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Biomedical subjects

B Mallet

Publications and source records attributed to B Mallet.

At least 19 recordsLinked to original sources

Role of extracellular molecular chaperones in the folding of oxidized proteins. Refolding of colloidal thyroglobulin by protein disulfide isomerase and immunoglobulin heavy chain-binding protein.

The process of thyroid hormone synthesis, which occurs in the lumen of the thyroid follicles, results from an oxidative reaction leading, as side effects, to the multimerization of thyroglobulin (TG), the prothyroid hormone. Although hormone synthesis is a continuous process, the amount of Tg multimers is relatively constant. Here, we investigated the role of two molecular chaperones, protein disulfide isomerase (PDI) and immunoglobulin heavy chain-binding protein (BiP), present in the follicular lumen, on the multimerization process due to oxidation using both native Tg and its N-terminal domain (NTD). In vitro, PDI decreased multimerization of Tg and even suppressed the formation of NTD multimers. Under the same conditions, BiP was able to bind to Tg and NTD multimers but did not affect the process of multimerization. Associating BiP with PDI did not enhance the ability of PDI to limit the formation of multimers produced by oxidation. However, when BiP and PDI were reacted together with the multimeric forms and for a longer time (48 h), BiP greatly increased the efficiency of PDI. Accordingly, these two molecular chaperones probably act sequentially on the reduction of the intermolecular disulfide bridges. In the thyroid, a similar process may also be effective and participate in limiting the amount of Tg multimers present in the colloid. These results suggest that extracellular molecular chaperones play a similar role to that occurring in the endoplasmic reticulum and, furthermore, take part in the control of multimerization and aggregation of proteins formed by oxidation.

Carrier Proteins↗

Production of immunoreactive thyroglobulin C-terminal fragments during thyroid hormone synthesis.

Here, we studied the fragmentation of the prothyroid hormone, thyroglobulin (Tg), which occurs during thyroid hormone synthesis, a process which involves iodide, thyroperoxidase, and the H2O2-generating system, consisting of glucose and glucose oxidase. Various peptides were found to be immunoreactive to autoantibodies to Tg from patients and monoclonal antibodies directed against the immunodominant region of Tg. The smallest peptide (40 kDa) bore thyroid hormones and was identified at the C-terminal end of the Tg molecule, which shows homologies with acetylcholinesterase. Similar peptides were obtained by performing metal-mediated oxidation of Tg via a Fenton reaction. It was concluded that the oxidative stress induced during hormone synthesis generates free radicals, which, in turn, cleave Tg into immunoreactive peptides.

Amino Acid Sequence↗

Involvement of oxidative reactions and extracellular protein chaperones in the rescue of misassembled thyroglobulin in the follicular lumen.

Reactive oxygen species (ROS) are involved in many pathological processes through modifications of structure and activity of proteins. ROS also participate in physiological pathways such as thyroid hormone biosynthesis, which proceeds through oxidation of the prothyroid hormone (thyroglobulin, Tg) and iodide. Regarding the colloidal insoluble multimerized Tg (m-Tg), which bears dityrosine bridges and is present in the follicular lumen, a mild oxidative system generated different soluble forms of Tg, more or less compacted by hydrophobic associations, and linked with Grp78 and Grp94. In vitro, the combined action of ROS and PDI, in the presence of free glutathione (reduced/oxidized), increased the solubility of this misassembled Tg and partially restored the ability of Tg to synthesize hormones. Our results show that protein chaperones escape from the ER and are involved with ROS in thyroid hormone synthesis. Therefore, we propose a model of roles of m-Tg in the follicular lumen.

Carrier Proteins↗

Role of multimerized porcine thyroglobulin in iodine storage.

Thyroglobulin (Tg), the prothyroid hormone, is stored in the lumen of the thyroid follicles as soluble dimers and tetramers and insoluble multimers, Soluble Tg is well characterized with regards to structure and role, but insoluble Tg (i-Tg) is not. Here we show that i-Tg, multimerized through formation of disulfide and dityrosine bonds, has a higher iodine content than soluble Tg and no thyroid hormones. Furthermore, the size and the resistance of i-Tg to proteolytic enzymes implied a new mechanism by which thyrocytes may degrade this form of Tg. Using peroxidase and H2O2 generating system, we found that about 80% of i-Tg was degraded and 24% of its iodine content was released. Our data point to a role for i-Tg in iodine storage and the involvement of TPO in i-Tg degradation and iodide release.

