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Biomedical subjects

M A Ortiz

Publications and source records attributed to M A Ortiz.

At least 19 recordsLinked to original sources

Retinoid-related molecules require caspase 9 for the effective release of Smac and the rapid induction of apoptosis.

Certain retinoid-related molecules (RRMs) with agonist or antagonist activities have been described to induce apoptosis in a variety of cancer cell lines and show promise for the treatment of cancer. Similar to other chemotherapeutic drugs, these retinoid analogs have been suggested to induce apoptosis through the intrinsic pathway, which requires the release of cytochrome c from the mitochondria for the effective activation of caspase 9. Expression of a catalytically inactive form of caspase 9, which functions as a dominant negative mutant, inhibits the induction of DEVDase activity and nuclear fragmentation by selective RRMs. Whereas the RRMs could induce the release of cytochrome c in the absence of caspase 9 activity, the later is necessary for the effective release of Smac/Diablo from the mitochondria. Furthermore, overexpression of Bcl-2 or Bcl-X(L) also inhibits RRM-induced apoptosis. We demonstrate that activation of caspase 2 by the agonist MX2870-1 requires caspase 9 activity and is inhibited by Bcl-2 overexpression. In contrast, the antagonist MX781 induces cleavage of procaspase 2 upstream of mitochondria and independently of caspase 9. Thus, two retinoid analogs with unique characteristics activate two distinct apical caspases (2 or 9) to initiate apoptosis. In addition to caspase-mediated cell death, sustained exposure to the RRMs can also lead to loss of cell viability in cells lacking caspase 9 activity or in cells stimulated in the presence of the caspase inhibitor Z-VAD-fmk. Moreover, MX2870-1 and MX781 produce cell cycle arrest independently of caspase activity and the retinoid receptors.

Apoptosis↗

Retinoid-related molecules induce cytochrome c release and apoptosis through activation of c-Jun NH(2)-terminal kinase/p38 mitogen-activated protein kinases.

Retinoid-related molecules have been described that induce apoptosis in a variety of cancer cell lines. Of particular interest is the apoptotic activity of the all-trans-retinoic acid receptor gamma-selective molecules MX2870-1 and MX3350-1. These compounds have been shown to be effective in vivo against lung cancer and could therefore serve as important leads for novel anticancer drugs. We analyzed the death signaling pathways activated by these molecules. We observed that apoptotic retinoid-related molecules (RRMs) cause the release of cytochrome c from the mitochondria and subsequent activation of caspases 9 and 3. This was preceded by a strong and sustained activation of c-Jun NH(2)-terminal kinase as well as p38 kinase, which was independent of caspase activity. Inhibition of p38 kinase activity by the specific inhibitor SB203580 did not affect the induction of apoptosis by MX2870-1. However, interference with the activation of c-Jun NH(2)-terminal kinase and p38 stress kinases by PD169316 completely blocked all signs of apoptosis, including caspase activity, DNA fragmentation, and phosphatidylserine externalization. PD169316 also prevented the cleavage of Bid and the release of cytochrome c induced by this class of RRMs. Furthermore, processing and activation of different caspases by MX2870-1 was completely inhibited by increasing concentrations of PD169316. Thus, the investigated RRMs induce a death pathway, which is independent of Fas ligand, that is also activated by UV radiation and other agents. Our findings open the possibility for the future use of this class of RRMs in combination therapies with other anticancer drugs.

Apoptosis↗

DNA ploidy status and proliferative activity as markers of malignant potential in Barrett's esophagus: flow cytometric study using routinely paraffin-embedded tissue.

Regular endoscopic surveillance is recommended for patients with Barrett's esophagus to detect dysplasia and to diagnose carcinoma while it is in an early and possibly treatable stage. However, there are numerous unknown aspects regarding the natural history of dysplasia in this disease, and there is still a need for more accurate markers of risk of a malignant change. The aim of this study was to investigate the usefulness of DNA flow cytometry in Barrett's esophagus to define subgroups of patients showing similar histologic findings but with a different malignancy potential. Routinely formalin-fixed and paraffin-embedded tissues of 43 patients with Barrett's esophagus were processed for flow cytometric measurements (ploidy, proliferative index) and the results were compared with the histologic evolution observed in these patients. Only in the group of patients with "indefinite" dysplasia did we find statistically significant differences between the samples from patients with and without progression to more severe lesions (mean proliferative index of stable patients: 5.2% versus 8.3% in patients with progression, p = 0.001, Student's t-test). The presence in the flow cytometric analysis of a DNA aneuploid cell line is closely related to the presence of severe histologic alterations (i.e., high-grade dysplasia: p < 0.001, Fisher's exact test). Our results suggest that this procedure is at least capable of distinguishing between a real, although incipient, neoplastic process and morphologic changes of a reactive or reparative type. The increment in the tissue proliferative index could be an indicator of an early genomic instability which, with time, will develop into lesions with a more altered DNA content: aneuploidy.

