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Biomedical subjects

M J Pujol

Publications and source records attributed to M J Pujol.

At least 19 recordsLinked to original sources

Glyceraldehyde 3-phosphate dehydrogenase is a SET-binding protein and regulates cyclin B-cdk1 activity.

We report here that glyceraldehyde-3-phosphate dehydrogenase (GAPDH) interacts in vitro and in vivo with the protein SET. This interaction is performed through the acidic domain of SET located at the carboxy terminal region. On analysing the functional relevance of SET-GAPDH interaction, we observed that GAPDH reverses in a dose-dependent manner, the inhibition of cyclin B-cdk1 activity produced by SET. Similarly to SET, GAPDH associates with cyclin B, suggesting that the regulation of cyclin B-cdk1 activity might be mediated not only by the interaction of GAPDH with SET but also with cyclin B. To analyse the putative role of GAPDH on cell cycle progression, HCT116 cells were transfected with a GAPDH expression vector. Results indicate that overexpression of GAPDH does not affect the timing of DNA replication but induces an increase in the number of mitosis, an advancement of the peak of cyclin B-cdk1 activity and an acceleration of cell cycle progression. All these results suggest that GAPDH might be involved in cell cycle regulation by modulating cyclin B-cdk1 activity.

CDC2 Protein Kinase↗

Differential association of p21Cip1 and p27Kip1 with cyclin E-CDK2 during rat liver regeneration.

BACKGROUND/AIMS: The cell cycle inhibitors p21Cip1 and p27Kip1 regulate liver regeneration by modulating the activity of cyclin-dependent kinases (CDKs). However, the specific role of these inhibitors in the regulation of CDK2 activity during liver regeneration remains unknown. The aim of this study was to examine the association of p21Cip1 and p27Kip1 with cyclin E-CDK2 and cyclin A-CDK2 complexes during rat liver regeneration and to correlate the association of both inhibitors with CDK2 activity. METHODS: The association of p21Cip1 or p27Kip1 with cyclin E-CDK2 or cyclin A-CDK2 and the activities of these complexes were analyzed by immunoprecipitation of rat liver homogenates obtained at different times after a partial hepatectomy (PH), followed by Western blotting or kinase assays. RESULTS: High amounts of p27Kip1 bound to cyclin E-CDK2 were observed during the first 13 h after PH, when CDK2 activity was very low. At 24 h, when CDK2 activity was maximal, the amount of bound-p27Kip1 decreased strongly. The amount of p21Cip1 bound to these complexes was low during the first 13 h but subsequently increased. No cyclin A-CDK2 complexes were found during the first 13 h after PH. At 24 h, complexes containing low levels of both inhibitors were detected and at 28 h, a significant increase in p21Cip1 and p27Kip1 associated with cyclin A-CDK2 was observed. CONCLUSIONS: p27Kip1 acts as a brake on cyclin E-CDK2 activity during the first 13 h after a PH. Both p21Cip1 and p27Kip1 down-regulate cyclin A-CDK2 activity at 28 h after PH, after its maximal activation.

Animals↗

Molecular analysis of HLA class I alleles in the Mexican Seri Indians: implications for their origin.

