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M C Rio

Publications and source records attributed to M C Rio.

90 records · Page 5Linked to original sources

Prediction of relapse and survival in breast cancer patients by pS2 protein status.

Application of systemic adjuvant therapy for primary breast cancer patients requires a more accurate identification of patients at high risk for recurrence. We have quantitatively assessed the cytosolic levels of estrogen-regulated pS2 protein in tumors of 205 breast cancer patients (median follow-up, 47 mo). There were no significant associations between the level of pS2 protein and tumor size, lymph node status, and differentiation grade. Using length of relapse-free survival (RFS) and overall survival (OS) as end points, 11 ng of pS2 protein/mg of cytosol protein were found as the best cutoff level to discriminate between positive (pS2+) and negative (pS2-). Patients with pS2- tumors showed significantly shorter RFS and OS (P less than 0.0001) than patients with pS2+ tumors. Also after adjustment for tumor size, lymph node status, and estrogen receptor (ER) status, pS2 negativity was associated with earlier recurrence and death. Tumors positive for pS2 (55 of 205, 27%) were almost exclusively confined to the subclass of ER+ tumors (53 of 55, 96%). The death rate for patients with pS2+ tumors was one-tenth of the death rate for patients with pS2-/ER- tumors. In the patients with ER+ tumors, the prognostic power of the pS2 status was especially present in patients whose tumors were also positive for the progesterone receptor (5-yr RFS and OS, 85% and 97% for ER+/PgR+/pS2+ tumors compared with 50% and 54% for the patients with ER+/PgR+/pS2- tumors). In patients with axillary lymph node involvement (N+), pS2 status could discriminate strongly between a good and bad prognosis group (5-yr RFS and OS, 65% and 88% for N+/pS2+ compared with 32% and 34% for N+/pS2-). A similar phenomenon was observed in patients without axillary lymph node involvement (5-yr RFS and OS, 89% and 95% for N0/pS2+ compared with 58% and 82% for N0/pS2-). We conclude that the pS2 status of human primary breast tumors is an important variable for the identification of patients at high risk for recurrence and death. Knowledge of the cytosolic pS2 status appeared of particular importance to identify patients at high risk in the ER+/PgR+ subclass of tumors, and in both the N0 and N+ subclasses of patients.

Adult↗

hSP, the domain-duplicated homolog of pS2 protein, is co-expressed with pS2 in stomach but not in breast carcinoma.

Approximately 50% of human breast tumors secrete a small cysteine-rich protein, pS2, of unknown function. pS2 protein was recently found to be homologous to a porcine protein with hormonogastric activity, pancreatic spasmolytic polypeptide (PSP), in which the 5-cysteine domain present in pS2 is tandemly duplicated. We have characterized cDNA species encoding PSP and its human and mouse counterparts, hSP and mSP. We show that hSP and pS2 are separately encoded in the genome, and that the two proteins are co-expressed in normal stomach epithelium. However, expression of hSP was not detected in breast tumors. Computer analysis revealed that the pattern of conserved cysteine residues in hSP and pS2, the P domain, is present at the N termini of two other mammalian proteins, intestinal sucrase-isomaltase and lysosomal alpha-glucosidase.

Amino Acid Sequence↗

Epidermal growth factor (EGF/URO) induces expression of regulatory peptides in damaged human gastrointestinal tissues.

The pS2 gene encodes for a small cysteine-rich protein, and was originally found by differential screening of a cDNA library from the human breast carcinoma cell line, MCF-7. The presence of pS2 is closely correlated with oestrogen dependence in breast carcinomas. While the function of pS2 is unknown, pS2 protein has been shown to be homologous with the gastrointestinal peptide hormone pancreatic spasmolytic polypeptide (PSP) and its human counterpart hSP, in which a 5-cysteine domain is tandemly repeated. The 5' flanking region of the pS2 gene contains an enhancer region responsive to oestrogens and to epidermal growth factor (EGF/URO). We now report that pS2 and hSP expression occurs in a wide range of endodermally-derived tissues, including the duodenum, the pancreas, and in a recently defined cell lineage associated with chronic gastrointestinal ulceration. In each case, this expression was associated with secretion of immunoreactive EGF/URO. We further show that the co-expression of pS2 and hSP in gastric surface epithelial cells is also associated with the secretion of EGF/URO in the subjacent mucous neck cells. Our results indicate that local EGF/URO secretion induces pS2 and hSP in adjacent cells, and that these molecules are then available to participate in pathophysiological responses. The finding of similar patterns of EGF/URO, hSP and pS2 expression in association with chronic damage suggests that this is a fundamental response in the healing of these tissues.

