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A Lamouroux

Publications and source records attributed to A Lamouroux.

At least 19 recordsLinked to original sources

Expression of human dopamine beta-hydroxylase in mammalian cells infected by recombinant vaccinia virus. Mechanisms for membrane attachment.

Dopamine beta-hydroxylase (DBH) is found in neurosecretory vesicles in both membrane-bound and soluble forms. We expressed various human DBH cDNAs in two mammalian cell lines, using the vaccinia virus expression system. The expression of a full-length DBH cDNA (DBH-f) reproduced the native DBH electrophoretic pattern and led to the synthesis of an active enzyme composed of two subunits of 77 and 73 kDa. In contrast, a truncated cDNA lacking the first ATG (DBH-t) generated a single band of 73 kDa. Analysis of mutated recombinant clones demonstrates that the two polypeptides do not result from the use of an alternative translation initiator codon. These results, combined with deglycosylation experiments, allow us to attribute the double band pattern to an optional cleavage of the signal peptide. When the NH2-terminal extremity is shortened, cleavage becomes obligatory, underlining the role of the first 14 amino acids in the regulation of the cleavage of the signal peptide. Subcellular analysis of recombinant DBH-t and DBH-f proteins indicates that DBH is anchored to the membrane by two distinct mechanisms; one of them is due to the non-removal of the signal peptide, whereas the second one is independent of the presence of the signal sequence. Moreover, quantification of the fractionation experiments suggests that the two modes of membrane attachment are additive.

Amino Acid Sequence↗

Retinoic acid induces cholinergic differentiation of cultured newborn rat sympathetic neurons.

Many studies provide evidence that retinoic acid (RA), an endogenous derivative of vitamin A, plays a role in the development of the nervous system. We now report that RA controls the neurotransmitter phenotype of post-mitotic rat sympathetic neurons in cell culture. RA added to the culture medium increased the specific activity of choline acetyltransferase (ChAT) and the level of acetylcholine (ACh). Concomitantly, RA reduced the specific activities of two catecholamine synthetic enzymes, tyrosine hydroxylase (TH) and dopamine beta-hydroxylase (DBH) and the level of norepinephrine (NE). After a 2 week treatment with 5 microM RA, ChAT was increased by 5-10 fold, whereas TH and DBH were decreased by 10-15 fold and 2-3 fold, respectively, as compared to sympathetic neurons grown in the absence of RA. The modulation of the activity of the three enzymes was dose-dependent and followed a similar time course. The decrease of TH expression was demonstrated to be due to a decreased number of TH molecules.

Acetylcholine↗

Analysis of the human dopamine beta-hydroxylase promoter: transcriptional induction by cyclic AMP.

We have analyzed some functional aspects of the promoter of the human dopamine beta-hydroxylase (DBH) gene. A fragment of 1,247 bp directly 5' to the transcriptional start was progressively shortened, placed in front of a reporter gene, and tested in a human neuroblastoma cell line expressing DBH (SK-N-SH-TFM) and in a monkey kidney cell line (CV-1). A remarkably short region (267 bp), directly upstream from the transcription start, was sufficient to confer activity and tissue-specific expression. Furthermore, the expression of the DBH gene was shown to be inducible by cyclic AMP in SK-N-SH-TFM cells. This effect was demonstrated to occur at the transcriptional level, as shown by run-on assays, and was due to the presence of a near-consensus cyclic AMP-responsive element located in the untranscribed 5' regulatory region of the gene.

Animals↗

Amphiphilic and nonamphiphilic forms of bovine and human dopamine beta-hydroxylase.

We show that human and bovine dopamine beta-hydroxylases (DBH) exist under three main molecular forms: a soluble nonamphiphilic form and two amphiphilic forms. Sedimentation in sucrose gradients and electrophoresis under nondenaturing conditions, by comparison with acetylcholinesterase (AChE), suggest that the three forms are tetramers of the DBH catalytic subunit and bind either no detergent, one detergent micelle, or two detergent micelles. By analogy with the Gna4 and Ga4 AChE forms, we propose to call the nonamphiphilic tetramer Dna4 and the amphiphilic tetramers Da4I and Da4II. In addition to the major tetrameric forms, DBH dimers occur as very minor species, both amphiphilic and nonamphiphilic. Reduction under nondenaturing conditions leads to a partial dissociation of tetramers into dimers, retaining their amphiphilic character. This suggests that the hydrophobic domain is not linked to the subunits through disulfide bonds. The two amphiphilic tetramers are insensitive to phosphatidylinositol phospholipase C, but may be converted into soluble DBH by proteolysis in a stepwise manner; Da4II----Da4I----Dna4. Incubation of soluble DBH with various phospholipids did not produce any amphiphilic form. Several bands corresponding to the catalytic subunits of bovine DBH were observed in sodium dodecyl sulfate-polyacrylamide gel electrophoresis, but this multiplicity was not simply correlated with the amphiphilic character of the enzyme. In the case of human DBH, we observed two bands of 78 and 84 kDa. As previously reported by others, the presence of the heavy subunit characterizes the amphiphilic forms of the enzyme. We discuss the nature of the hydrophobic domain, which could be an uncleaved signal peptide, and the organization of the different amphiphilic and nonamphiphilic DBH forms. We present two models in which dimers may possess either one hydrophobic domain or two domains belonging to each subunit; in both cases, a single detergent micelle would be bound per dimer.

