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Biomedical subjects

M Desrochers

Publications and source records attributed to M Desrochers.

At least 19 recordsLinked to original sources

Mutations in the MDR3 gene cause progressive familial intrahepatic cholestasis.

Class III multidrug resistance (MDR) P-glycoproteins (P-gp), mdr2 in mice and MDR3 in man, mediate the translocation of phosphatidylcholine across the canalicular membrane of the hepatocyte. Mice with a disrupted mdr2 gene completely lack biliary phospholipid excretion and develop progressive liver disease, characterized histologically by portal inflammation, proliferation of the bile duct epithelium, and fibrosis. This disease phenotype is very similar to a subtype of progressive familial intrahepatic cholestasis, hallmarked by a high serum gamma-glutamyltransferase (gamma-GT) activity. We report immunohistochemistry for MDR3 P-gp, reverse transcription-coupled PCR sequence analysis, and genomic DNA analysis of MDR3 from two progressive familial intrahepatic cholestasis patients with high serum gamma-GT. Canalicular staining for MDR3 P-gp was negative in liver tissue of both patients. Reverse transcription-coupled PCR sequencing of the first patient's sequence demonstrated a homozygous 7-bp deletion, starting at codon 132, which results in a frameshift and introduces a stop codon 29 codons downstream. The second patient is homozygous for a nonsense mutation in codon 957 (C --> T) that introduces a stop codon (TGA). Our results demonstrate that mutations in the human MDR3 gene lead to progressive familial intrahepatic cholestasis with high serum gamma-GT. The histopathological picture in these patients is very similar to that in the corresponding mdr2(-/-) mouse, in which mdr2 P-gp deficiency induces complete absence of phospholipid in bile.

ATP Binding Cassette Transporter, Subfamily B

Expression of the liver Na+-independent organic anion transporting polypeptide (oatp-1) in rats with bile duct ligation.

BACKGROUND/AIMS: In rats with cholestasis due to bile duct ligation, the expression of the Na+-dependent taurocholate co-transporting polypeptide, the major uptake system for conjugated bile acids in hepatocytes, is down-regulated. Our purpose was to examine the expression of the organic anion transporting polypeptide, a Na+-independent uptake system for bile acids and organic anions, in rats with bile duct ligation, and to compare the expression of organic anion transporting polypeptide to that of Na+-dependent taurocholate co-transporting polypeptide. METHODS: Rats with bile duct ligation were studied after 1, 3 or 7 days. The expression of organic anion transporting polypeptide and Na+-dependent taurocholate co-transporting polypeptide proteins was examined by Western blot analysis and steady-state mRNA levels were determined by Northern blot analysis using cDNAs encoding organic anion transporting polypeptide and Na+-dependent taurocholate co-transporting polypeptide. Sham-operated animals were used as controls. RESULTS: The expression of organic anion transporting polypeptide protein was slightly, but not significantly, decreased 1 day after ligation (10.3%); it was markedly decreased after 3 days (56.9%; p<0.03) and 7 days (46.8%; p<0.05) compared to sham-operated animals. Steady-state mRNA levels of organic anion transporting polypeptide were decreased by 79.7% (p<0.04), 48.8% (p<0.02) and 57.4% (p<0.02) after 1, 3 and 7 days respectively. For comparison, Na+-dependent taurocholate co-transporting polypeptide protein and mRNA levels were decreased by 73.8% (p<0.03) and 70.0% (p<0.05) at 1 day and remained low after 3 and 7 days. CONCLUSIONS: In rats with bile duct ligation, the expression of organic anion transporting polypeptide protein and mRNA is down-regulated. Down-regulation of organic anion transporting polypeptide seems less pronounced than that of Na+-dependent taurocholate co-transporting polypeptide. Nevertheless, it could contribute to a decreased uptake of potentially toxic bile acids or organic anions in this situation.

Animals

New proteins in the rat CYP2B subfamily: presence in liver microsomes of the constitutive CYP2B3 protein and the phenobarbital-inducible protein product of alternatively spliced CYP2B2 mRNA.