Adenocarcinoma↗

Mutation analysis of the Pip interaction domain reveals critical residues for protein-protein interactions.

The PU.1 interaction partner (Pip) is a member of the interferon regulatory factor family that regulates gene expression through heterodimerization with the ETS transcription factor PU.1. Binding of Pip alone to DNA is weak, and usually it is recruited by phosphorylated PU.1 to form a strong ternary complex with specific DNA sequences. An approach combining sequence homology analysis, secondary structure predictions, and a precise mutational strategy has been used to determine critical residues within the Pip heterodimerization domain that contribute to ternary complex formation. We have delimited the Pip interaction domain to residues 245-422 by using deletion analysis. Site-directed mutagenesis of conserved polar amino acids within two predicted alpha-helices contained in this region, and which are highly conserved in the IRF family, confirmed the importance of these residues for Pip-PU.1 interaction with DNA as well as for trans-activation activity. Our results suggest the existence of a functional epitope essential for heterodimerization between Pip and PU.1 and possibly, in general, between interferon regulatory factor family members and their partners.

Amino Acid Sequence↗

Modulation of vasoconstrictor and dilator pancreatic metabolites in streptozotocine diabetic rats: effect of bradykinin blockage and NO inhibition.

This study was designed to investigate the effect of HOE 140 (a bradykinin beta2 receptor antagonist) and N(w)-nitro-L-arginine methyl-ester (L-NAME, a nitric oxide synthase inhibitor) on endothelial and beta-cell function in induced streptozotocine (Stz) diabetic rats. The decrease in the insulinogenic index after Stz effect (control 286.03+/-104.12 and Stz 18.22+/-10.77, P<0.001 vs. Control) was partially prevented by L-NAME (46.54+/-10.12, P<0.001) and HOE 140 (105.12+/-23.06, P<0.001). It was observed in diabetic rats: L-NAME increased the pancreatic endothelin-1 (ET-1) production and HOE 140 did not. L-NAME and HOE 140 decreased the nitric oxide (NO) synthesis, increased prostacyclin 1-2 (PGI2), and did not modify thromboxane A-2 (TxA2). These results indicate that L-NAME and HOE 140 had a protective effect on the development of diabetes in the rat. The protective effect of L-NAME and HOE 140 on the insulinogenic index could be related to ET-1, bradykinin, PGI2, and NO.

Animals↗

Immunohistochemical detection of p53 protein could improve the management of some patients with Barrett esophagus and mild histologic alterations.

OBJECTIVE: To determine the usefulness of p53 immunostaining in identifying the subgroup of patients with Barrett esophagus who may be at increased risk of developing adenocarcinoma of the esophagus. MATERIALS AND METHODS: Tissue samples of 41 patients with Barrett esophagus and available sequential histologic data were processed for p53 immunostaining. Results from each patient were compared over time, and the results of a subset of patients were compared with each other. RESULTS: We observed a significant correlation between the percentage of samples with p53 expression and the severity of dysplasia. Moreover, in a subset of patients with mild dysplasia (cases classified as showing indefinite dysplasia), we observed a statistically significant difference in the percentage of p53-positive samples between the group that progressed to more severe dysplasia and the group that did not progress. CONCLUSION: Our results suggest that this procedure, which is technically simple, economical, and quick, could play a role in the evaluation and follow-up of patients with Barrett esophagus.

Adenocarcinoma↗

Flow cytometric DNA analysis and p53 protein expression show a good correlation with histologic findings in patients with Barrett's esophagus.