Acetylcholinesterase↗

Molecular definition of the 11p15.5 region involved in Beckwith-Wiedemann syndrome and probably in predisposition to adrenocortical carcinoma.

To define more precisely, in molecular terms, the region involved in Beckwith-Wiedemann syndrome (BWS), we have studied patients with BWS and a constitutional duplication of 11p15 using eight 11p15 markers. In the first case with a de novo duplication and extra material on 11p, the region spanning pter to CALCA, excluded, was duplicated. In the second case, the rearrangement was characterized using somatic cell hybrids established with lymphocytes from the father who carried a balanced translocation t(11;18)(p15.4;p11.1). The breakpoint lay exactly in the same region. It could thus be inferred that the two sons, who were the first cases reported of BWS with dup11p15 and adrenocortical carcinoma (ADCC), carried a duplication similar to that observed in the first case. Together with evidence for specific somatic chromosomal events leading to loss of 11p15 alleles in familial cases of ADCC, it can be hypothesized that a gene involved in predisposition to ADCC maps to region 11p15.5.

Adrenal Cortex Neoplasms↗

Predicted amino acid sequence of bovine tyrosine hydroxylase and its similarity to tyrosine hydroxylases from other species.

The previously obtained cDNAs coding for bovine tyrosine hydroxylase (TH) mRNA (mRNATH) were further analyzed, and the entire nucleotide sequence was determined. The mRNATH consists of 1,706 nucleotides with an open reading frame for 491 amino acids, which corresponds to a calculated molecular weight of 55,011. The predicted amino acid sequence of bovine TH is compared with that of rat TH and shows a similarity of 66% in the amino terminal (amino acids 1-157) and 91% in the carboxy terminal (amino acids 158-491) region of the TH protein molecule. The carboxy terminal region has been shown to make up the catalytic site of TH and, therefore, is conserved to a greater extent in different species than the amino terminal region, which has been shown to be mainly responsible for the regulation of the catalytic activity of TH. Three of the four serine residues (Ser 8, 19, and 40) that have been shown to be substrates for various protein kinases in rat TH are also present in bovine TH and are located near the amino terminal end of the molecule. The amino acids from position 60 to position 66 of rat TH are not present in bovine TH, resulting in the absence of a predicted hydrophobic region as compared with rat TH. This difference could result in an altered degree of regulation by posttranslational phosphorylation and also association to cell organelle membranes of bovine TH as compared with rat TH.

Amino Acid Sequence↗

Cloning of quail tyrosine hydroxylase: amino acid homology with other hydroxylases discloses functional domains.

A cDNA clone containing the entire coding region of quail tyrosine hydroxylase (TH) has been isolated and analyzed. Comparison with rat and human THs and phenylalanine hydroxylases reveals several highly conserved domains. Two of them, shared by all these hydroxylases, are localized in the central and C-terminal parts of the molecules, and most probably include the active site. Two others are found only in the TH molecules. One contains putative sites of phosphorylation and is implicated in the posttranslational regulation of the enzyme. The second highly preserved domain, consisting of a stretch of 21 amino acids, is presumably associated with an important feature of the enzyme that remains to be identified.

Amino Acid Sequence↗

Localization of the human dopamine beta hydroxylase (DBH) gene to chromosome 9q34.

A human cDNA clone for dopamine beta hydroxylase (DBH) has been isolated from a phaeochromocytoma library. In situ hybridization of this probe to replication-banded chromosomes has localized the gene to chromosome 9q34. The structural gene for the enzyme is therefore close to the ABO blood group locus. This suggests that the previously described activity variation in levels of serum DBH may reflect alterations in either the structure or regulation of the DBH coding sequences. Both biochemical and genetic evidence therefore indicate independence of DBH from the pterin-dependent aromatic amino acid hydroxylases of the neurotransmitter pathways.

ABO Blood-Group System↗

The primary structure of human dopamine-beta-hydroxylase: insights into the relationship between the soluble and the membrane-bound forms of the enzyme.

A full length dopamine-beta-hydroxylase (DBH) cDNA clone was isolated from a human pheochromocytoma lambda gt11 library. Both structural and functional evidence confirms the authenticity of the clone: (i) antibodies selected with fusion proteins generated by positive clones precipitate DBH activity, (ii) the sequence of three internal DBH tryptic peptides are included in the deduced DBH sequence, (iii) the previously reported N-terminal 15 amino acids of bovine DBH exhibits a nearly complete identity with that predicted for human DBH. The polypeptide chain of DBH comprises 578 amino acids corresponding to an unmodified protein of 64 862 daltons and is preceded by a cleaved signal peptide of 25 residues. DBH exists in both membrane-bound and soluble forms. The hydropathy plot reveals no obvious hydrophobic segment, except the signal peptide. S1 mapping analysis indicates no diversity in the 5' and 3' extremities of the DBH mRNA. Taken together with available biochemical data, these observations suggest that the membrane attachment of DBH probably results from a post-translational modification, glypiation being the most likely candidate. Comparative amino acid sequence analysis establishes that DBH shares no homology with the other catecholamine synthesizing enzymes, tyrosine hydroxylase and phenylethanolamine-N-methyl transferase.