Cell Line↗

Expression of the pS2 gene in normal, benign and neoplastic human stomach.

The expression of the estrogen-regulated breast-cancer-associated pS2 gene was examined in 75 stomach resections taken from 45 patients. The 600-base pS2 mRNA was found in all of the 47 non-neoplastic samples at varying levels: in the histologically normal group we observed a Poisson-type distribution, whereas 79% of the tissues exhibiting dysplastic features expressed high levels of transcript. Tumour samples expressed relatively lower pS2 mRNA, with only 18% having high levels and 43% with no detectable expression. These differences were not correlated to tumour grading, stage or site. No amplification or rearrangement of the pS2 gene was found. Immunohistochemical analysis of formalin-fixed paraffin sections, using a polyclonal antibody against pS2 protein, showed specific staining of both cytoplasm and membrane of epithelial cells in the neck region of antral and body glands as well as in luminal secretions. Immunoreactivity was observed in the sub-nuclear region of foveolar cells, with specialized gland and goblet cells in atrophic gastritis being negative. Heterogeneous but strong focal cytoplasmic staining was seen in tumour cells as well as in dysplastic epithelium. Two gastric cell lines, KATO III and MKN-45, derived from poorly differentiated adenocarcinomas also expressed pS2, whereas 3 other lines from well differentiated parental tumours did not. Genomic analysis revealed a BamHI polymorphism in Kato III cells and in the non-expressing MKN-28 cells. Immunostaining to pS2 protein was also demonstrated in the cytoplasm of KATO III cells, but neither these nor any of 30 tissues examined showed any positivity with a monoclonal antibody (MAb) to estrogen receptor. Our results suggest that pS2 is normally expressed in human stomach, possibly in association with secretory activity, and becomes down-regulated during malignancy.

Blotting, Northern↗

Breast cancer protein PS2 synthesis in mammary gland of transgenic mice and secretion into milk.

PS2, a small estrogen-inducible secretory polypeptide with structural analogies to a growth factor, is produced by approximately 50% of human breast tumors. The function of PS2 is, however, unknown. To determine whether PS2 may play an autocrine role in the development of mammary tumors we constructed transgenic mice bearing fusion constructs designed to direct the expression of human PS2 in the lactating mammary gland under the control of the whey acidic protein (WAP) promoter. Mouse lines bearing the genomic PS2 gene under the control of the WAP promoter region (WAP-PS2-2) failed to express the transgene. However, mice harboring the fusion construct WAP-PS2-1, in which the PS2 coding sequence is inserted into the 5' untranslated region of the complete WAP gene, were observed to express the transgene. Expression was restricted to the secretory epithelium of the mammary gland during lactation, and PS2 protein was secreted into the milk. Nevertheless, no mammary gland dysplasia was observed, and PS2 expression had no discernable effect upon the physiology and/or development of the suckling young or the transgenic mother.

Animals↗

Breast cancer-associated pS2 protein: synthesis and secretion by normal stomach mucosa.

The human pS2 gene is specifically expressed under estrogen transcriptional control in a subclass of estrogen receptor-containing human breast cancer cells. The pS2 gene encodes an 84-amino acid protein that is secreted after signal peptide cleavage. The distribution of pS2 protein in normal human tissues was studied with antibodies to pS2; pS2 was specifically expressed and secreted by mucosa cells of the normal stomach antrum and body of both female and male individuals. Moreover, no estrogen receptor could be detected in these cells, indicating that pS2 gene expression is estrogen-independent in the stomach. The function of the pS2 protein in the gastrointestinal tract is unknown. However, the pS2 protein is similar in sequence to a porcine pancreatic protein that has been shown to inhibit gastrointestinal motility and gastric secretion.

