFs) that encode putative proteins of 701 and 424 amino acids, respectively. Two alternative spliced transcripts affecting the large open reading frame were identified that, together with the Northern blot results, suggest that distinct proteins are derived from the gene. No significant homology to other known proteins was detected, but segments of the first ORF encode polyglutamine tracts and proline-rich domains, which are frequently observed in DNA-binding proteins. The F18 gene is a strong candidate for being implicated in the intersexual genitalia present in the two MTM1-deleted patients. The gene also serves as a candidate for other disorders that map to proximal Xq28.

Alternative Splicing

Phosphoramidon and thiorphan suppress the generation of endothelin (ET) from exogenous big-endothelin by guinea pig Clara cells.

The formation of endothelins (ET) from exogenous big-ET-1, -2 and -3 was investigated in cultured guinea pig Clara cells. When Clara cells were incubated with 10(-9) or 10(-8) M human big-ET-1 (1-38), the release of ET was 69.9 +/- 7.6 and 221.6 +/- 25 fmol/ml respectively, after 1 h incubation period. Treatment of Clara cells with 1 mM phosphoramidon strongly suppressed (80%) the conversion of big-ET-1 to ET-1 during 1, 2 and 6 h incubation periods. Treatment of Clara cells with thiorphan (1 mM), an inhibitor of neutral endopeptidase, decreased by 44 and 26% the levels of immunoreactive endothelin (ir-ET) in the cell supernatant respectively, after 1 and 2 h incubation periods. When Clara cells were incubated with 10(-8) M human big-ET-2 (1-38), the release of ir-ET was 287.6 +/- 8.9 fmol/ml after a 1 h incubation period. Phosphoramidon and thiorphan (1 mM) reduced the amount of ir-ET generated from exogenous human big-ET-2 (10(-8) M) by 69 and 56%, respectively. When Clara cells were incubated with 10(-8) M human big-ET-3 (1-41), the release of ET was not increased after a 1 h incubation period. Our results suggest that guinea pig Clara cells convert exogenous big-ET-1 and -2 but not big-ET-3 into ET-1 and ET-2, respectively, through metalloproteinases sensitive to both phosphoramidon and thiorphan.

Animals

Characterization of mutations in the myotubularin gene in twenty six patients with X-linked myotubular myopathy.

A candidate gene, myotubularin, involved in the pathogenesis of X-linked myotubular myopathy (MTM1) was isolated recently. Mutations originally were identified in 12% of patients examined for 40% of the coding sequence, raising the possibility that additional genes could be responsible for a proportion of X-linked cases. We report here the identification of mutations in 26 of 41 independent male patients with muscle biopsy-proven MTM, by direct genomic sequencing of 92% of the known coding sequence of the myotubularin gene. Eighteen patients had point mutations, including one A/G transition found in four patients which alters a splice acceptor site in exon 12 and leads to a three amino acid insertion. Six patients had small deletions involving <6 bp, while two larger deletions encompassed two or six exons, respectively. No differences were noted among the types of mutations between familial and sporadic cases. However, all of the five patients with a mild phenotype had missense mutations. While 50% of the mutations were found in exons 4 and 12, and three distinct mutations were found in more than one patient, no single mutation accounted for more than 10% of the cases. The low frequency of large deletions and the varied mutations identified suggest that direct mutation screening for molecular diagnosis may require gene sequencing.

Exons

Mutations in the MTM1 gene implicated in X-linked myotubular myopathy. ENMC International Consortium on Myotubular Myopathy. European Neuro-Muscular Center.

X-linked recessive myotubular myopathy (XLMTM) is characterized by severe hypotonia and generalized muscle weakness, with impaired maturation of muscle fibres. The gene responsible, MTM1, was identified recently by positional cloning, and encodes a protein (myotubularin) with a tyrosine phosphatase domain (PTP). Myotubularin is highly conserved through evolution and defines a new family of putative tyrosine phosphatases in man. We report the identification of MTM1 mutations in 55 of 85 independent patients screened by single-strand conformation polymorphism for all the coding sequence. Large deletions were observed in only three patients. Five point mutations were found in multiple unrelated patients, accounting for 27% of the observed mutations. The possibility of detecting mutations and determining carrier status in a disease with a high proportion of sporadic cases is of importance for genetic counselling. More than half of XLMTM mutations are expected to inactivate the putative enzymatic activity of myotubularin, either by truncation or by missense mutations affecting the predicted PTP domain. Additional mutations are missenses clustered in two regions of the protein. Most of these affect amino acids conserved in the homologous yeast and Caenorhabditis elegans proteins, thus indicating the presence of other functional domains.

Alternative Splicing

Effects of dexamethasone on the basal and cytokine-stimulated release of endothelin-1 from guinea-pig cultured tracheal epithelial cells.