BACKGROUND: There is a considerable degree of subjectivity and, therefore, substantial interobserver and intraobserver disagreement in the diagnosis and grading of dysplastic lesions in Barrett's esophagus (BE). The aim of this study was to evaluate the usefulness of DNA flow cytometry and immunohistochemical staining for p53 protein as objective methods to complement the conventional histologic diagnosis of dysplasia in patients with this disease. The most common problems and the possible advantages of using these procedures are analyzed briefly in this article. METHODS: Formalin fixed, paraffin embedded tissue from 55 patients diagnosed with BE were processed for flow cytometric measurements (ploidy and proliferation index) and p53 immunostaining. RESULTS: Both the cytometric data and the positivity of staining for p53 revealed a statistically significant increase throughout the following sequence: no dysplasia --> indefinite for dysplasia --> low grade dysplasia --> high grade dysplasia --> adenocarcinoma. There was also a highly significant correlation between the results of the cytometric study and the positivity of staining for p53. CONCLUSIONS: In the future, the use of this procedure could play an important role in the evaluation of patients with BE. Considering that staining for p53 is technically simple, economical, and quick, and the materials required are available to most pathology laboratories, this method appears to be a firm candidate for application as a biomarker in BE. The authors have shown that it is possible to obtain adequate results for cytometric analysis with small formalin fixed, paraffin embedded biopsies if a strict protocol for the acceptance of tissue samples and/or histograms is observed.

Adenocarcinoma↗

[Familial visceral myopathy].

We report a patient with intestinal pseudo-obstruction in which both the histopathological findings and the clinical history strongly suggest a visceral myopathy of familial type. Reviewing the clinicopathological descriptions of the different families appearing in the literature, is evident that both the presentation (severity, distribution of lesions, etc) and the inheritance pattern seem not to be clearly delimitated, and it has been recently suggested that it may be related to the mitochondrial myopathies. The useless of conventional biopsy procedures (due to the almost exclusive affectation of the external muscle layer of the intestinal wall); the frequently patchy distribution of the lesions (which might be overlooked in a routine histological handling of a resection specimen) and the extensive range of symptoms of the disease, support the paramount importance of a high index of suspicion (obviously, the clinical history plays a fundamental role). In this setting, it is also interesting to emphasize the utility of manometric studies for the correct diagnosis and management of these patients; as well their possible application to identify asymptomatic heterozygotes.

Adolescent↗

Red-green colour blindness in the Tormes-Alberche Valley (Avila-Central Spain).

A population from a Central Spanish region (Tormes-Alberche Valley) has been investigated for the presence of red-green colour vision defects. A sample of 998 subjects (469 male and 529 female) was analyzed. To identify colour vision defects, Ishihara test plates were used. The red-green colour blindness percentage obtained was 4.69 +/- 0.976% for males (2.13% protan and 2.56% deutan types) and none of the females tested were found to be colour blind. These results are within the variation range of Mediterranean populations and lower than the usual frequencies among non-Mediterranean European samples.

Color Vision Defects↗

Thyroid hormone receptor-beta mutants associated with generalized resistance to thyroid hormone show defects in their ligand-sensitive repression function.

Thyroid hormone (T3) responses are mediated by two receptors, TR alpha and TR beta, that have been shown to require heterodimer formation with the retinoid-X receptors for effective interaction with most T3-responsive elements (TRE). In addition, it has been shown recently that one type of TRE, an inverted palindrome (IP) with a 4-, 5-, or 6-base pair spacer, can also bind TR homodimers with high affinity. This binding, however, is sensitive to T3, which suggests that TR homodimers could have important biological roles as T3-sensitive repressors. Here we have analyzed eight natural TR beta mutants associated with the syndrome of generalized resistance to thyroid hormone (GRTH). These receptor mutants are characterized by a variably decreased affinity for T3. We show here that their homodimer binding characteristics are altered. For example, kindred GH binds as a homodimer more weakly to DNA than wild-type (WT), whereas mutant PV forms clearly stronger homodimer complexes than WT even in the presence of TREs that bind WT receptor homodimers poorly. Although other mutants were able to bind IP-6 elements efficiently as homodimers, these homodimers showed a decreased sensitivity to T3 in accordance with their reduced affinities for the ligand. In vivo, six of the eight mutants were able to function as strong repressors on IP sites located 3' of the TATA box. Although T3 released repression by WT TR beta, the hormone did not release repression by some of the mutant receptors, and elevated concentrations of T3 were required to release repression by other mutants. Importantly, most of the GRTH-associated mutants were able to function as potent dominant negative repressors of WT in the homodimer pathway, whereas they showed little dominant negative activity in the heterodimer-dependent transcriptional activation pathway. Only one of the eight GRTH mutants, a deletion of the carboxy-terminus, was found to have a strong dominant negative activity on both T3 response pathways. Our data suggest a dominant negative mechanism of action for GRTH mutants that is consistent with their homodimer binding characteristics to IP-TREs and correlates well with T3 resistance in patients.