Amino Acid Sequence↗

Structure and function of the pS2 gene and estrogen receptor in human breast cancer cells.

The role of estrogen in the growth of human breast cancers has been investigated at two levels. First, we have studied the pS2 gene, whose transcription is stimulated by estrogen in the human breast cancer cell line, MCF-7. The pS2 gene product is a small, secreted polypeptide currently of unknown function, but with structural features similar to some growth factors. The expression of the pS2 gene has so far been detected only in MCF-7 cells and some breast cancer biopsies. Preliminary studies indicate that pS2 is a potential marker for hormone-dependent breast cancer. Ongoing studies will continue to focus on the implicated role of pS2 in the estrogen-mediated growth of breast cancers and its possible use as a marker for estrogen-dependent tumors. Second, we have analyzed the structure and function of the human ER. The receptor stimulates pS2 gene transcription by interacting with an ERE in the 5'-flanking region of that gene. A mutational analysis of the receptor protein has localized a DNA-binding domain, which determines target gene specificity, and a hormone-binding domain. These domains appear to be the only two regions of the receptor which are absolutely required for the transcription-activating function of the ER in transfection assays with reporter plasmids. The N-terminal region of the protein (regions A and B), which is necessary for increasing the efficiency of gene expression using the pS2 ERE, but not a vitellogenin ERE, may also play a role in transcription activation. Further progress in the characterization of the ER functional domains will require studies on target genes in a more physiological chromatin environment, as well as detailed physical analyses of receptor structure.

Amino Acid Sequence↗

[Specific expression of human pS2 gene in breast cancer].

The hormone-dependence of some human breast cancers is well recognized. However, the molecular mechanisms responsible for the growth stimulation of these cancers by oestrogens are still poorly understood. With the hope of elucidating these mechanisms, we have recently cloned and studied the structure-function relationship of the human oestrogen and progestin receptors, and also undertaken a study aimed at characterizing genes whose expression is controlled by oestrogens in hormone-dependent breast cancers. We review here our findings concerning one of these genes and its expression products, the pS2 gene. We discuss also whether a systematic determination of pS2 gene expression in breast cancer biopsies could be useful to establish a new biochemical classification of these cancers which may be useful to improve the diagnosis of hormone-dependent cancers.

Amino Acid Sequence↗

[Primary structure of human protein pS2].

We have previously reported that pS2 mRNA expressed in cultured epithelial cells derived from a hormone-dependent breast carcinoma (MCF-7 cells) is also expressed in mucosa cells of normal human stomach. This mRNA encodes a putative 84 amino-acid-long protein, which is secreted by both cell types after elimination of a signal peptide. We report here the purification of the pS2 protein, its trypsin digestion and amino-acid sequencing. The MCF-7 cell-secreted protein is 60 amino-acid-long and its sequence is in complete agreement with that deduced from the mRNA sequence. The presence of an N-terminal glutamic acid indicates that the signal peptidase releases a 24 amino-acid-long signal peptide. Analysis of tryptic peptides derived from the secreted gastric pS2 protein indicates that the signal peptide and the sequence of the first 48 amino-acids are identical to those of secreted MCF-7 pS2 protein, although the N-terminal amino-acid of the gastric protein may be cyclized as a pyroglumatic acid.

Alkylation↗

Specific expression of the pS2 gene in subclasses of breast cancers in comparison with expression of the estrogen and progesterone receptors and the oncogene ERBB2.