The rat CYP2B gene subfamily includes CYP2B1, CYP2B2 and CYP2B3. Translation of an alternatively spliced hepatic CYP2B2 mRNA would generate a CYP2B2 variant, CYP2B2v, having eight additional amino acid residues inserted between CYP2B2 positions 274 and 275. The presence of CYP2B3 and CYP2B2v in rat liver has yet to be demonstrated. cDNA expression vectors were obtained for CYP2B1, CYP2B2, CYP2B3 and CYP2B2v. All four proteins react with an anti-CYP2B1 antibody and can be resolved by SDS-PAGE. A CYP2B3-specific polyclonal antibody raised against an undecapeptide (SPVDPNTIDMT) from near the C-terminus of CYP2B3 detected a constitutive protein on immunoblots of rat liver microsomes, thus demonstrating that the CYP2B3 mRNA is translated in the liver. Similarly, a CYP2B2v-specific polyclonal antibody was raised against a peptide containing the eight additional amino acid residues (VSPAWMRE) predicted to be present in the CYP2B2v protein. It detected a phenobarbital- and Aroclor 1254-inducible protein in rat liver microsomes. Microsomes of Ad293 cells expressing cDNAs for CYP2B2 and CYP2B2v were used to metabolize 7,12-dimethylbenz[a]anthracene (DMBA), and the metabolites produced were compared with those generated by microsomes of cells expressing CYP2B1 cDNA. CYP2B2v had activity similar to that of CYP2B2 for DMBA metabolism. Both CYP2B2 forms preferentially catalyzed 12-hydroxylation, whereas CYP2B1 preferred 7-hydroxylation and exhibited turnover that was strongly suppressed as previously reported. These results demonstrate the existence in rat liver of two new CYP2B proteins: CYP2B3, the major constitutive CYP2B form, and CYP2B2v, which represents a rare case of non-aberrant alternative splicing among xenobiotic-metabolizing P450s.

9,10-Dimethyl-1,2-benzanthracene

Ontogenic expression of the Na(+)-independent organic anion transporting polypeptide (oatp) in rat liver and kidney.

BACKGROUND/AIMS: A cDNA (2.7 kb) encoding a rat liver basolateral Na(+)-independent organic anion transporter (oatp) has recently been cloned. The aim of the present study was to clarify the mechanisms of bile formation during development. METHODS: The ontogenic expression of oatp was examined by northern blot analysis and in situ hybridization in rat liver. The expression of oatp in the kidney was also studied in parallel. RESULTS: In the liver, a 2.5 kb oatp mRNA was first detected in the fetus on day 16 of gestation. The amount of this oatp mRNA remained stable during the perinatal period and increased dramatically after weaning. Other transcripts probably corresponding to oatp-related mRNAs also display a late expression pattern in the perinatal period. In contrast, Na+/taurocholate transporting polypeptide (Ntcp) mRNA was first detected on day 20 of gestation. By in situ hybridization, oatp mRNA was localized into hepatocytes and distributed without lobular heterogeneity. In the kidney, a single 2.4 kb oatp transcript was detected from birth to adult age. This transcript was exclusively distributed in the epithelial cells of the proximal tubules localized in the kidney cortex and the outer medulla. CONCLUSIONS: These results indicate that oatp undergoes a time-related expression in rat liver and kidney during development and that its gene transcription precedes Ntcp gene transcription in the liver. The delayed expression of oatp at the perinatal period may explain in part the immaturity of bile formation and the physiological neonatal cholestasis.

Animals

A long-term follow-up study of asymptomatic hepatitis B surface antigen-positive carriers in Montreal.

BACKGROUND/AIMS: Prospective studies from the Far East and Alaska have shown an increased mortality from cirrhosis and/or hepatocellular carcinoma in asymptomatic hepatitis B virus (HBV) carriers. The magnitude of this risk in apparently healthy North American carriers remains undefined. METHODS: The outcomes of 317 asymptomatic hepatitis B surface antigen-positive carriers from the Montreal area were examined after 16 years of follow-up. A majority of carriers were of French Canadian origin, were positive for antibody to hepatitis B e antigen, and had normal serum transaminase levels; institutionalization in orphanages as infants or children was the most important epidemiological risk factor, suggesting horizontal transmission of HBV during childhood. RESULTS: At follow-up, mean age was 46 +/- 8 years; 3 carriers had died of HBV-related cirrhosis, 1 of alcoholic cirrhosis, and 9 of causes unrelated to liver disease. No carrier died of hepatocellular carcinoma; had the risk of hepatocellular carcinoma been similar to that reported from the Far East and Alaska, 17 cases of hepatocellular carcinoma-related deaths would have been expected. During follow-up, the annual negativation rate for hepatitis B surface antigen was 0.7%. CONCLUSIONS: In asymptomatic HBV carriers from Montreal, a majority are "healthy" carriers and remain asymptomatic after 16 years of follow-up and the risk of death from HBV-related cirrhosis and/or hepatocellular carcinoma is low.

