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G Grondin

Publications and source records attributed to G Grondin.

At least 37 records · Page 2Linked to original sources

Purification, characterization, and localization of two ATP diphosphohydrolase isoforms in bovine heart.

Two ATP diphosphohydrolase (ATPDase) isoforms have been purified from the bovine heart ventricle. The purification procedure includes the following steps: differential centrifugation, sucrose cushion centrifugation, solubilization with Triton X-100, DEAE agarose ion exchange, and Affi-Gel blue-Sepharose and concanavalin A (con A)-Sepharose chromatographies. The purified enzyme has an optimum pH of catalysis of 7.5 and requires Ca2+ or Mg2+. The apparent Michaelis constant of the enzyme, with ADP as the substrate, is 29 microM, and the apparent maximal velocity is 1.6 mumol.min-1.mg protein-1. Substrate specificity, heat-inactivation curves, and copurification of adenosinetriphosphatase (ATPase) and adenosinediphosphatase (ADPase) activities confirmed the identity of the purified enzyme as an ATPDase. In addition, polyacrylamide gel electrophoresis, under nondenaturing conditions, showed identical migration patterns for the protein involved in ATPase and ADPase activities. Western blot analysis, with an antibody that specifically recognizes the NH2-terminal sequence of pig pancreas ATPDase and specifically reacts with bovine and human ATPDases, showed cross-reactivity with the purified ATPDase isoforms from the bovine heart. Immunocytochemical localization in the ventricle produced strong reactions with the plasma membrane of Purkinje fiber cells and the majority of myocardial cells. Immunoreactivity was variable, producing a mosaic-like aspect. As expected, smooth muscle cells and endothelial cells of coronary vessels were highly reactive. This ectoenzyme could play a protective role against the potentially deleterious effects of extracellular ATP. In tandem with 5'-nucleotidase, it produces adenosine, a powerful vasodilator, especially in hypoxic or ischemic conditions that favor the release of ATP.

Animals↗

Purification and immunohistochemical localization of the ATP diphosphohydrolase in bovine lungs.

We have recently described different isoforms of mammalian ATP diphosphohydrolase (ATPDase; EC 3.6.1.5). In the present study, we purified the lung ATPDase by column chromatographies followed by polyacrylamide gel electrophoresis under nondenaturing conditions. The active polypeptide that has a molecular mass of 78 kDa was identified by affinity labeling to the ATP analog 5'-p-fluorosulfonylbenzoyladenosine (FSBA), followed by detection on Western blot with an antibody specific for FSBA. N-glycosidase F treatment shifted the molecular mass of the 78-kDa polypeptide down to 54 kDa, indicating that the enzyme bears approximately 6-12 NH2-linked oligosaccharide chains. A polyclonal antibody raised against the pancreas ATPDase, which specifically recognized the 78-kDa glycoprotein on Western blot, was used to carry out an immunological survey of the enzyme distribution in bovine lungs. Immunoreactivity was detected on airway epithelia from the trachea down to alveolar cells, airway and vascular smooth muscle cells, submucous glands, chondrocytes, leucocytes, as well as endothelial and mesothelial cells. Such a wide distribution suggests that the ATPDase may affect a variety of physiological effects mediated by extracellular nucleotides, such as airway smooth muscle tone, surfactant secretion, platelet aggregation, and inflammation.

Adenosine↗

Reclamation of acetone in plastination laboratories: a simple and inexpensive method.

Since the introduction of the plastination process by von Hagens [Anat Rec 194/2: 247-256, 1979], the cost of acetone used for the dehydration step has been considered an important factor in the cost of plastination. We have developed a three-step method that permits the reuse of acetone. The first step simply consists of storing the contaminated acetone in the freezer and separating the congealed fat by filtration. The second step is vacuum distillation of the acetone and can be conducted with the freezer and vacuum pump (found in any plastination laboratory) with just a few additions. It produces 95-97% pure acetone. The last step uses a desiccant to take away the residual water from the distilled acetone and brings the purity to 99.5%. With this method, we have reduced the amount of acetone to be purchased to a minimum and completely eliminated the cost of discarding used acetone. In addition vaporized acetone released during the impregnation step of plastination is recaptured.

Acetone↗

In situ hybridization analysis of ZPK gene expression during murine embryogenesis.

