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Biomedical subjects

J Moreau

Publications and source records attributed to J Moreau.

At least 73 records · Page 4Linked to original sources

Developmentally regulated alternative splicing of mRNAs encoding N-terminal tau variants in the rat hippocampus: structural and functional implications.

Tau protein variants are axonal microtubule-associated phosphoproteins whose expression correlates with developmentally regulated neurite outgrowth. A single gene encodes multiple tau transcripts via complex alternative splicing. We studied the expression of the mRNAs encoding N-terminal variants of tau, and we showed distinct alternative splicing of exons 2 and 3 in nervous tissues of the adult rat, including the inner ear, hippocampus, cortex, striatum, brainstem, cerebellum, olfactory bulb and retina. Using the reverse transcriptase-coupled polymerase chain reaction and in situ hybridization, we then focused our developmental study on hippocampal neurons, both in vivo and in vitro, to address the developmental and spatial expression of the alternatively spliced mRNAs encoding N-terminal variants of tau. Tau mRNAs devoid of exons 2 and 3 were present throughout development, although their levels decreased in adults. Those containing exon 2 but not exon 3 were already present in the hippocampus of newborn rats and their levels increased during the first postnatal week, mainly in the pyramidal cell layer. Tau RNAs containing exons 2 and 3 appeared at the end of this period in the pyramidal cell layer and in the dentate granule cells. Exon 2-containing mRNAs seemed to be associated with cells undergoing axonal sprouting, while exon 3-containing RNAs were expressed in mature neurons that had established their connections. The timing and pattern of tau alternative splicing were maintained in cultured hippocampal neurons, suggesting that splicing processes are independent of the organized connectivity and of the environmental cues provided in vivo. Secondary structure predictions of tau variants revealed that the insertion of the exon 3-encoded domain substantially modifies the secondary structure of the N-terminal region of tau. This N-terminal heterogeneity may confer distinct regulatory roles on the tau variants during ontogeny and may contribute to plasticity in the adult rat brain.

Alternative Splicing↗

Frequency and risk factors of recurrent pain during refeeding in patients with acute pancreatitis: a multivariate multicentre prospective study of 116 patients.

BACKGROUND/AIMS: The period of refeeding in patients with acute pancreatitis is critical because they may have pain relapse. A multicentre, multidimensional, prospective study was performed to assess the frequency and the risk factors of pain relapse in these patients. METHODS: Patients were included if they had acute pancreatitis severe enough to stop oral feeding for more than 48 hours. Clinical, biochemical, radiological, and therapeutic data were prospectively recorded and analysed by unidimensional and multidimensional analysis. The moment to refeed patients was chosen by the clinician but the diet was the same in all centres. RESULTS: A total of 116 patients were included with a Ranson's bioclinical score > or = 3 in 35% and a Balthazar's CT score > or = D in 42%. The cause of acute pancreatitis was biliary in 47% and alcohol misuse in 31%. During the oral refeeding period, 21% of the patients had pain relapse. This occurred on days 1 and 2 in 50% of patients. The duration of the painful period was longer in patients who relapsed than in others (p < 0.002). Pain relapse occurred in 39% of patients with a serum lipase concentration > 3x the upper limit of the normal range the day before refeeding and in 16% of other patients (p < 0.03). Patients with higher Balthazar's CT scores had pain relapse more often than the others (p < 0.002). None of the therapeutic procedures significantly modified the frequency of pain relapse. Using multidimensional analysis, Balathazar's CT score, period of pain, and serum lipase concentration the day before refeeding were independently associated with an increased risk of pain relapse. At a threshold of 0.5, a logistic score had a 37% sensitivity, 95% specificity, and 83% accuracy to predict pain relapse. Pain relapse nearly doubled total hospital stay and hospital stay after the first attempt at oral refeeding. CONCLUSION: Pain relapse occurred in one fifth of the patients with acute pancreatitis during oral refeeding and was more common in patients with necrotic pancreatitis and with longer periods of pain. The results of this study can be used to predict high risk patients and are a first step in the prevention of pain relapse.