Adult

Rat liver cytochrome P450 2B3: structure of the CYP2B3 gene and immunological identification of a constitutive P450 2B3-like protein in rat liver.

The cytochrome P450 2B subfamily in the rat contains an estimated eight to eleven members at the genomic level. Synthesis in the liver of the prototypic forms P450 2B1 and P450 2B2 is dramatically induced by phenobarbital. The 1.9-kb mRNA for P450 2B3, a third member of the P450 2B subfamily, is constitutively present in rat liver but is not inducible by phenobarbital. We have now cloned and sequenced exonic sequences corresponding to the entire 2B3 mRNA and determined their exon-intron structure, which is identical to that of CYP2B1/CYP2B2 and other CYP2B genes. A putative CYP2B3 transcription start site was identified and CYP2B3 5'- and 3'-flanking sequences were compared to those of CYP2B1 and CYP2B2. CYP2B3, like CYP2B1 and CYP2B2, has a modified TATA box preceding the transcription start site and lacks the canonical polyadenylation signal preceding the poly(A) site. A 2B3 expression vector, pMT2-2B3, directed the synthesis in COS-1 cells of an approximately 50-kD protein detectable on Western blots with a polyclonal antibody and with one of four monoclonal antibodies raised against 2B1 but not with a polyclonal antibody raised against P450 PB6. The 2B3 protein migrated with a slightly higher electrophoretic mobility than 2B1 and comigrated with a protein detected by anti-2B1 antibodies in liver microsomes from untreated rats. The results indicate that a 2B3-like protein is present in rat liver and that it is distinct from P450 PB6 and other known constitutive rat hepatic P450s.

Animals

Metabolism of 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) in human kidney epithelial cells transfected with rat CYP2B1 cDNA.

In all species where it has been tested, the tobacco-specific nitrosamine 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) has been shown to be a potent carcinogen, and NNK and other nitrosamines may play a role in human tobacco-related carcinogenesis. Purified rat CYP2B1 has been shown to metabolize NNK, and the CYP2B1 gene is expressed constitutively in rat lung. The objectives of this study were to test the capacity of CYP2B1, synthesized from a rat hepatic cDNA in Ad293 cells, to metabolize NNK, and to define the type and the proportions of the final metabolites produced. Ad293 cells were transfected with a CYP2B1 expression vector (pMT2-2B1), or with a control vector and incubated in culture medium containing [3H]NNK, after which alpha-carbon hydroxylation and pyridine N-oxidation metabolites were identified by HPLC analysis and quantitated by scintillation counting. pMT2-2B1-transfected cells were capable of catalyzing alpha-carbon hydroxylation and pyridine N-oxidation of NNK, although the reduction product 4-(methylnitrosamino)-1-(3-pyridyl)-1-butan-1-ol(NNAL) was the major metabolite formed in cells regardless of transfection treatment. The total amount of alpha-carbon hydroxylation metabolites produced by pMT2-2B1-transfected cells was greater than that of pyridine N-oxidation metabolites. However, pMT2-2B1 transfected cells produced approximately ten-fold more pyridine N-oxidation metabolites and only two-fold more alpha-carbon hydroxylation metabolites than control cells. Furthermore, the amount of NNAL-N-oxide was much lower than that of NNK-N-oxide in the medium of pMT2-2B1-transfected cells, even though the amount of available NNAL, resulting from carbonyl reduction of NNK, was very high; this suggests that NNAL is poorly N-oxidized by CYP2B1 compared to NNK. These results show that within living cells NNK was metabolized by CYP2B1 via both the pyridine N-oxidation and alpha-carbon hydroxylation pathways. However, CYP2B1 preferentially catalyzed pyridine N-oxidation, which is considered to be a deactivation reaction.

Animals

Alternative splicing of mRNA encoding rat liver cytochrome P450e (P450IIB2).