ZPK is a recently described protein serine/threonine kinase that has been originally identified from a human teratocarcinoma cell line by the polymerase chain reaction and whose function in signal transduction has not yet been elucidated. To investigate the potential role of this protein kinase in developmental processes, we have analyzed the spatial and temporal patterns of expression of the ZPK gene in mouse embryos of different gestational ages. Northern blot analysis revealed a single mRNA species of about 3.5 KB from Day 11 of gestation onwards. In situ hybridization studies demonstrated strong expression of ZPK mRNA in brain and in a variety of embryonic organs that rely on epitheliomesenchymal interactions for their development, including skin, intestine, pancreas, and kidney. In these tissues, the ZPK mRNA was localized primarily in areas composed of specific types of differentiating cells, and this expression appeared to be upregulated at a time concomitant with the onset of terminal differentiation. Taken together, these observations raise the possibility that the ZPK gene product is involved in the establishment and/or maintenance of a fully cytodifferentiated state in a variety of cell lineages.

Animals↗

Control of gamma-glutamyl transpeptidase expression by glucocorticoids in the rat pancreas. Correlation with granule formation.

Glucocorticoids are known to promote the formation of zymogen granules in acinar cells of the exocrine pancreas in vivo as well as in vitro. To gain insight into the mechanism of this regulation, we studied the effects of glucocorticoids on the synthesis of two components of the secretory granule membrane, the glycoprotein 2 (GP-2) and the gamma-glutamyl transpeptidase (GGT). It was demonstrated that following adrenalectomy, degranulation of pancreatic acinar cells is accompanied by a sharp decrease in GGT and GP-2 synthesis as measured by mRNA and protein accumulation. The decline of GGT synthesis was prevented by glucocorticoid replacement therapy, whereas GP-2 synthesis could be maintained with either glucocorticoid or estradiol treatment. These in vivo observations were corroborated and extended in an in vitro study using AR42J pancreatic cells. With this cell line, it was demonstrated that dexamethasone induces the formation of zymogen granules and the accumulation of a specific GGT transcript (mRNA III) by decreasing its degradation rate. At the same time, the GP-2 mRNA level was not modified by the hormonal treatment. These data demonstrate that glucocorticoids exert a positive control on the GGT expression in pancreatic cells at a post-transcriptional level. GGT, an enzyme of the glutathione metabolism, could play a significant role in protein packaging in secretory cells.

Animals↗

The vesicle-associated membrane protein family of proteins in rat pancreatic and parotid acinar cells.

BACKGROUND & AIMS: The vesicle-associated membrane protein (VAMP) family of proteins may play an important role in regulating enzyme secretion from pancreatic and parotid acini. The purpose of this study was to characterize the isoforms produced in pancreatic and parotid acini and determine their subcellular locations. METHODS: Using a battery of specific antisera and recombinant tetanus toxin light chain (which cleaves VAMP-2 and cellubrevin), the presence of each VAMP molecule in the acini was determined by immunoblotting of subcellular membrane fractions; their localization was determined by confocal immunofluorescence microscopy and immunogold electron microscopy. RESULTS: Both VAMP-2 and cellubrevin were present on both the zymogen granule membrane and plasma membrane. VAMP-1 was not present in the acinar cell but was found in the nerve endings innervating the acini. As expected, pancreatic acinar VAMP-2 and cellubrevin were sensitive to cleavage by recombinant tetanus toxin. CONCLUSIONS: VAMP-2 and cellubrevin may play integral roles in exocytosis of the pancreatic and parotid acinar cells, whereas VAMP-1 is restricted to nerves that innervate the acini and may function to modulate exocrine activity.

Animals↗

Cell-specific expression of the ZPK gene in adult mouse tissues.