Amino Acids↗

A micromethod for quantitative determination of iodoamino acids in thyroglobulin.

We describe a new method for quantification of iodoamino acids after enzymatic hydrolysis of thyroglobulin. The procedure involves separation of monoiodotyrosine (MIT), di-iodotyrosine, tri-iodothyronine and thyroxine by reverse phase HPLC with a Vydac C18 stationary phase and a mobile phase of water-acetonitrile-acetic acid. The separation is monitored by sensitive spectrophotometric detection through a 96-well microplate system based on the catalytic Sandell-Kolthoff reaction of iodide on the oxidation of arsenic(III) by cerium(IV). This new microassay is particularly convenient because of its high sensitivity and its rapidity (less than 2 h). It can detect 1 pmol MIT and 0.5 pmol of the other three iodoamino acids with a recovery higher than 96%. Moreover, the 96-well microplate system allows many samples to be tested simultaneously and avoids the use of radiolabeled iodine.

Animals↗

Dityrosine bridge formation and thyroid hormone synthesis are tightly linked and are both dependent on N-glycans.

Formation of dityrosine bridges is a ubiquitous process mainly attributed to oxidative stress leading to protein degradation and cellular damages. Here we show that dityrosine formation is involved in a physiological process, thyroid hormone synthesis, and is strictly dependent on structural characteristics, namely N-glycans, presented by the protein acting as the prothyroid hormone. We used two isoforms of the N-terminal thyroid hormone forming domain (NTD) of human thyroglobulin: one without N-glycan (19 kDa isoform) and the other with high mannose type structures (25 kDa isoform). Both isoforms were able to form iodotyrosines after in vitro iodination. However, iodotyrosine coupling to form thyroxine did not occur with the unglycosylated 19 kDa NTD. In contrast, the 25 kDa isoform formed thyroxine. Strikingly, thyroxine synthesis was accompanied by dimerization of the 25 kDa isoform and formation of a dityrosine bridge; none of this was observed with the 19 kDa isoform. Taken as a whole, our results indicate that dimerization through dityrosine bridging accompanies and could have a role in thyroid hormone synthesis.

Dimerization↗

European collaborative study of LH assay: 3. relationship of immunological reactivity, biological activity and charge of human luteinizing hormone.

This report describes the results of the third part of the collaborative study organized by a working group sponsored by the Community Bureau of Reference of the European Community Commission. The aim of the present work was to establish the link between immunoreactivity and biological activity of human LH, thus allowing to determine the antigenic domains of the molecule involved in the induction of the biological effect. The relationship between immunoreactivity and electric charge of hLH was also studied. This work allowed to further apprehend hLH isomorphism and its role in discrepancies observed among hLH assays and clinical status. It also made the feasibility of measuring biologically active isoforms by an immunological method to be assessed. The effect of 36 mAb with known epitopic specificity, was evaluated on both hLH binding to rat membrane receptor and hLH induced production of testosterone by porcine Leydig cells. All the epitopes located on the beta subunit were found to be strongly involved in the biological activity whereas 4/9 and 10/18 epitopes present on the alpha subunit or specific for the holomolecule respectively appeared weakly involved. Assaying biological hLH using immunological method would require that mAb specific for all the epitopes involved in the receptor activation be tested, and thus appears presently unsuitable for routine clinical evaluation. In the previous work some LH immunoassays were found to underestimate LH concentrations (J. Endocrinol. Invest 1994, 17: 397-406 and 407-416). The mAb used in liquid phase in these kits were found in the present work to be directed against the domains of LH weakly involved in the activation of the receptor and would suggest that bioactive LH would be misevaluated by these kits. The immunoreactivity of hLH isoforms separated by isoelectric focusing (IEF) in liquid phase was also determined. IEF allowed to separate three groups of hLH isoforms but none of them exhibited a specific discriminating pattern of immunoreactivity when they were tested against a panel of mAb. It suggests that, in our experimental conditions, the electric charge and the immunoreactivity of hLH were not closely linked.

Animals↗

N-glycans modulate in vivo and in vitro thyroid hormone synthesis. Study at the N-terminal domain of thyroglobulin.