Endothelins (ETs) are potent bronchoconstrictor agents postulated to contribute to the pathophysiology of asthma and other respiratory disorders. An increase in both the expression and release of immunoreactive (ir) ETs was reported in bronchial epithelial cells and the bronchoalveolar lavage fluid of asthmatic patients. We investigated whether dexamethasone (DEX), a potent anti-inflammatory and anti-asthmatic drug, regulates the basal and stimulated release of ETs from guinea-pig cultured tracheal epithelial cells. These airway epithelial cells spontaneously release ET-1 over 24 h. When incubated in the presence of 10(-7) and 10(-6) M DEX for 24 h, basal production of ET-1 decreased by 32 and 29%. Lipopolysaccharide (LPS; 1, 5, 10 micrograms/mL), tumor necrosis factor-alpha (TNF alpha; 5, 10 ng/mL), and interleukin-1 beta (IL-1 beta; 1, 5 ng/mL) significantly increased the basal release of ET-1 after 24 h. When these cells were pretreated with DEX (10(-7) M) for a 24-h period, then incubated in the presence of LPS (10 micrograms/mL), TNF alpha (10 ng/mL), or IL-1 beta (1 ng/mL) for another 24 h, the stimulated release of ET-1 was inhibited by 48, 31, and 38%, respectively. At 10(-6) M, DEX decreased the stimulated release by 45, 37, and 46%, respectively. The present results show that DEX can regulate the basal release and inhibit the pro-inflammatory cytokine-stimulated production of ET-1 from guinea-pig cultured tracheal epithelial cells. They suggest that the beneficial effect of glucocorticoids in asthma may be related to the inhibition of ET synthesis.

Animals

Effect of IL-1 beta on responses of cultured human airway smooth muscle cells to bronchodilator agonists.

Decreased beta-adrenergic responsiveness is a characteristic feature of asthma. In order to determine whether cytokines released in the asthmatic airway contribute to this phenomenon, we measured changes in stiffness of cultured human airway smooth muscle (HASM) cells induced by isoproterenol (ISO) in control HASM cells and HASM cells pretreated with IL-1 beta (20 ng/ml for approximately 42 h). Stiffness was measured by magnetic twisting cytometry. HASM cells were obtained from normal tracheal tissue obtained at lung transplant, and studied in passages 4-7. In control cells, ISO caused a dose-related decrease in cell stiffness. IL-1 beta had no effect on baseline cell stiffness. However, IL-1 beta caused a rightward shift in the concentration-response curve to ISO and decreased the maximal effectiveness of this agonist. Decreased responses to ISO were also obtained with 2 ng/ml IL-1 beta, or when cells were pretreated with IL-1 beta (20 ng/ml) for 22 h. This effect of IL-1 beta was not altered by pretreatment of the cells with pertussis toxin (100 ng/ml throughout the IL-1 beta exposure period). IL-1 beta also significantly attenuated the ability of prostaglandin E2 (PGE2) to decrease cell stiffness. In contrast, IL-1 beta had no effect on cell stiffness responses to dibutryl cAMP, a cell permeant analog of cAMP suggesting that the cytokine does not influence either the ability of cAMP to activate kinases, or the targets of these kinases which ultimately mediate cell relaxation. IL-1 beta (20 ng/ml for 40 h) caused a small (30%) but significant (P < 0.02) increase in basal cAMP, but also resulted in a 2-3-fold decrease in the changes in cAMP formation induced by either ISO or PGE2. In contrast, IL-1 beta had no effect on cAMP formation in response to forskolin, suggesting that IL-1 beta does not mediate its effects via changes in the expression or activity of adenylyl cyclase. Pretreatment with IL-1 beta had no significant effect on beta 2 adrenoceptor number assessed by [125I]-CYP binding in these cells, nor was there any significant effect of IL-1 beta on Gsa expression assessed by Western blot. In summary, our results indicate that IL-1 beta causes a concentration- and time-dependent decrease in responses of HASM cells to ISO and are consistent with the hypothesis that the effects of IL-1 beta are mediated by uncoupling of beta-receptors from Gs-induced activation of adenylyl cyclase.

Adenylyl Cyclases

[Value of MRI with injection of gadolinium in the diagnosis of mitral ring abscess. Apropos of a case].

Transoesophageal echocardiography is the investigation of choice for the diagnosis of valvular vegetations in infectious endocarditis but the diagnosis of an associated ring abscess is sometimes difficult especially in patients with valvular prostheses or calcifications which are in important source of artefacts. The authors report a case of mitral annular abscess confirmed at surgery and comment on the diagnostic and prognostic value of cardiac MRI. MRI showed an abnormal cavity directly related to the mitral annulus and separated from the left ventricle by a low intensity signal which increased after injection of gadolinium suggesting an inflammatory origin and therefore arising from the abscess. The cavity was heterogeneous in T1 associating zones of low intensity with high intensity signals increasing in T2 on the second echo (thrombus and necrosis). Cine-MRI showed non communication between the abscess cavity and the left ventricle or atrium.

Abscess

A 900-kb cosmid contig and 10 new transcripts within the candidate region for myotubular myopathy (MTM1).

The X-linked myotubular myopathy locus (MTM1) has been assigned to the Xq28 region by linkage analysis. By observation of an interstitial deletion in a female patient, the candidate region could be further reduced to a region of 600 kb flanked by the markers DXS304 and DXS497. We describe here cosmid contigs covering a region of 900 kb, including the entire MTM1 candidate region. Cosmids from the region were used to construct an enriched cDNA library from this area. Filter grids carrying this library were then screened by hybridization with whole cosmid clones, with CpG island-containing fragments from linking clones located in the area, and with total exon trap products of cosmid clones from the candidate region. In this analysis, 10 new transcripts were identified and localized precisely within the map. Genes in this area are candidates for MTM1 and a number of other diseases localized by genetic linkage studies to the chromosomal band Xq28.

Adult