Cytochrome P450e (P450IIB2) is a phenobarbital(PB)-inducible member of the rat liver P450IIB subfamily. Among P450 cDNA clones previously isolated from a cDNA library made from the liver of a single rat were several that contained P450e inserts, including PB13, PB16, and PB22. By nucleotide sequence analysis, the PB16 and PB22 inserts have now been found to contain an additional 24-bp segment not present in the PB13 insert or in previously reported P450e-coding sequences. According to the published P450e genomic sequence, the 24-bp segment is exactly at the junction of the fifth and the sixth exons and its sequence is identical to the first 24 bp of the fifth intron. Translation of this segment would add 8 amino acid residues to the P450e protein. To detect the alternatively spliced P450e mRNA, a synthetic oligodeoxyribonucleotide (oligo) corresponding to 18 of the 24 bp of the intronic sequence found in the PB16 and PB22 inserts was made. This oligo hybridized with a 2.1-kb RNA on Northern blots of liver RNA from PB- or Aroclor 1254-treated rats. Taken together, these results indicate that individual rats can possess both forms of P450e mRNA and that an alternative splicing mechanism is responsible for their formation.

Amino Acid Sequence

A full-symmetry translation function based on electron density.

A method for positioning an oriented fragment within the unit cell is presented. It is based on a correlation between a model and observed data which is performed in Fourier rather than Patterson space. Symmetry-related molecules are located in the electron density map calculated in space group P1, with the phases derived from a model that is correctly oriented but arbitrarily positioned in the unit cell. It is shown that considering all symmetry elements simultaneously substantially increases the sensitivity of the method and makes it less susceptible to the errors in the model. The procedure also automatically incorporates a penalty for the overlap of symmetry-related molecules, and the stringency of this requirement is easily modified. The method has been tested on two different proteins and the results compare favorably with other translation functions.

Crystallography

Extracellular proteins secreted by the basidiomycete Schizophyllum commune in response to carbon source.

The secretion of 1,4-beta-D-glucanases by the basidiomycete Schizophyllum commune in response to cellulose or cellobiose has been studied. The proteins were labeled with 35S, and the secretion of enzymes was measured by beta-glucosidase and carboxymethyl cellulase activities and by immunoprecipitation with specific antibodies. The antigen proteins used were a beta-glucosidase (Mr, 93,000), an avicelase (avicelase II; Mr, 64,000), and a carboxymethyl cellulose (carboxymethyl cellulase I; Mr 41,000). The beta-glucosidase was initially secreted as an Mr 110,000 form, which was followed later by lower-molecular-weight (88,000 to 93,000) forms. The avicelase II, which accounted for about 50% of the secreted labeled protein, had an Mr of 64,000. Secretion of the related avicelase I (Mr 61,000) followed later. The carboxymethyl cellulose I was secreted in two molecular weight forms, Mr 44,000 and 41,000. The evidence is consistent with the idea that three genes account for the secreted glucanase activities. Other species result from different glycosylation or proteolytic cleavage processing, which may occur during or after secretion. The beta-glucosidase secretion appears to be regulated differently than that of avicelase II or carboxymethyl cellulase I; the latter two were regulated coordinately under the conditions used in this work. No common immune determinants between the three antigens were observed.

Agaricales

Molecular cloning of a Bacillus subtilis xylanase gene in Escherichia coli.

A gene coding for xylanase synthesis in Bacillus subtilis was isolated by direct shotgun cloning using Escherichia coli as a host. Following partial digestion of B. subtilis chromosomal DNA with PstI or EcoRI restriction enzymes, fragments ranging from 3 to 7 kb were introduced into the PstI or EcoRI sites of pBR325. Transformed colonies having lost either the ampicillin or chloramphenicol resistance markers were screened directly on 1% xylan plates. Out of 8000 transformants, ten xylanase-positive clones were identified by the clearing zone around lysozyme-treated colonies. Further characterization of one of the clones showed that the xylanase gene was present in a 3.9-kb insert within the PstI site of the plasmid pBR325. Retransformation of E. coli strain with the xylanase-positive hybrid plasmid pRH271 showed 100% transformation to xylanase production. The intracellular xylanase produced by the transformed E. coli was purified by ion exchange and gel permeation chromatography. The electrophoretic mobility of the purified xylanase indicated an Mr of 22 000.

Bacillus subtilis

Induction of cellulose in Schizophyllum commune: thiocellobiose as a new inducer.