Animals↗

TOR: a new orphan receptor expressed in the thymus that can modulate retinoid and thyroid hormone signals.

Vitamin A and other fat-soluble hormones and vitamins have important roles as modulators of essential biological processes such as homeostasis, development, differentiation, and oncogenesis and also as regulators of the immune system. The active form of vitamin A, retinoic acid, as well as vitamin D3 and thyroid hormones exert their actions by binding to specific nuclear receptors that represent one subfamily of the steroid/thyroid hormone receptor superfamily. To identify new members of the retinoid/thyroid hormone receptor subfamily that could play a role in the immune system, a screening of a T cell cDNA library was performed using a retinoid X receptor probe. A clone was isolated encoding a novel nuclear receptor expressed mainly in the thymus and T cell lines. This new receptor, TOR (thymus orphan receptor), is most closely related in both its DNA-binding domain and ligand-binding domain, 90% and 53%, respectively, to ROR alpha/RZR alpha and clusters with these two receptors and RZR beta in a phylogenetic tree, when both the DNA-binding domain and the ligand-binding domain sequences of nuclear receptors are compared. Thus, TOR is part of a subgroup of receptors, one of which has recently been reported to be activated by melatonin. TOR binds specifically to a direct repeat of the half-site sequence 5'-AGGTCA-3' with a four- or five-nucleotide spacer, DNA sequences that also serve as binding sites for thyroid hormone (TR), and retinoic acid receptors (RAR). In transient transfection experiments TOR does not activate a reporter gene carrying these sequences in the absence or the presence of any known nuclear receptor ligands. TOR, however, is able to repress TR and RAR activity on DR-4-TREs or DR-5-RAREs, respectively. Therefore, our data suggest that TOR, similar to COUP-TF, can negatively regulate retinoic acid and thyroid hormone signals. However, the response elements recognized by TOR and COUP-TF differ as do the expression patterns of these receptors. Thus, one important role of TOR could be to modulate retinoid and thyroid hormone signals in the thymus.

3T3 Cells↗

Thyroid hormone receptor homodimers can function as ligand-sensitive repressors.

Unlike the steroid hormone receptors that bind their response elements as homodimers, thyroid hormone receptor (TRs) as well as retinoic acid receptors and several other receptors have been shown to require heterodimerization with retinoid X receptors (RXR) for efficient binding to most response elements. In this article we have compared in detail TR DNA binding and its gene-regulatory characteristics in the presence and absence of RXR. We observe that in the absence of RXR, TRs are able to bind with high affinity as homodimers to a subset of thyroid hormone response elements consisting of two AGGTCA motifs arranged as inverted palindromes. This binding is inhibited by T3, which prevents TR homodimers from functioning as ligand-dependent transcriptional activators. We demonstrate that TR homodimers can act as potent ligand-responsive repressors, in particular when binding to sites 3' of the TATA box. Thus, TRs appear to have important regulatory functions in the absence of RXRs. This is strongly supported by our observations that some naturally occurring TR beta mutants that have been associated with generalized thyroid hormone resistance as well as the v-erbA oncogene are defective in this activity. Thus ligand-sensitive repression by TRs is an important regulatory mechanism.

Animals↗

Therapeutic effect of recombinant vaccinia virus expressing the 60-kd heat-shock protein on adjuvant arthritis.

OBJECTIVE: To analyze the effects of recombinant viruses for 2 heat-shock proteins in the treatment of adjuvant arthritis. METHODS: Virus vaccinia recombinant for mycobacterial heat-shock protein 65 (hsp65-VV) and human hsp60 (hsp60-VV) were administered to rats during different stages of adjuvant arthritis. Arthritis score and immunity to the recombinant virus were analyzed. RESULTS: When delivered at the pre-arthritis stage, both constructs ameliorated arthritis; greater protection was observed with hsp60-VV. A specific T cell response to the recombinant proteins was detected. Furthermore, hsp60-VV displayed a clear therapeutic effect on established arthritis. CONCLUSION: Our results suggest novel avenues of therapeutic intervention in autoimmune arthritis associated with immunity to hsp60.

Animals↗

Identification of viral membrane proteins required for cell fusion and viral dissemination that are modified during vaccinia virus persistence.