The molecular analysis of HLA class I loci has demonstrated that, although, the genetic profile is restricted in Amerindians, several micropolymorphisms may be important in conferring a biological advantage. We analyzed the HLA-A and B genetic profile of Seris, a Mexican Indian tribe living in northwestern Mexico in the state of Sonora. There are presently only 619 individuals. Our study included 100 Seris belonging to nine families. HLA-A and -B loci typing was performed by polymerase chain reaction using an amplification refractory mutation system (PCR-ARMS) on a select group of samples; all of them were typed by polymerase chain reaction using sequence-specific oliogonuoleotide probes (PCR-SSOP) at a low-intermediate resolution level. The correlation between the techniques was 100%. Only five HLA-A alleles and seven HLA-B alleles were found. A*0201, A*68, A*31, A*24, B*3501, B*40, B*51, B*3512 and B*15 were present in over 5% of the individuals. B*27052 was detected in 2%. B27 is absent in any other Mexican Indian groups previously studied. The presence of B27 may be the result of a founder effect due to different waves of southward migrations. The B-locus is more diverse and the prevalent haplotypes were: A*0201-B*3501, A*0201-B*40, A*0201-B*3512, A*31-B*51, A*68-B*3501 and A*68-B*40. This genetic profile is different from the pattern of other Mexicans. The phylogenetic tree suggests that Seris are more closely related to the Warao Indians from Venezuela, who live in a similar ecosystem, and to some groups of Argentina, than they are to the Mexican Lacandones who live in the jungle. These data emphasize the relevance of the interaction between genes and environment.

Genetics, Population↗

Calmodulin expression during rat liver regeneration.

We have investigated the messenger RNAs expressed from the three calmodulin genes during rat liver regeneration. The results revealed that all the calmodulin transcripts increased from 8 hr after a partial hepatectomy, although differences in the timing and the level of expression from the three genes were observed. Calmodulin I transcripts peaked at 16 hr, whereas calmodulin II and calmodulin III progressively increased from 8 to 24 hr. At 24 hr after surgery, calmodulin I, calmodulin II and the 2.3 kb calmodulin III transcripts reached values of a 6-fold increase, whereas the 0.8 kb product of calmodulin III increased 25-fold. At 30 hr the levels of all the calmodulin transcripts were similar to those observed at 24 hr. The transcription rates of the three calmodulin genes augmented after hepatectomy (calmodulin I and calmodulin II twofold and calmodulin III fourfold), indicating that the elevation of the calmodulin transcripts could be, at least partially, the result of this increase in the transcription rates. The total calmodulin concentration also increased twofold at 24 hr after hepatectomy. We also report that the administration of the beta-adrenergic blocker, D,L-propranolol inhibited the accumulation of calmodulin protein without significantly affecting the increase of the messenger RNAs. These results indicate that the expression of calmodulin observed during liver regeneration could be regulated by cyclic AMP at the translational or posttranslational level.

Animals↗

Effect of alpha 1-adrenergic blockade on nucleolar growth, chromatin relaxation, and histone H1(0) content in regenerating liver.

alpha 1-Adrenergic agonists are known to be involved in the regulation of hepatocyte proliferation after a partial hepatectomy. The blockade of alpha 1-adrenergic receptors with the specific antagonist prazosin inhibits DNA synthesis which peaks at 24 h after surgery. In this report we have studied the effects of prazosin administration on several events occurring during liver regeneration. The results show that the nuclear volume and nucleolar volume density of hepatocytes were increased and that the relative amount of heterochromatin decreased at 24 h. The increase in hepatocyte nucleolar volume density and the decrease in the relative amount of heterochromatin were partially abolished by prazosin administration while the increase in the nuclear volume was not affected. The relative amount of the histone H1 variant H1(0) was reduced in 24-h regenerating liver and prazosin treatment prevented this reduction.

Animals↗

Nuclear calmodulin-binding proteins in rat neurons.

By using a 125I-calmodulin overlay assay, three major high-affinity calmodulin-binding proteins, showing apparent molecular masses of 135, 60, and 50 kDa, have been detected in purified nuclear fractions isolated from rat neurons. It has been shown that after extraction of the nuclei with nucleases and high salt, all these proteins remain strongly associated with the nuclear matrix. The 60- and 50-kDa proteins have been previously identified as subunits of the calmodulin-dependent protein kinase II. We report here the immunoblot identification of the 135-kDa calmodulin-binding protein as myosin light chain kinase. We also show that the calmodulin-dependent protein phosphatase calcineurin is present in the neuronal nuclei and associated with the nuclear matrix. The nuclear localization of both calcineurin and myosin light chain kinase has been confirmed by immunocytochemical studies.