The expression of the pS2 gene, which is induced by estrogen in the breast cancer cell line MCF-7, has been investigated in breast cancers by using pS2 mRNA determination in tumor specimens and immunocytochemistry to identify pS2 protein in paraffin-embedded sections. Using these assays we show that determination of pS2 gene expression allows the definition of subclasses of estrogen-receptor-containing breast cancers that may be used to more precisely identify estrogen-dependent tumors. Tumor specimens have also been analyzed for the presence of mRNAs for the estrogen receptor and for the ERBB2 oncogene. No evidence for the presence of truncated forms of estrogen-receptor mRNA has been found, and overexpression of the ERBB2 oncogene did not correlate with the steroid receptor status or pS2 gene expression.

Breast Neoplasms↗

Characterization of the estrogen-induced pS2 protein secreted by the human breast cancer cell line MCF-7.

Our laboratory has reported previously the cloning of a complementary DNA termed pS2, corresponding to a messenger RNA (mRNA) whose synthesis is induced by estrogen in the human breast cancer cells MCF-7. Examination of the possible open reading frames of this complementary DNA has led to the prediction that the pS2 protein could be a secreted polypeptide of either 58 or 63 amino acids in length. Using a rabbit antiserum prepared against a synthetic peptide corresponding to the last 31 amino acids of the putative protein, we show that a protein with the expected migration during sodium dodecyl sulfate gel electrophoresis can indeed be immunoprecipitated from either the culture medium of MCF-7 cells grown in the presence of labeled amino acids or the in vitro translation products of MCF-7 poly(A) RNA enriched in pS2 mRNA. Furthermore, in vivo and in vitro differential amino acid labeling allows us to conclude that the mature pS2 protein is probably secreted as a 58 amino acid long peptide. Finally, we show that pS2 protein synthesis is induced in MCF-7 cells by estradiol and phenol red, but not by the antiestrogen tamoxifen, in keeping with our previous results demonstrating estrogen induction of pS2 mRNA synthesis.

Breast Neoplasms↗

[Comparative study on the concentrations of steroid receptors in adenomatous and cancerous prostatic tissue].

In this preliminary study, we have determined the receptors in normal human prostatic tissue or from patients with benign prostatic hypertrophy and patients with prostatic cancer. A single point assay using a dextran-coated-charcoal treatment of cytosol is utilized. This method permits the elimination of endogenous steroids and is also useful when specimens are too small to provide the larger number of aliquots necessary for multiple steroid receptor analyses. The results are discussed in the light of several problems inherent to this assay. We conclude that adenoma-tissue contains more receptors than neoplasic tissues for the progesterones receptors but that there is no significant difference for the estrogen-receptor and the androgen-receptors. For all the adenoma tissues and some neoplasic tissues the level of the estrogen-receptors is always lower than the one for androgen-receptor which itself is lower than the one for progesterone-receptors. We think that the expression of the results as a ratio of two levels of steroid-receptors gives a better evaluation of the receptors. The ratios Progesterone-receptor Estrogen-receptor and Androgen-receptor/Estrogen-receptor are always greater than 1.5, except for some neoplasic tissues and we think that, as in breast tumors, there are perhaps two kinds of neoplastic tissues, one hormone-dependent, the other not.

Adenoma↗

From a unique cell to metastasis is a long way to go: clues to stromelysin-3 participation.

Stromelysin-3 (ST3) overexpression is associated with poor patient clinical outcome in numerous carcinomas. The ST3 is expressed by peritumoral fibroblast-like cells. Review of the literature shows that ST3 is an active partner of cancer cells along the whole natural cancer history, and is essential for optimal tumor development as it reduces death of cancer cells invading adjacent connective tissues at the primary tumor site. Paradoxically, ST3 lowers metastasis development in vivo in mice. However, this beneficial effect does not counterbalance the deleterious anti-apoptotic function of ST3.

Animals↗

A novel metalloproteinase gene specifically expressed in stromal cells of breast carcinomas.

A gene has been identified that is expressed specifically in stromal cells surrounding invasive breast carcinomas. On the basis of its sequence, the product of this gene, named stromelysin-3, is a new member of the family of metalloproteinase enzymes which degrade the extracellular matrix. The suggestion is that stromelysin-3 is one of the stroma-derived factors that have long been postulated to play an important part in progression of epithelial malignancies.