Acute Disease↗

[Immunocompromised travelers].

More and more immunocompromised people travel abroad especially in tropical countries where infectious risks are high. Before leaving, these subjects must consult their general practitioner who will determine their fitness in function of type of immunodeficiency, travel destination, availability of medical care at the destination, and possibility of medical evacuation. Counseling should also be provided concerning the precautions necessary to avoid the hazards of exposure to fecal material, venereal disease, insect bites, and sun. Antimalarial drug prophylaxis is the same as for uncompromised subjects. Advising immunocompromised subjects about vaccinations is difficult since there is no consensus on the subject. Administration of inert vaccines is usually recommended but their effectiveness is often diminished and harmful effects have been observed in HIV-infected subjects. Administration of live vaccines is always contraindicated in severely immunocompromised subjects but some live vaccines can be used in moderately immunocompromised subjects. The guidelines for vaccination differ depending on the underlying cause of immunodeficiency: congenital defects, cancer, hemopathy, treatment with immunosuppressors or corticosteroids (transplant patients and patients with systemic disease), HIV-infection, or spleen dysfunction. If there is a high risk of contracting a disease for which vaccination is contraindicated, drug prophylaxis or administration of immunoglobulins can be an alternative. If not, travel should either be postponed or the destination should be changed.

Counseling↗

Alpha-brain spectrin mRNA belongs to the population of intradendritically transported mRNAs.

Brain spectrin is a cytoskeletal protein involved in neuronal polarization and differentiation. We have studied the intraneuronal expression of non-erythroid (NE) alpha-spectrin mRNA in the rat brain during the development of the CA3 pyramidal cells, and compared it with alpha-tubulin mRNA expression. In contrast to alpha-tubulin expression, which remains located in the neuronal somata, NE alpha-spectrin mRNA was present in the dendritic compartment during the first 2 weeks of life. NE alpha-Brain spectrin mRNA transport into the dendrites coincides with critical development events, including dendritic arborization, growth and synaptogenesis, and could be dependent on the appearance of synaptic activity at the mossy fibre/CA3 synapse.

Animals↗

Structure of the MDM2 oncoprotein bound to the p53 tumor suppressor transactivation domain.

The MDM2 oncoprotein is a cellular inhibitor of the p53 tumor suppressor in that it can bind the transactivation domain of p53 and downregulate its ability to activate transcription. In certain cancers, MDM2 amplification is a common event and contributes to the inactivation of p53. The crystal structure of the 109-residue amino-terminal domain of MDM2 bound to a 15-residue transactivation domain peptide of p53 revealed that MDM2 has a deep hydrophobic cleft on which the p53 peptide binds as an amphipathic alpha helix. The interface relies on the steric complementarity between the MDM2 cleft and the hydrophobic face of the p53 alpha helix and, in particular, on a triad of p53 amino acids-Phe19, Trp23, and Leu26-which insert deep into the MDM2 cleft. These same p53 residues are also involved in transactivation, supporting the hypothesis that MDM2 inactivates p53 by concealing its transactivation domain. The structure also suggests that the amphipathic alpha helix may be a common structural motif in the binding of a diverse family of transactivation factors to the TATA-binding protein-associated factors.

Binding Sites↗

H2A.ZI, a new variant histone expressed during Xenopus early development exhibits several distinct features from the core histone H2A.

We have isolated from a subtractive cDNA library of Xenopus laevis a novel transcript, H2A.ZI, which belongs to the H2A.Z variant gene family. Characterization of its expression during oogenesis and development shows significant differences from the expression of the core histone H2A. First, H2A.ZI mRNA is mainly detected only during oogenesis and after the midblastula transition, whereas H2A is constitutively expressed, at much higher levels, throughout embryonic growth. Second, in contrast with H2A, the variant H2A.ZI is polyadenylated during development. Third, expression of H2A.ZI is uncoupled from the S phase after gastrula, whereas synthesis of the core histone H2A mRNA is tightly controlled to DNA replication. Interestingly, H2A.ZI is less charged in the N-terminal tail which is crucial for chromatin-mediated repression. The characteristics of H2A.ZI suggest that its incorporation into nucleosomes would lead to a chromatin structure more competent for gene expression during development.