Several mono-, di, tetra-, and polysaccharides were screened for their ability to induced cellulase production by the tetrapolar hymenomycete Schizophyllum commune. Out of 21 carbohydrates screened, 4 (thiocellobiose, carboxymethylcellulose, cellobiose, and xylan) induced all three enzymes tested (carboxymethylcellulase, beta-glucosidase, and xylanase). The inducing effect increased with rising concentrations of the inducers up to a certain value, beyond which there was either a leveling off or a decrease of the enzymatic activities. The most powerful inducer, thiocellobiose, showed the highest activity at 0.5 mM. Cellobiose, carboxymethylcellulose, and xylan showed their highest activities at 1 mM and 1%, respectively. Surprisingly, sophorose did not enhance enzyme production. The enzymatic activities were monitored over a period of 24 h. Thiocelloboise elicited a response immediately after incubation, but with all other inducers there was a latency period before their effect could be measured. High-performance liquid chromatography showed no hydrolysis of thiocellobiose when incubated in the presence of S. commune extracellular enzymes.

Agaricales

Mapping of the hemE locus in Salmonella typhimurium.

A new type of heme-deficient mutant was isolated in Salmonella typhimurium by neomycin selection. The mutant was deficient in uroporphyrinogen decarboxylase activity, coded by the hemE gene. The hemE gene was located between the genes rif and thi at 128 min on the chromosomal map of S. typhimurium.

Carboxy-Lyases

Porphobilinogen-accumulating mutants of Salmonella typhimurium LT2.

Four independent porphobilinogen-accumulating mutants of Salmonella typhimurium LT2 were isolated by selecting for dwarf colony formation on neomycin agar media. Cell-free extracts of the parent strain, but not of the mutants, were able to convert 5-aminolaevulinic acid or porphobilinogen to porphyrins. The results indicated that the mutants were deficient in uroporphyrinogen I synthase (EC. 4.3.I. 8) activity: these are the first mutants of this type reported in S. typhimurium LT2. Mapping of the hemC locus (for uroporphyrinogen I synthase) by F-mediated conjugation and by P22-mediated transduction showed the gene sequence ilvEDAC-hemC-cya-metE.

Aminolevulinic Acid

Uroporphyrinogen III cosynthase-deficient mutant of Salmonella typhimurium LT2.

A new type of heme-deficient mutant of Salmonella typhimurium LT2 was isolated using neomycin. The mutant, designated as strain SASY74, accumulated uroporphyrin I and coproporphyrin I. Extracts of the mutant converted 5-aminolevulinic acid to uroporphyrin I. Extracts of the mutant SASY74 and of the uroporphyrinogen synthase-deficient mutant SASY32 complemented each other and converted, when incubated together, 5-aminolevulinic acid to protoporphyrin. This finding excludes the possibility that uroporphyrinogen I synthase in strain SASY74 is deficient in its cosynthase-binding ability. Hence, the most probable explanation for the accumulation of uroporphyrin I and coproporphyrin I by the mutant is the lack of the uroporphyrinogen III cosynthase activity. This mutant is the first isolated in bacteria with such deficiency, and the mutation is analogous, as far as porphyrin synthesis is concerned, to human congenital porphyria. Mapping of the corresponding gene (hemD) by conjugation and P22-mediated transduction suggests the following gene order on the chromosome: ilv....hemC, hemD, cya....metE. The hemC and hemD genes are probably adjacent; this is the first case in which two hem genes of Enterobacteriaceae are contiguous on the chromosomal map.

Catalase

Hepatitis B antigen in Montréal blood donors: childhood institutionalization as an epidemiologic factor.

In 1971 the Canadian Red Cross blood tranfusion service instituted routine screening for HBAg of all blood donors, using nationwide a standardized counterimmunoelectrophoretic technique. The prevalence of carriers in the Province of Québec is unusually high (0.51%), being 3 to 12 times higher than in the other nine provinces. Among the carriers found in the Montréal area 289 volunteered to be seen by our group for an extensive interview and a series of laboratory tests. There were 243 men and 46 women; their ages ranged from 18 to 55, 90% being less than 40. Twenty-nine were of foreign origin and 260 were born in Canada. The epidemiologic data revealed that the reservoir of HBAg carriers among the blood donors of the Montréal area was found predominantly in the autochthonous population of French origin. Moreover, it appeared that 149 (52%) had lived in institution when they were infants or children: 127 were orphans and had been placed in institutions as newborns or babies, and 22 others had lived in institutions for at least 1 year between the ages of 5 and 10. This was by far the most important single epidemiologic factor that could contribute to the explanation of the abnormally high prevalence of HBAg carriers in the population studied.

Adolescent