ZPK is a recently identified human putative protein kinase gene that encodes an unusual serine/threonine kinase containing two potential leucine zipper motifs similar to those found in transcription factors as well as in members of the newly discovered mixed-lineage family of protein kinases. To study the normal biological function of ZPK, we have isolated a mouse ZPK cDNA and examined the pattern of ZPK mRNA expression in adult mouse tissues by Northern blot and in situ hybridization analyses. The predicted open reading frame of this cDNA encodes an 888-amino-acid protein that shares 95% overall identity with its human counterpart. By Northern blot analysis, we detected expression of ZPK mRNA in the brain of adult mice, but not in any other tissue tested. In situ hybridization analysis of mouse brain sections revealed specific association of ZPK mRNA with neuronal cell populations, primarily in the hippocampus, the cerebral cortex, and the Purkinje cell layer of the cerebellum. Interestingly, a remarkable pattern of cell-type-specific expression was also found in the epithelial compartment of various organ systems, including stomach, small intestine, liver, and pancreas, as well as in the seminiferous tubules of mature testes. Taken together, these observations suggest that ZPK could play a role in development, function, and maintenance of a variety of specialized cells.

Amino Acid Sequence↗

Immunocytochemical and cytochemical demonstration of a novel selective lysosomal pathway (SLP) of secretion in the exocrine pancreas.

The intracellular distributions of lysosomal and zymogen granule (ZG) membrane proteins were analyzed in the pancreas exocrine acinar cell by cytochemical and immunocytochemical approaches. A strong signal was observed with acid phosphatase (AcPase) in the trans-Golgi network and condensing vacuoles, whereas mature ZG and acinar lumina were devoid of any detectable reaction. The enzyme appears to exit from the regulated pathway by a shedding process during conversion of condensing vacuoles to mature granules. Trimetaphosphatase (TMPase) shows no reaction in the Golgi apparatus and condensing vacuole but is present in immature granules. The exit from the regulated pathway appears to occur at a later stage of the ZG maturation process. A third lysosomal enzyme, nicotinamide adenine dinucleotide phosphohydrolase (NADPase), was found in the median cisterna of the Golgi stack, was undetectable in condensing vacuoles and ZG, but produced a strong signal in the acinar lumen. Our observations show that only one type of intermediate organelle can explain the transport of that enzyme from the Golgi apparatus to the acinar lumen, and it is represented by a subpopulation of lysosomal bodies (LBs) highly reactive for this enzyme. In parallel, immunocytochemical observations with specific antibodies to GP2, a major protein component of the ZG membrane, have confirmed that most of the GP2 molecules in the acinar lumen do not derive from the ZG compartment but rather are from a subpopulation of highly reactive lysosomal structures. Because both NADPase and GP2 co-localize in specific lysosomal structures, and because these LBs are extruded in the acinar lumen, we conclude that this subpopulation of LBs is involved in selective transport of some lysosomal enzymes from the Golgi apparatus to the acinar lumen. This selective lysosomal pathway of secretion can explain the kinetics of GP2 transport and release from the acinar cell that cannot be explained either by the constitutive or the regulated pathway of secretion.

Acid Anhydride Hydrolases↗

Development of GP-2 and five zymogens in the fetal and young pig: biochemical and immunocytochemical evidence of an atypical zymogen granule composition in the fetus.

To uncover the mechanisms involved in the biogenesis of secretory granules, we studied development of the exocrine pancreas in the pig from the fetus up to the mature animal by following the enzyme activities and expression (Northern blot) of five zymogens and GP-2, the major protein of the granule membrane. Fetal pancreas mainly contained chymotrypsinogen and barely detectable amounts of amylase, trypsin, lipase, and elastase. GP-2 was not notably expressed before the Day 21 of life. Ultrastructural examination of the fetal tissue embedded in Epon with osmium postfixation or in Lowicryl at -20 degrees C without postfixation showed dense granules with an irregular shape but also showed that most granules had uncondensed contents, with the aspect of immature granules, or had a dense core surrounded by light material. With immunogold cytochemistry, the concentration of chymotrypsinogen was directly associated with the acquisition of electron density by the granule matrix. These observations suggest that fetal granules have a slower rhythm of zymogen condensation and an irregular shape that could be due to the particular composition of the matrix and the absence of GP-2. We conclude that, in the exocrine pancreas, secretory granules can be formed under various conditions, even with a matrix containing a ratio of components very different from that of the normal mature animal.

Animals↗

Characterization of SNARE protein expression in beta cell lines and pancreatic islets.