Thyroglobulin (Tg) is the substrate for thyroid hormone biosynthesis, which requires tyrosine iodination and iodotyrosine coupling and occurs at the apical membrane of the thyrocytes. Tg glycoconjugates have been shown to play a major role in Tg routing through cellular compartments and recycling after endocytosis. Here we show that glycoconjugates also play a direct role in hormonosynthesis. The N-terminal domain (NTD; Asn1-Met171) of human Tg, which bears the preferential hormonogenic site, brings two N-glycans (Asn57 and Asn91). NTD preparations were purified from Tg with low and mild iodine content in vivo and from poorly iodinated Tg after in vitro iodination and coupling. NTD separated from poorly iodinated Tg was also submitted to iodination and coupling after desialylation and deglycosylation. The various NTD isoforms were analyzed for their N-glycan structures and hormone contents. Our results show that 1) in vivo as well as in vitro unglycosylated isoforms did not synthesize hormones, whereas fully or partially (at Asn91) glycosylated isoforms did; 2) high mannose type structures enhanced the hormone content; and 3) desialylation did not affect in vitro hormone synthesis. Evidence of a direct involvement in hormonosynthesis adds to the role of N-glycans in Tg function and opens the way to new mechanisms for regulation (e.g. TSH modulation of N-glycan) or alteration (e.g. Asn91 mutation) of thyroid hormone synthesis.

Chromatography, Affinity↗

Inoculation of Acacia mangium with Alginate Beads Containing Selected Bradyrhizobium Strains under Field Conditions: Long-Term Effect on Plant Growth and Persistence of the Introduced Strains in Soil.

The growth response of Acacia mangium Willd. to inoculation with selected Bradyrhizobium strains was investigated in two field trials in the Ivory Coast (West Africa). In the first trial (Anguededou), four provenances (i.e., trees originating from seeds harvested in different geographical areas) of A. mangium were inoculated with four Bradyrhizobium strains from different origins. Six months after being transplanted in the field, the heights of all inoculated trees showed a statistically significant increase of 9 to 26% compared with those of uninoculated trees, with the most effective strain being Aust 13c. After 19 months, the positive effect of inoculation on tree growth was confirmed. The effect of A. mangium provenance on tree growth was also highly significant. Trees from the Oriomo provenance of Papua New Guinea had a mean height that was 25% greater than those of other provenances. Analysis of variance showed a highly significant effect of interaction between strain and host provenance factors. Thus, most effective strain x provenance combinations could be proposed. Immunological identification of strains clearly showed that 90 to 100% of nodules from trees inoculated with three of the four Bradyrhizobium strains or from uninoculated trees contained exclusively Aust 13c 23 months after tree transplantation. This predominance of Aust 13c in nodules was still observed 42 months after tree transplantation. The second experiment (Port-Bouët), performed with a different soil, confirmed the long-term positive effect of Aust 13c on plant growth, its high competitive ability against indigenous strains, and its persistence in soil. Strain Aust 13c should thus be of great interest for inoculating A. mangium under a wide range of field conditions.

Journal Article↗

The number of oligosaccharides borne by porcine thyroglobulin is variable.

Purified porcine thyroglobulin (Tg) was fractionated on a concanavalin A-Sepharose 4B column by a step-wise elution with increasing concentrations of methyl alpha-mannoside (fraction A, 50 mM; B, 100 mM; C, 200 mM; D, 500 mM, and E, 1 M), and its fractional ratio was 12.8:28.6:26.4:19.7:12.4. These five fractions showed the same profile in polyacrylamide gel electrophoresis. The subfractions were analyzed for their relative contents in oligosaccharides of each structure type and for their monosaccharide contents. In fractions B, C, D, and E the former varied between 15-22% for triantennary complex-type, 47-60% for biantennary complex-type, and 22-30% for high mannose-type oligosaccharide. Fraction A showed a higher percentage of triantennary complex-type structures (36%) and a lower percentage of biantennary complex-type structures (17%). The monosaccharide numbers increased from fraction A to E: 85 to 135 mannose residues, 60 to 82 galactose residues, 84 to 115 N-acetyl glucosamine residues, and 22 to 28 sialic acid residues. After analysis of the number of mannose residues contained in the high mannose-type structures, it was possible to calculate the number of oligosaccharides borne by each Tg subfraction. This number was approximately the same for fractions A and B (22.4 and 21.7), then it increased from B to E (21.8 to 32.9). These results account for the separation obtained on the concanavalin A-Sepharose 4B column. Separation of the two first subfractions bearing the same number of oligosaccharides is certainly due to the higher number of high mannose-type structures in B. In conclusion, the studies reported here show that porcine Tg is heterogeneous, and mainly so in terms of total number of N-glycan structures.