Animals↗

Calmodulin regulates DNA polymerase alpha activity during proliferative activation of NRK cells.

When Normal Rat Kidney cells are allowed to reenter the cell cycle after quiescence they start to replicate DNA around 12 h, reaching a maximum at 20 h. Activation of DNA polymerase alpha parallels the increase in DNA synthesis. The addition of two different anti-calmodulin drugs, trifluoroperazine (7.5 microM) or W13 (10 micrograms/ml), to the media at 4 h after proliferative activation, inhibits DNA synthesis by 55% and 80%, respectively. The blockade of calmodulin produced by trifluoroperazine allows the cells to progress through G1 phase but stops progression through S phase as determined by 5-Bromo deoxyuridine labeling. Both anti-calmodulin drugs also inhibit by more than 50% the increase in DNA polymerase alpha activity observed at 20 h. These results indicate that a calmodulin-dependent event, essential for the activation of DNA polymerase alpha and subsequently for DNA replication, is produced during G1. Therefore, the control of DNA polymerase alpha activation is one of the ways by which calmodulin is regulating the progression of NRK cells through S phase.

Animals↗

Effect of different convulsants on calmodulin levels and proto-oncogene c-fos expression in the central nervous system.

In the present study, a relationship between convulsant activity and two cellular events, changes in calmodulin (CaM) concentration and proto-oncogene c-fos expression has been considered. c-fos has been found activated after the administration of the organochlorine insecticide lindane, the Ca2+ channel agonist Bay K, and N-methyl-D-aspartate (NMDA). The administration of the voltage-dependent Ca2+ channel antagonist nifedipine was able to block the expression elicited by lindane. The effect of lindane on c-fos expression could not be blocked by prior administration of MK-801, a non-competitive antagonist of the NMDA receptor. These results suggest a possible role for the voltage-dependent Ca2+ channels in the mechanism of action of lindane. By means of in situ hybridization, the different patterns of c-fos expression after the administration of the mentioned compounds have been described. A possible modification of the levels of CaM has also been investigated. Among all the subcellular fractions considered, only levels of nuclear CaM appeared to be affected after the different treatments. The changes observed seemed to follow a similar pattern to that described for c-fos induction. Calcium entry through these voltage-dependent calcium channels would be the link between membrane depolarizing events and expression of c-fos and/or increase in nuclear CaM.

Animals↗

Regulation of DNA polymerase alpha activity by the alpha 1-adrenergic receptors in proliferatively activated rat liver cells.

The administration of the alpha 1-adrenergic antagonist prazosin to hepatectomized rats inhibited DNA synthesis induced in the remaining hepatocytes. This inhibitory effect could be reversed by the simultaneous injection of the agonist phenylephrine. In order to establish how the alpha 1-adrenergic receptors can regulate DNA replication, the effect of prazosin administration on DNA polymerase alpha was examined. At 24 h after partial hepatectomy, the activity of DNA polymerase alpha increased 5, 7 and 9 fold in the homogenates, nuclei and nuclear matrix, respectively. This increase was inhibited by 70%-80% when prazosin was injected at 1, 8 or 11 h after surgery. Kinetic studies revealed that the Km for DNA was 2 fold lower in hepatectomized than in control animals. The administration of prazosin to hepatectomized rats increased the Km to the control values. These results indicate that the alpha 1-adrenergic receptors are involved in the regulation of DNA synthesis through the activation of DNA polymerase alpha and that this activation could be produced by increasing its affinity for DNA.

Animals↗

Effect of alpha-adrenergic blockers on calmodulin association with the nuclear matrix of rat liver cells during proliferative activation.