Pancreatic beta cells and cell lines were used in the present study to test the hypothesis that the molecular mechanisms controlling exocytosis from neuronal cells may be used by the beta cell to regulate insulin secretion. Using specific antisera raised against an array of synaptic proteins (SNAREs) implicated in the control of synaptic vesicle fusion and exocytosis, we have identified the expression of several SNAREs in the islet beta cell lines, beta TC6-f7 and HIT-T15, as well as in pancreatic islets. The v-SNARE vesicle-associated membrane protein (VAMP)-2 but not VAMP-1 immunoreactive proteins were detected in beta TC6-f7 and HIT-T15 cells and pancreatic islets. In these islet-derived cell lines, this 18-kDa protein comigrated with rat brain synaptic vesicle VAMP-2, which was cleaved by Tetanus toxin (TeTx). Immunofluorescence confocal microscopy and electron microscopy localized the VAMP-2 to the cytoplasmic side of insulin containing secretory granule membrane. In streptolysin O permeabilized HIT-T15 cells, TeTx inhibited Ca2+-evoked insulin release by 83 +/- 4.3%, which correlated well to the cleavage of VAMP-2. The beta cell lines were also shown to express a second vesicle (v)-SNARE, cellubrevin. The proposed neuronal target (t)-membrane SNAREs, SNAP-25, and syntaxin isoforms 1-4 were also detected by Western blotting. The beta cell 25-kDa SNAP-25 protein and syntaxin isoforms 1-3 were specifically cleaved by botulinum A and C toxins, respectively, as observed with the brain isoforms. These potential t-SNARES were localized by immunofluorescence microscopy primarily to the plasma membrane in beta cell lines as well as in islet beta cells. To determine the specific identity of the immunoreactive syntaxin-2 and -3 isoforms and to explore the possibility that these beta cells express the putative Ca2+-sensing molecule synaptotagmin III, RT-PCR was performed on the beta cell lines. These studies confirmed that betaTC6-F7 cells express syntaxin-2 isoforms, 2 and 2', but not 2'' and express syntaxin-3. They further demonstrate the expression of synaptotagmin III. DNA sequence analysis revealed that rat and mouse beta cell syntaxins 2, 2' and synaptotagmin III are highly conserved at the nucleotide and predicted amino acid levels (95-98%). The presence of VAMP-2, nSec/Munc-18, SNAP-25 and syntaxin family of proteins, along with synaptotagmin III in the islet cells and in beta cell lines provide evidence that neurons and beta cells share similar molecular mechanisms for Ca2+-regulated exocytosis. The inhibition of Ca2+-evoked insulin secretion by the proteolytic cleavage of HIT-T15 cell VAMP-2 supports the hypothesis that these proteins play an integral role in the control of insulin exocytosis.

Animals↗

A chimeric proinsulin-CD5 protein expressed in AtT-20 cells is directed to the cell surface via the constitutive pathway.

A chimeric gene encoding mouse proinsulin fused to the transmembrane and the cytoplasmic domains of the CD5 antigen of human T lymphocytes was expressed in AtT-20 cells to assess the relative strength of signals that influence the sorting of secretory proteins to the regulated or constitutive pathway in endocrine cells. Transfected cells expressing the antigen at the surface were purified by fluorescence-activated cell sorting and analyzed by Northern and Western blots. They contained a mRNA of 1.4 kb hybridizing with an insulin cDNA probe and two immunoreactive insulin forms of 21 and 24 kDa, recognizable by antibodies against both insulin and C peptide. The surface density of these antigens was not increased following KCl stimulation of the cells, suggesting that they were not stored within the cells in significant amounts. This was confirmed by immunoelectron microscopy which showed the antigen attached to membranes, in the Golgi, in endosomes, and at the cell surface, but not in secretory granules. These results indicate that the proinsulin-CD5 fusion protein was transported to the cell surface via the constitutive pathway and partly recycled by endocytosis. They also suggest that the signals that direct proinsulin into storage granules may no longer be dominant when fused to transmembrane and cytosolic sequences derived from a constitutively secreted molecule.

Amino Acid Sequence↗

A study of criteria permitting the use of plastinated specimens for light and electron microscopy.