Animals↗

Synthesis of structural analogs of leukotriene B4 and their receptor binding activity.

Structural analogs of leukotriene B4 (LTB4) were designed using a preferred conformation of LTB4 (1). Appending an aromatic ring scaffold between LTB4 carbons 7 and 11 led to quinoline analogs 3 and 15. A similar modification to the LTB4 structure between carbons 7 and 9 led to the pyridine analogs 41 and 46. The compounds of this study were evaluated in receptor binding assays using [3H]LTB4 and intact human DMSO differentiated U-937 cells. The first analog prepared, quinoline 3, displayed moderate potency in the LTB4 receptor binding assay (Ki = 0.9 microM). Modification of 3 by appending an aromatic ring between carbons 2 and 4 of the acid side chain produced a dramatic increase in receptor binding (15, Ki = 0.01 microM); a further improvement in receptor binding was achieved in the pyridine series (e.g., 41; Ki = 0.001 microM). The LTB4 receptor agonist/antagonist activity of the test compounds was determined using a functional assay that relies upon intracellular calcium mobilization induced by LTB4. Of the analogs prepared in this report only 47 demonstrated LTB4 receptor antagonist activity.

Humans↗

Tyrosine iodination and iodotyrosyl coupling of the N-terminal thyroid hormone forming site of human thyroglobulin modulate its binding to auto- and monoclonal antibodies.

The present work was aimed at studying the interaction of autoantibodies (aAb) and monoclonal antibodies (mAb) with the N-terminal thyroid hormone forming site of human thyroglobulin (TG). Obtained by CNBr treatment of TG, the peptide (22 kDa) containing the complete major hormonogenic site of human TG was purified in three forms according to the degree of iodination and iodotyrosine coupling: the native, poorly iodinated form (n-22K), the iodinated form containing iodotyrosine but not hormone residues (i-22K) and the form containing thyroid hormone (t-22K). We report that aAb from some patients with autoimmune thyroid diseases showed significant binding to both iodinated 22 kDa forms. Furthermore, a detailed study using mAb evidenced that iodination and coupling induced changes in the antigenicity of the molecule, some occurring without direct implication of iodine or thyroid hormones. The 22 kDa peptide appears as an interesting model to study the antigenic changes induced by the structural modifications in the course of thyroid hormone synthesis. This observation could be relevant to the etiopathogenic process of thyroid autoimmune diseases.

Antibodies, Monoclonal↗

Effects of zinc and copper deficiency associated with protein or lipid deficiency on rat exocrine pancreatic secretion.

Copper and zinc are both secreted by the pancreas but are necessary for pancreatic secretion. We have studied the effects of a 4- or 8-week zinc or copper-deficient diet associated with or without lipid or protein deficiency on rat pancreatic secretion after stimulation by secretin, cerulein, or intraduodenal oleic acid. Twenty animals were in the control group; 40 rats were fed a copper-deficient diet (20 copper-deficient only and 20 copper- plus lipid-deficient). Ninety rats were deprived of zinc (30 of zinc-deficient only, 30 zinc-plus protein-deficient, 30 of zinc- plus lipid-deficient). Only the zinc- plus lipid-deficient diet for 8 weeks decreased basal bicarbonate and basal protein secretion (-42 and -70%, respectively, of the control values). Stimulated secretion was not markedly altered by copper deficiency while zinc deficiency, zinc plus protein deficiencies, and zinc plus lipid deficiencies suppressed almost responses to hormonal stimulation: After 8 weeks, the maximal protein response to oleic acid was reduced to 19.00 +/- 3.40, 18.58 +/- 3.00, and 12.04 +/- 2.91 microgram/30 min/g body weight in zinc- zinc and protein-; and zinc- and lipid-deficient diet, respectively, versus 39.87 +/- 6.33 microgram/30 min/g body weight (p less than 0.05) in controls. In all types of stimulation, lipid deficiency potentiated the deleterious effect of zinc deficiency on pancreatic secretion. This might be paralled with an extremely low level of lipid in the diet of people living in countries in which nutritional pancreatitis is observed and with the relative risk of developing an alcoholic chronic pancreatitis being increased by a low fat diet.