Amino Acid Sequence↗

The effect of S-(+)-boldine on the alpha 1-adrenoceptor of the guinea-pig aorta.

1. The cardiovascular activity of S-(+)-boldine, an aporphine alkaloid structurally related to papaverine, was determined. The work includes functional studies on guinea-pig isolated aorta contracted with noradrenaline, caffeine, KCl or Ca2+, and on guinea-pig trachea contracted with acetylcholine or histamine. 2. S-(+)-boldine inhibited in a concentration-dependent manner the contractile response evoked by noradrenaline (10 microM) in guinea-pig aorta (IC50 = 1.4 +/- 0.2 microM) while the KCl depolarizing solution (60 mM)- or the Ca2+ (1 mM)-induced contractions were only partially affected by boldine up to 300 microM. In contrast, papaverine relaxed noradrenaline (NA), KCl or Ca2+ induced contractions showing similar IC50 values in all cases. S-(+)-boldine had a greater potency on the contraction elicited by NA whereas papaverine acted in a non-selective manner. 3. S-(+)-boldine was found to be an alpha 1-adrenoceptor blocking agent in guinea-pig aorta as revealed by its competitive antagonism of noradrenaline-induced vasoconstriction (pA2 = 5.64 +/- 0.08), and its potency was compared with that of prazosin (pA2 = 8.56 +/- 0.24), a known potent alpha 1-adrenoceptor antagonist. In contrast, papaverine caused rightward shifts of the NA concentration-response curves with depression of maximal response indicating that it acts as a non-competitive antagonist. 4. Contraction of guinea-pig aorta induced by caffeine (60 mM) in a Ca(2+)-containing Krebs solution was not affected by a 60 min incubation period with different doses of S-(+)-boldine (1-300 microM). Papaverine inhibited partially this caffeine-induced contraction at the maximal dose used (100 microM). 5. Inositol phosphates formation induced by noradrenaline (10 microM) in guinea-pig thoracic aorta was inhibited by S-(+)-boldine (30 microM) but not by papaverine (10 microM). 6. Contractions of guinea-pig trachea caused by acetylcholine (100 microM) or histamine (10 microM) were not modified by S-(+)-boldine (0.1-100 microM). 7. These results provide evidence that S-(+)-boldine, an aporphine alkaloid, has interesting properties as an alpha 1-adrenoceptor blocker in vascular smooth muscle, and acts as a competitive antagonist of the alpha 1-adrenoceptor present in the guinea pig aorta.

Adrenergic alpha-1 Receptor Antagonists↗

Localization of mRNAs for adrenoleukodystrophy and the 70 kDa peroxisomal (PMP70) proteins in the rat brain during post-natal development.

Adrenoleukodystrophy (ALD) is a genetic demyelinating disorder caused by the mutation of a gene encoding a 75-kDa peroxisomal protein (ALDP) that belongs to the superfamily of ATP binding casette (ABC) transporters. The PMP 70 gene codes for another peroxisomal ABC transporter that shows 38.5% amino acid identity with ALDP. ALDP and PMP70 have the structure of half transporter and could possibly heterodimerize to form a full transporter within the peroxisomal membrane. Using in situ hybridization histochemistry in rat brain, we demonstrate that ALD and PMP70 mRNAs have different spatial and temporal expression during postnatal development. Whereas expression of PMP 70 mRNA was low at birth and culminates between the 2nd and 3rd week in hippocampus and cerebellum, maximum expression of ALDP was found at birth in all brain areas and decreased thereafter. The absence of coordinated expression of ALD and PMP70 genes suggests therefore that ALD and PMP70 proteins are unlikely to function as exclusive and obligatory partners in the brain.