Wild-type vaccinia virus WR strain forms non-fusogenic (F-) large plaques and is hemagglutinin positive (HA+) under normal conditions of virus infection. We have analyzed a collection of spontaneous, highly attenuated mutants of vaccinia virus isolated from persistently infected Friend erythroleukemia cells (E. Paez, S. Dallo, and M. Esteban, J. Virol. 61, 2642-2647, 1987) for the ability to express HA during virus infection. After 14 cell passages, all the mutants isolated were hemadsorption negative (HAD-) and did not synthesize a HA that could be recognized by anti-HA monoclonal antibodies. All these HA- mutants induced extensive cell-cell fusion (F+), with the exception of two mutants (65-16 and 101-14) isolated from late cell passages. Nucleotide sequence analysis of the HA gene in these two mutants confirmed the HA- phenotype. A frameshift mutation very close to the initiation codon resulted in premature translational termination. The truncated gene now only encodes the first 25 amino acids. Analysis of progeny from "wild-type," like early serial passage virus (5-3) X mutant back crosses, shows that for one late passage non-fusogenic small-plaque mutant (101-14) among large plaque progeny there is good correspondence between the ability to fuse and the absence of a viral HA and that each large plaque mutant contains a normal 14 kDa membrane protein. However, with a second serial passage mutant 65-16, which, like 101-14, is a nonfusogenic small-plaque variant, there is again an excellent correlation between the inability to synthesize HA and the ability to fuse, but there is no correlation of plaque size with a normal 14 kDa viral membrane protein, as most large plaque mutants encode a larger, i.e., 17 kDa protein. Rescue experiments of 65-16 with bona fide cloned 14 kDa protein gene confirm that the ability to regulate plaque size and cell fusion in this mutant is due to a protein other than the 14 kDa protein. Marker rescue experiments indicated that the map position of the additional mutation coincided with a small deletion occurring in the HindIII F fragment. This deletion affected the 5'-end and promoter sequences of the 37 kDa envelope protein gene and produced a lack of expression of this protein, shown by others to be involved in the formation of extracellular enveloped virus in infected cells. These results shown that viruses with mutations of viral membrane proteins required for cell fusion and viral dissemination are selected during vaccinia virus persistence in cell culture.

Amino Acid Sequence↗

Liver lipoxygenase arachidonic acid metabolites in streptozotocin-induced diabetes in rats.

We have studied the liver 15-hydroxyeicosatetraenoic acid (15-HETE) and leukotriene B4 (LTB4) levels in streptozotocin- (ST)-induced diabetes in rats using liquid chromatography and radioimmunological techniques. Diabetic rats showed significant alterations of liver lipoxygenase metabolites when compared to controls. These 15-HETE and LTB4 increases were concomitant with raised levels of plasma and tissue thromboxane B2 (TXB2) and also urinary 2,3-dinor-TXB2 in plasma and urine, respectively. These changes confirm an activation of 5- and 15-lipoxygenase in the liver 3 days after i.p. ST administration.

Animals↗

A novel orphan receptor specific for a subset of thyroid hormone-responsive elements and its interaction with the retinoid/thyroid hormone receptor subfamily.

The steroid/hormone nuclear receptor superfamily comprises several subfamilies of receptors that interact with overlapping DNA sequences and/or related ligands. The thyroid/retinoid hormone receptor subfamily has recently attracted much interest because of the complex network of its receptor interactions. The retinoid X receptors (RXRs), for instance, play a very central role in this subfamily, forming heterodimers with several receptors. Here we describe a novel member of this subfamily that interacts with RXR. Using a v-erbA probe, we obtained a cDNA which encodes a novel 445-amino-acid protein, RLD-1, that contains the characteristic domains of nuclear receptors. Northern (RNA) blot analysis showed that in mature rats, the receptor is highly expressed in spleen, pituitary, lung, liver, and fat. In addition, weaker expression is observed in several other tissues. Amino acid sequence alignment and DNA-binding data revealed that the DNA-binding domain of the new receptor is related to that of the thyroid/retinoid subgroup of nuclear receptors. RLD-1 preferentially binds as a heterodimer with RXR to a direct repeat of the half-site sequence 5'-G/AGGTCA-3', separated by four nucleotides (DR-4). Surprisingly, this binding is dependent to a high degree on the nature of the spacing nucleotides. None of the known nuclear receptor ligands activated RLD-1. In contrast, a DR-4-dependent constitutive transcriptional activation of a chloramphenicol acetyltransferase reporter gene by the RLD-1/RXR alpha heterodimer was observed. Our data suggest a highly specific role for this novel receptor within the network of gene regulation by the thyroid/retinoid receptor subfamily.

Amino Acid Sequence↗