Plastination permits the preservation of anatomical specimens in a physical state approaching that of the living condition. We studied the possibility of using silicone plastinated fragments of spleen and pancreas for optical and electron microscopy, and found that with an adequate fixation protocol, plastinated specimens can be used for both light microscopy and ultrastructural studies. Deplastination with sodium methoxide permitted production of clean sections. Artifacts produced by plastination/deplastination could be nearly eliminated by glutaraldehyde/formaldehyde fixation. The (Biodur) silicone S10 polymer is transparent and stable in an electron beam, and plastinated tissues can be contrasted or colored similar to tissues embedded in Epon 812. In addition to being very life-like, plastinated tissues are stable and easy to handle. They can also be used for electron and light microscopic studies. This technique may also allow retrospective epidemiological studies of archived pathology specimens.

Animals↗

Immunocytochemical localization of gamma-glutamyltranspeptidase, GP-2 and amylase in the rat exocrine pancreas: the concept of zymogen granule membrane recycling after exocytosis.

We localized gamma-glutamyltranspeptidase (GGT) in the rat pancreas by immunocytochemistry using the protein A-gold technique. The enzyme was found in the apical and zymogen granule (ZG) membranes of the pancreatic acinar cell. With ZG at the onset of exocytosis, labeling was seen over membrane, whereas content was unreactive. In the acinar lumen, the enzyme was generally associated with small vesicles previously described as "pancreasomes." This observation corroborates a recent proposal that a membrane-shedding process is associated with exocytosis in the exocrine pancreas. It also implies that some elements of the ZG membrane are not recycled after exocytosis. The cellular distribution of GGT was compared with GP2, another glycoprotein component of the ZG membrane, and differences in localization indicate different fates for these two proteins. Indeed, GP2 shows a strong signal with the basolateral membrane, whereas in the case of GGT the signal is barely detectable. The reverse situation is observed on the apical plasma membrane, GGT producing a much stronger signal than GP2. The failure to detect GGT in lysosomal structures, combined with the fact that some endocytic-like vacuoles in the vicinity of the apical plasma membrane give a positive reaction, supports the view that some GGT molecules are recycled in the ZG membrane after exocytosis. Our observations clearly demonstrate that a fraction of the protein components of the ZG membrane are not recycled after exocytosis, raising new questions regarding the concept of membrane recycling associated with regulated secretion.

Amylases↗

Histochemical and immunocytochemical characterizations of laminated bodies in the pancreas acinar lumen.

Combined adrenalectomy and castration cause numerous morphological alterations in the exocrine pancreas of the rat. Accumulation of laminated bodies (LB) in the acinar lumen is one of these alterations. A series of classical histological stains was applied to identify the components of these structures. A positive reaction was observed with periodic acid-Schiff, Congo red, and Alcian blue (pH 2.5). The first stain reacts with neutral and some acid mucosubstances and the second with amyloid, whereas the last one reacts with sulfated and nonsulfated acid mucosubstances. The LB also responded to Luxol fast blue, indicating the presence of lipids, an observation that is in agreement with the osmiophilic properties of these structures. A more specific identification of LB components was carried out with the immunocytochemical protein A-gold technique. Presence of gamma-glutamyltranspeptidase (gamma-GT) and GP2, two glycoproteins known to be secreted by the pancreas, was tested. The gamma-GT was associated with LB whereas GP2 was found in the lumen but not associated with these structures. Amylase was undetectable when LB occupied the lumen, suggesting that the process leading to production of LB also blocks secretory activity. To determine if diet influences LB accumulation in the pancreas acinar lumen, their frequency was compared in rats fed Purina Lab Chow or a lipid-free synthetic diet. A significant increase was observed in castrated-adrenalectomized rats fed the latter diet. This increase corresponded to a pronounced reduction in the number of zymogen granules (ZG) in the acinar cell. Our results show that LB are made of lipids, neutral mucosubstances, and nonsulfated acid mucosubstances, and that hormonal (steroids) and dietary factors (lipids) influence their accumulation.

Adrenalectomy↗

Soybean trypsin inhibitor and cerulein accelerate recovery of cerulein-induced pancreatitis in rats.