ATP-Binding Cassette Transporters↗

N-Methyl-D-aspartate receptor subunits NR1 and NR2C are overexpressed in the inferior colliculus of audiogenic mice.

Some non-DBA2 Albino Swiss mice exhibit noise induced epileptic seizures during a short period of postnatal development. Because N-methyl-D-aspartate (NMDA) glutamate ionotropic receptors are involved in the occurrence of audiogenic seizures, we investigated by in situ hybridization methods, the expression of the different subunits (NR1, NR2A, NR2B, NR2C) of this receptor in the central nucleus of the inferior colliculus (IC), a main relay of the auditory pathways. At postnatal day 20, the NR2C subunit is highly expressed in the IC of convulsive mice, while in non-convulsive mice a slight signal is only found for NR1, NR2A, and NR2B. In adult mice, the NR1 and NR2A signals are observed while the NR2B signal is almost undetectable. The audiogenic susceptibility may be related to the transient expression of the NR2C subunit during a brief neonatal period during which synaptic reorganization happens.

Acoustic Stimulation↗

Isolation of cDNAs from maternal mRNAs specifically present during early development.

In many animals the regulation of early embryonic development is under the control of mRNAs of maternal origin. We describe here the construction and characterization of a subtractive cDNA library to isolate genes whose expression is restricted to early development. Such genes might be potentially involved in developmental diseases, if accidentally expressed during adult life. Seven yet unknown genes preferentially expressed in the oocyte and present during early development were isolated from this library by differential screening. Their transcription patterns provide evidence for a selective expression during oogenesis and the existence of a gene family specifically implicated in functions linked to early embryogenesis.

Animals↗

Cytosine arabinoside induces apoptosis in cerebellar neurons in culture.

Cytosine arabinoside (AraC) is a pyrimidine antimetabolite that prevents cell proliferation by inhibiting DNA synthesis. We report that AraC kills cultured cerebellar neurons in a concentration-dependent fashion with an EC50 of approximately 60 microM when added shortly after seeding. This cell death has apoptotic features because we observed (1) morphology of apoptotic nuclei as judged by DNA staining with Hoechst 33258, (2) DNA fragmentation with typical ladder pattern on agarose gel, (3) positive nuclear labeling with a specific in situ DNA fragmentation staining, (4) prevention by deoxycytidine (IC50 = 1 microM), protein, and RNA synthesis inhibitors, and (5) release of DNA fragments in the incubating medium. We have also observed that several proteins were overexpressed in AraC-treated neurons by two-dimensional polyacrylamide gel electrophoresis. We conclude that AraC induces a signal that triggers a cascade of new mRNA and protein synthesis, leading to apoptotic cell death in cultured cerebellar granule cells.

Animals↗

Functional, biochemical and morphological studies on human bronchi after cryopreservation.

1. Human isolated bronchi have been investigated as fresh tissue or after storage (7 and 30 days) at -196 degrees C in foetal calf serum containing 1.8 M dimethyl sulphoxide. 2. After cryopreservation, the maximal contractile response to acetylcholine (3 mM) was reduced (approximately 25%) but the difference did not reach significance statistically. Maximal responses to other spasmogens tested (histamine, [Nle10]NKA(4-10), bradykinin, leukotriene D4, U46619, and KCl) did not differ between unfrozen and frozen/thawed tissues. The sensitivity of cryopreserved tissues to the constrictor agents tested was similar to that of fresh tissues. 3. The accumulation of inositol phosphates produced by acetylcholine in human bronchus in vitro was similar in fresh and cryostored (30 days) tissues. 4. Relaxant responses of acetylcholine (0.3 microM)-precontracted preparations to theophylline, isoprenaline, rolipram and sodium nitroprusside were unchanged after storage with the exception of the sensitivity to rolipram which was diminished in the 30-days cryostorage group. 5. Light microscopic examination of sections taken from 30 days cryostored tissues indicates that the epithelium, submucosal tissue and smooth muscle were well preserved. 6. These experiments suggest that cryopreservation of human bronchi results in maintenance of several morphological, functional (contraction/relaxation) and biochemical properties.