A transient peak of cytosolic calmodulin (CaM) was produced during the prereplicative phase of rat liver cell proliferation following partial hepatectomy. After accumulating in the cytosol, CaM apparently translocated into the nuclei, associating with the nuclear matrix. The administration of alpha 1-adrenergic blockers to hepatectomized rats prevented the association of CaM with the nuclear matrix without affecting the increase in the total nuclear CaM. The inhibitory effect of the alpha 1-antagonists was reversed by the simultaneous injection of the alpha-agonist noradrenaline. Since the activation of alpha 1-adrenergic receptors results in the release of Ca2+ from endoplasmic reticulum stores, the results suggest that the association of CaM with the nuclear matrix during proliferative activation is mediated by Ca2+ released from endoplasmic reticulum and show that the association with the matrix is independent of its intranuclear accumulation.

Adrenergic alpha-Antagonists↗

Rearrangement of nuclear calmodulin during proliferative liver cell activation.

Calmodulin increases about three-fold in rat liver nuclei after partial hepatectomy. The increase is maximal after 24 hours, when DNA synthesis is also maximal. During the same time re-distribution of calmodulin within the nuclear structure takes place, leading to its association with the nuclear matrix. Incubation of normal rat liver nuclei with Ca2+ induces association of calmodulin with the matrix, indicating that the re-distribution of calmodulin during the replicative period is related to the increase in nuclear Ca2+. The nuclear matrix contains several calmodulin binding proteins of which one, having Mr of 130 kDa, has been identified as myosin light chain kinase (MLCK). Three acceptor proteins, having Mr of 120, 65, and 60 kDa decrease 24 hours after partial hepatectomy, MLCK and a protein of Mr 150 kDa instead increase.

Animals↗

Reduced levels of sialic acid in the plasma membrane during hepatocellular proliferation.

When rats were infused with a solution containing triiodothyronine, amino acids, glucagon and heparin (solution A) the hepatocytes increased DNA synthesis and decreased plasma membrane sialic acid. In order to study whether the reduced levels of sialic acid in the plasma membrane were associated with hepatocyte proliferation, different mixtures of three components of solution A were infused into rats and the DNA synthetic activity as well as the sialic acid content measured. Results reported here show a correlation between DNA synthetic activity and sialic acid reduction suggesting that the decrease in the plasma membrane sialic acid can be a pre-replicative step associated to cell proliferation.

Amino Acids↗

New synthesis of cyclic AMP-dependent protein kinases during liver regeneration.

As has been previously reported one surge in cytosolic calmodulin is produced between 4 and 12 h after a partial hepatectomy. Moreover, a surge in cytosolic cyclic AMP and another in cyclic AMP-dependent protein kinase activity can be detected during the late period of the prereplicative phase of liver regeneration after a partial hepatectomy. It is known that these three surges are involved in triggering DNA synthesis. By kinetic studies and by injecting transcription (actinomycin D) and translation (cycloheximide) inhibitors into hepatectomized rats we have demonstrated that the cyclic AMP-dependent protein kinase surge is produced by new synthesis of the enzyme. In thyroparathyroidectomized rats subjected to a partial hepatectomy the calmodulin surge was similar to that observed in normal hepatectomized rats whereas the surge in cyclic AMP-dependent protein kinase activity was strongly decreased suggesting that the cyclic AMP-dependent protein kinase surge is not generated by the previous surge in calmodulin.

Calmodulin↗

Possible cyclic AMP-dependence of the prereplicative surge of cytosolic calmodulin in proliferatively activated rat liver cells.

The infusion of a solution containing triiodothyronine, amino acids, glucagon, and heparin (TAGH solution) triggered rat liver cell proliferation. It also induced a transient prereplicative surge of cytosolic calmodulin (between 6 and 20 hr postinfusion) similar to that observed in liver cells proliferatively activated by partial hepatectomy. The injection of the beta-adrenergic blocker dl-propanolol (20 mg/kg of body weight) at the time of the infusion prevented this transient rise of cytosolic calmodulin and also inhibited the early prereplicative surge of total liver cyclic AMP, which usually occurred between 1 and 4 hr after infusion. Propanolol also inhibited the early prereplicative surge of cyclic AMP and the increase of calmodulin in liver cells proliferatively activated by partial hepatectomy. The infusion of a solution containing cyclic AMP (5 mumoles) and theophylline (10 mg) into normal rats produced an increase of cytosolic calmodulin similar to that observed after infusion of TAGH solution or after partial hepatectomy. Thus it seems that the prereplicative rise of cytosolic calmodulin observed in proliferatively activated liver cells may be regulated by the early prereplicative surge of cyclic AMP.