The role of exogenous and endogenous cholecystokinin has been studied in the process of pancreatic regeneration after acute pancreatitis. A mild form of pancreatitis was induced in rats by subcutaneous cerulein at 12 micrograms.kg-1, three times a day for 2 days. After 3 days of rest, the cerulein-treated rats were divided into four groups: rats with acute pancreatitis fed 20% casein, who received no treatment; rats fed 50% casein; rats fed 20% casein supplemented with 1% soybean trypsin inhibitor (SBTI); and rats fed 20% casein who received 1 microgram.kg-1 of subcutaneous cerulein, three times a day. Controls were fed 20% casein plus saline subcutaneously. Rats were killed after 5, 10, or 20 days of treatment. Pancreatitis resulted in significant decreases in pancreatic weight and contents of protein, amylase, chymotrypsin, RNA and DNA. During the regenerative process, 1 microgram.kg-1 of cerulein increased all parameters to control values within 5 days and induced pancreatic growth thereafter. SBTI restored the pancreas to normal after 10 days with cellular hypertrophy; the 50% casein diet gave a response similar to SBTI without hypertrophy. It can be concluded that cerulein and SBTI can accelerate pancreatic regeneration after an attack of acute pancreatitis.

Acute Disease↗

Involvement of endogenous cholecystokinin in pancreatic regeneration after cerulein-induced acute pancreatitis.

This study was undertaken to determine the involvement of endogenous cholecystokinin (CCK) in the regeneration of pancreatic tissue after cerulein-induced acute pancreatitis treated by the CCK receptor antagonist L364,718. Acute pancreatitis was induced in rats by s.c. injections of cerulein in gelatin (12 micrograms/kg) three times a day for 2 days with controls receiving saline in gelatin. Rats were then divided into four treatment groups: saline-dimethyl sulfoxide (DMSO) (SD), saline-L364,718 (SA), cerulein-pancreatitis-DMSO (CD), and cerulein-pancreatitis-L364,718 (CA). In the first experiment, rats were treated for 3 or 10 days with DMSO or L364,718 (0.1 mg/kg, twice a day). In the second experiment, rats were treated for 13 days with DMSO or L364,718 (1.0 mg/kg, twice a day). After the rats were killed, pancreata were weighed and evaluated for their total protein, amylase, chymotrypsin, RNA, and DNA. We found that destruction of the pancreatic tissue occurred after cerulein-induced pancreatitis and that regeneration of the tissue was in progress but incomplete after 10 days; the low dose of L364,718 did not prevent regeneration. After 13 days, regeneration was still incomplete but the 1-mg dose of L364,718 strongly inhibited spontaneous regeneration. These data suggest that endogenous CCK is an important and potent trophic factor in the regeneration process of pancreatic tissue following an episode of acute pancreatitis.

Acute Disease↗

Cytochemical and immunocytochemical characterization of a fibrillar network (GP2) in pancreatic juice: possible role as a sieve in the pancreatic ductal system.

The secretory product of the exocrine pancreas contains sedimentable and non-sedimentable materials. Electron microscopy of the pellet obtained after ultracentrifugation reveals two major components: microvesicles (pancreasomes) and a fibrillar network of small mesh size. Negative staining of an unfixed pellet demonstrated that these structures are not fixation artifacts. Cytochemical analysis showed that pancreasomes are reactive to osmication and uranyl acetate staining, whereas the fibrillar network was unreactive thereby indicating that the latter does not contain lipids; however, lead citrate staining reveals the network. Alcian blue, known to bind sulfate groups of mucosubstances, reacted strongly with the fibrillar network. The pellet was also characterized by immunocytochemistry with specific antibodies to amylase and glycoprotein 2 (GP2). Both antibodies were located only on the fibrillar network. Washing of the pellet with 100 mM KCl-250 mM NaBr had little effect on GP2 content, but reduced considerably alpha-amylase associated with the reticular matrix. It appeared that GP2 was the major component of the scaffolding that gives rise to the fibrillar network and that other proteins such as alpha-amylase could reversibly bind to it. When double-labeling immunocytochemistry was carried out on the unwashed pellet, labeling of the first antigen reduced the labeling of the second. Removal of amylase by washing the pellet increased the GP2 signal. These results indicate that amylase is bound on the GP2 network. Although the function of the GP2 network is still not clearly defined several possibilities could be envisaged at the level of the pancreatic duct system: 1) The network could drain off any aggregates or precipitates forming in small ducts. 2) The small mesh of the network would present a physical barrier to infecting bacteria that could enter into the duct system from the intestine, especially in conditions of low flow rates. 3) The network may exert a mechanical pressure on the membranes bordering the acinar lumen and small ducts thereby preventing their collapse in basal conditions.

Animals↗