Animals↗

Role of sialic acid residues in crossed immuno-affinoelectrophoresis of alpha 1-proteinase inhibitor.

We have investigated the importance of the degree of sialylation when an acute phase glycoprotein, alpha 1-proteinase inhibitor (alpha 1-Pi), was analysed both by affinity chromatography on concanavalin A (Con A)-Sepharose and by crossed immuno-affinoelectrophoresis (CIAE) using Con A in the first dimension. Human alpha 1-Pi was isolated by immunosorption chromatography and then more or less desialylated. On Con A-Sepharose chromatography no significant difference was observed in the percentage of the two fractions (retained or not retained) whatever the degree of desialylation. In contrast by CIAE this degree was largely involved in the separation of the different isoforms obtained in the first dimension.

Chromatography, Affinity↗

[Gestational diabetes].

Gestational diabetes defined by either glucose intolerance or overt diabetes discovered during pregnancy is a real nosologic entity which is associated with risks for both foetus and mother. Unfortunately biological definition of gestational diabetes remains controversial. In North America it is defined by O'Sullivan's criteria (OGTT with 100 g of glucose for 3 hours), in Europe it is defined by WHO's criteria (OGTT with 75 g of glucose for 2 hours). Strategy for selection of high risk women who have to be submitted to OGTT is also matter of debate. Despite these uncertainties, everybody agrees that gestational diabetes is associated with high risk of foetal macrosomia and high rate of cesarean section. For the mother, gestational diabetes is a marker of future development of diabetes. Most of gestational diabetes are related to type II diabetes but some cases of type I diabetes are preceded by gestational diabetes. The treatment of gestational diabetes depends upon the severity of glucose intolerance. It is resumed by dietetic intervention associated, if necessary, with insulin therapy.

Blood Glucose↗

Identification of a procarboxypeptidase A-truncated protease E binary complex in human pancreatic juice.

The characterization, in human pancreatic juice, of a binary complex associating procarboxypeptidase A with a 32 kDa inactive glycoprotein (G32) is reported in this paper. Free G32 was isolated after dissociation of the binary complex. N-terminal sequence analysis revealed a complete homology between this protein and human protease E (HPE 1), except for the two strongly hydrophobic N-terminal residues (Val-Val) which are missing in G32. This protein might be a truncated protease E highly analogous to the subunit III of the ruminant procarboxypeptidase A-S6 ternary complex. The analogy with bovine subunit III is further supported by interspecies reassociation experiments showing that bovine procarboxypeptidase A can specifically bind human G32.

Carbohydrates↗

Changes in serum level and affinity for concanavalin A of human alpha 1-proteinase inhibitor in severe burn patients: relationship to natural killer cell activity.

In serum from five patients with severe burns, alpha 1-proteinase inhibitor (alpha 1-PI) was analyzed and then isolated by immunosorption chromatography. By Con A-Sepharose chromatography alpha 1-PI was separated into two types of fractions: the first containing the Con A-non-reactive isoforms and the second containing the Con A-reactive isoforms. The increase of alpha 1-PI serum level in burn patients is associated on the fifth day after the burn with a significant shift toward species enriched in bi-antennary oligosaccharides (Con A-reactive isoforms). This latter change passed very quickly and ten days after the burn, whereas the alpha 1-PI serum level was still high, the difference in proportions of Con A-reactive and non-reactive isoforms was not statistically significant. With respect to the difference in oligosaccharide structure, it appeared that the glycan moiety was involved in the inhibitory effect on natural killer cell activity. At the same concentration, purified alpha 1-PI and retained alpha 1-PI isoforms had an equal effect, whereas the non-retained alpha 1-PI isoforms were more efficient (P less than or equal to 0.01). Purified alpha 1-PI and its isoforms inhibited the natural killer cell activity in a dose-dependent manner.

Blood Proteins↗