Acetylcholine↗

Endoscopic ultrasonography in chronic pancreatitis: a comparative prospective study with conventional ultrasonography, computed tomography, and ERCP.

The usefulness and accuracy rate of endoscopic ultrasonography (EUS) in the diagnosis of chronic pancreatitis (CP) were prospectively evaluated in 81 patients with suspected pancreatic disease. All underwent EUS, abdominal ultrasonography (AUS), and computed tomography (CT), and endoscopic retrograde cholangiopancreatography (ERCP) was performed in 55 of the cases. The diagnosis of CP was established in 44 patients (CP group) including 24 with a calcified form. No pancreatic disease was observed in 18 patients (control group), and 19 patients had a pancreatic tumor. In the CP group AUS was less accurate than EUS in visualizing the pancreas, performances of CT scan being identical to EUS in this respect. A good correlation was observed between EUS and ERCP for visualization and measurement of the Wirsung duct. The most significant changes observed by EUS in the CP group were dilatation of the main pancreatic duct, heterogeneous echogenicity of the pancreatic parenchyma, and cysts < 20 mm in size even in noncalcified CP or with normal pancreatograms. Sensitivity of EUS for diagnosis of CP was 88% (AUS, 58%; ERCP, 74%; CT scan, 75%), the specificity being 100% for ERCP and EUS, 95% for CT scan, and 75% for AUS. The good performances of EUS allow early diagnosis of CP in symptomatic patients since heterogeneous echogenicity of the pancreatic parenchyma seems to be almost specifically associated with the disease.

Adult↗

Cloning and expression of the Xenopus and mouse Msh2 DNA mismatch repair genes.

Bacterial MutS protein and its yeast and human homologs MSH2 trigger the mismatch repair process by their initial binding to mispaired and unpaired bases in DNA. We describe the cloning and sequencing of genes from Xenopus laevis and Mus musculus encoding the homolog of the Saccharomyces cerevisiae MSH2 (the major DNA mismatch binding protein). Mutations in the human homolog of this gene have recently been implicated in microsatellite instability and DNA mismatch repair deficiency in tumour cells from patients with the most common hereditary predisposition to cancer (Lynch syndrome, or hereditary non-polyposis colorectal cancer, HNPCC), as well as in a significant percentage of sporadic tumours. Expression of the amphibian and murine Msh2 gene in different tissues appears to be ubiquitous. The Xenopus gene is highly expressed in eggs, a model system for the biochemistry of DNA mismatch repair. Expression of the murine gene is low in all tissues examined, and is relatively high in a rapidly dividing cell line. These data are suggestive of a role for MSH2 during DNA replication.

Animals↗

Decreased pentylenetetrazol-induced expression of zif/268 in NGF-transgenic mice.

Expression of the proto-oncogene zif/268 was investigated by in situ hybridization in the hippocampus and cerebral cortex of nerve growth factor (NGF)-transgenic mice during pentylenetetrazol (PTZ)-induced seizures. NGF-transgenic mice displayed normal basal levels of zif/268 mRNA in cortex and hippocampal formation except for the dentate gyrus which contained significantly reduced levels. PTZ induced a similar transient increase of zif/268 mRNA in cortex and Ammon's horn of normal and NGF-transgenic mice. On the other hand, increase of zif/268 mRNA in the dentate gyrus was significantly lower in transgenic mice. Reduced PTZ-induced activation of zif268 may reflect a decreased sensitivity of NGF-transgenic animals to epilepsy by direct or indirect interaction of NGF with immediate early genes.

Animals↗