Adrenal Gland Neoplasms↗

Influence of cell-cell contact on levels of tyrosine hydroxylase in cultured bovine adrenal chromaffin cells.

We have studied the regulation of tyrosine hydroxylase by cell-cell contact in primary cultures of bovine adrenal chromaffin cells. Preparation of dissociated chromaffin cells from bovine adrenal medullae or the harvesting of cultured cells resulted in a rapid decrease of the specific mRNA(TH) (defined as the amount of mRNA(TH) (where TH represents tyrosine hydroxylase) per microgram of total RNA). The decrease in mRNA(TH) levels appears to be stimulated by the loss of cell contact, as it occurs much more rapidly than would be expected from the turnover rate of mRNA(TH) in cultured cells. Similarly an enhanced rate of tyrosine hydroxylase enzyme degradation was observed in chromaffin cells when brought into low contact cultures. In contrast to the decrease in mRNA(TH) levels, however, the decrease in tyrosine hydroxylase enzyme levels was not so rapid and could be prevented in high contact cultures. The mRNA(TH) increased 4-fold in high contact cultures relative to dissociated cells within 1 day after plating. Similarly the rate of synthesis of tyrosine hydroxylase enzyme molecules was maximal after 1 day, although the increase in the absolute amount of tyrosine hydroxylase occurred only slowly. The increase in specific mRNA(TH) by cell contact was inhibited by alpha-amanitin, indicating that cell contact evokes an increase in tyrosine hydroxylase levels by increasing the transcription of mRNA(TH), in addition to inhibiting the degradation of tyrosine hydroxylase molecules.

Adrenal Medulla↗

The primary structure of human secretogranin I (chromogranin B): comparison with chromogranin A reveals homologous terminal domains and a large intervening variable region.

We have determined and analyzed the primary structure of human secretogranin I (chromogranin B), a tyrosine-sulfated secretory protein found in a wide variety of peptidergic endocrine cells. A 2.5-kb cDNA clone, hybridizing to an mRNA of similar length, was isolated from a cDNA library of human pheochromocytoma. The identity of the clone was established by comparison of its deduced amino acid sequence with N-terminal and several internal secretogranin I sequences as well as by immunoprecipitation of the protein produced by in vitro transcription-translation of the cloned cDNA. Secretogranin I is a 657 amino acid long polypeptide of 76 kd and is preceded by a cleaved N-terminal signal peptide of 20 residues. Comparison of the predicted amino acid sequence of human secretogranin I with that of bovine chromogranin A reveals significant homologies near the N termini and at the C termini. The N-terminal homologous domains contain the only two cysteine residues of both proteins and form disulfide-stabilized loop structures. The sequences between the homologous terminal domains in both proteins differ but are characterized by a remarkable hydrophilicity, an abundance of acidic amino acids and potential dibasic cleavage sites for the generation of smaller, perhaps hormone-like, peptides.

Adrenal Gland Neoplasms↗

Molecular genetics of catecholamines as an approach to the biochemistry of manic-depression.

Manic depressive illness has been clearly established to exhibit a strong genetic component and is therefore amenable to linkage analysis using random DNA markers. In view of the catecholamine hypothesis of this disorder, the gene encoding tyrosine hydroxylase (TH) the limiting enzyme in catecholamines is a good candidate to investigate. This gene has been localized to chromosome 11 in close linkage with Harvey-ras-1. The various transcriptional and post-transcriptional mechanisms that modulate short and long-term TH activity are discussed. Human tyrosine hydroxylase is coded by at least three distinct mRNAs derived from a single gene. This variation has clear functional consequences and could represent a novel mode of regulating catecholamines levels in normal and pathological neurons.

Bipolar Disorder↗

Time course of the changes of TH mRNA in rat brain and adrenal medulla after a single injection of reserpine.

A single injection of reserpine causes a long lasting enhancement of the activity of tyrosine hydroxylase (TH), the enzyme catalyzing the rate-limiting step in the biosynthesis of catecholamines. A sensitive method has been developed to assay both TH mRNA level and enzyme activity in tissue from a single rat. The time course of the induction was analysed in adrenals, locus coeruleus and substantia nigra. In both locus coeruleus and adrenals reserpine caused respectively 4.2- and 4.5-fold increase of TH mRNA which was maximal 2 days after drug injection. This increase is about twice that of the enzyme activity. No change was observed in substantia nigra. The effect lasted longer in locus coeruleus than in adrenal. In the latter, TH mRNA had almost returned to initial values at day 4 whereas at this time it is 3-fold higher in locus coeruleus and still significant at day 18. This result suggests that induction of TH results from an enhanced transcription of the TH gene. The time course difference between locus coeruleus and adrenals is most likely to result from a difference in the stability of TH mRNA in the two structures.

Adrenal Medulla↗