Animals↗

Proliferative response of putative preneoplastic hepatocytes to triiodothyronine, aminoacids, glucagon and heparine.

Proliferative advantage of putative preneoplastic hepatocytes measured as the ratio of tritiated thymidine incorporation into cells of hyperplastic nodules with respect to the incorporation in hepatocytes of extranodular liver has been found to be about 2 in rats treated according to 4 carcinogenesis protocols consisting in one or two cycles of diethylnitrosamine and phenobarbital administration. The proliferative response of hepatocytes in hyperplastic nodules to the intravenous infusion of triiodothyronine, amino-acids, glucagon, and heparine (TAGH) has been found higher or similar--except in one case--than the response of surrounding liver but the proliferative advantage of preneoplastic hepatocytes is lower after TAGH stimulation than in basal conditions in all cases.

Amino Acids↗

Cell phenotype instability in preneoplastic foci of rat liver.

Carcinogenesis is a multi-step process in which genetic--phenotypic instability and sequential selection of preneoplastic cells for increased growth capacity and other neoplastic characteristics are essential phenomena. During chemical carcinogenesis in rat liver, the development of enzyme-deficient foci, their clonal origin and their relationship to tumour formation are known. We report the results of four carcinogenesis protocols consisting of one or two cycles of diethylnitrosamine and phenobarbital. Histochemistry of three enzymes on serial sections has revealed seven different kinds of homogeneous liver foci, resulting from simple and combined enzyme deficiencies, and also heterogeneous foci showing smaller foci inside. We consider such secondary foci as subclones originating from cells already modified that have developed an additional phenotypic change. Some of such foci develop after the first cycle if the promotion phase is as long as 57 weeks. Comparing the number of foci per surface area of liver section with the number of secondary foci per surface area of focus section, it seems clear that cells already modified are less stable than other hepatocytes, showing a higher tendency to develop secondary changes.

5'-Nucleotidase↗

Enzyme pattern and growth rate of liver preneoplastic clones during carcinogenesis by diethylnitrosamine.

Enzyme biochemical and histochemical assays during chemical carcinogenesis in rat liver have revealed that several adult enzyme activities are lost and some fetal enzyme activities are re-expressed in the hyperplastic foci as well as in the developed hepatomas. How these enzyme alterations are acquired and to what extent these changes are specifically related to the growth alterations leading to neoplastic development are decisive questions. Using a carcinogenesis protocol that combines a single dose of diethylnitrosamine and phenobarbital given continuously as the promoting agent and by assaying serial liver sections for glucose-6-phosphatase, adenosine-5'-triphosphatase and 5'-nucleotidase, we have identified the three-enzyme pattern of 1,746 islands and measured their section areas. We found a clear trend that clones with more deviated enzyme pattern grow faster than less deviated ones.

5'-Nucleotidase↗

[Enzymatic phenotype of preneoplastic islands induced in the rat liver by diethylnitrosamine].

Diethylnitrosamine was injected to Sprague-Dawley rats after a partial hepatectomy, and enzyme histochemistry analysis was made after 35 weeks in the preneoplastic liver. The areas and volumes of the induced enzyme-deficient islands were calculated for glucose-6-triphosphatase, adenosine triphosphatase, and 5'-nucleotidase. The preneoplastic enzyme-deficient zones showed also an increased incorporation of tritiated thymidine.

5'-Nucleotidase↗