Amino Acid Sequence↗

Alcohol-related problems and fitness to drive.

This paper analyses the alcohol consumption patterns in Spanish drivers, the incidence of alcohol-related problems and attempts to ascertain whether, in the end, drivers with alcohol-related problems are considered fit or unfit to drive. In accordance with Spanish and European Union legislation, driving licences cannot be issued or renewed to people suffering from alcohol-related problems. A medical, psychological and eyesight evaluation was performed to test the driving fitness of 8043 drivers attending 25 Medical Driving Test Centres on a national scale. Among other things, information was collected on the patterns of alcohol consumption, the AUDIT and CAGE tests, the incidence of alcohol-related problems (DSM-IV criteria for abuse, dependence and alcohol-induced disorder), as well as an evaluation of their fitness to drive. In all, 60.3% of drivers drink alcohol on a regular basis; 7.3% of drivers scored > or = 8 points in the AUDIT test, and 2% met criteria for DSM-IV alcohol abuse, dependence or induced disorder. Drivers with alcohol-related problems have been involved in traffic accidents (23.2%) and have infringed driving regulations (18.7%) more frequently (P < 0.0001) than those without alcohol-related problems. Of those with alcohol-related problems, 72.2% were considered fit to drive. The study reveals that alcohol consumption is common among drivers, that a significant number of drivers have alcohol-related problems, and that three in four of the latter were considered fit to drive.

Adult↗

The estrogen responsive element of the pS2 gene is recognized by a methylation sensitive DNA binding protein.

The human pS2 gene is specifically expressed is a subclass of estrogen receptor containing human breast cancer cells. In the MCF7 cell line, its induction by estradiol is a primary transcriptional event. The exact location of its estrogen responsive element has been determined using a chimeric recombinant transfected into HeLa cells and a transient expression assay. In this study we found, using electrophoretic mobility shift experiments, that in HeLa cells the estrogen responsive element (ERE) of the pS2 gene is recognized by a methylation sensitive DNA binding protein (MSDBP) different from the estrogen receptor. Competition experiments have shown that the binding of this protein requires at least one CpG in the center of the palindromic sequence and that imperfect palindromic sequences are also recognized. Although the presence of CpG is necessary, CpG-rich oligonucleotides, containing consensus sequences for Sp1 or AP2, do not interfere with its binding to the pS2 oligonucleotide, indicating that the ERE sequence itself participates in the specificity of its binding. This protein binds the pS2 sequence with a relatively high affinity (apparent Kd = 10(-10) M) and its binding is strongly reduced by the methylation of the cytosines at CpG sites. UV cross-linking experiments and peptide mapping indicate that this protein has an apparent molecular weight of 46 kDa and is present in several cell lines, including non-human cell lines. Taken together, these data suggest that this protein might have a potential role in regulating gene activity or in chromatin structure of some genes possessing an ERE.

Animals↗

The pS2 gene, mRNA, and protein: a potential marker for human breast cancer.

Approximately 50% of human breast tumors secrete a small cysteine-rich protein called pS2. In the human breast cancer cell line MCF-7, expression of the pS2 protein is strongly induced by estrogen, and cloning and sequence analysis of the pS2 gene has revealed an "estrogen responsive element" in the gene's 5'-flanking region. The results of immunohistochemical assays and radioimmunoassays on breast cancer biopsies indicate that the pS2 protein is a marker for hormone-dependent breast tumors and that its expression is associated with longer overall, and disease-free, survival. The pS2 protein is also expressed in normal stomach mucosa and in regenerative tissues in ulcerative diseases of the gastrointestinal tract. Its physiological function is unknown.

Amino Acid Sequence↗

Stromelysin-3 gene expression in human cancer: an overview.

Stromelysin-3 (ST3) belongs to the family of matrix metalloproteinases, a group of proteolytic enzymes which are believed to play a role in tumor invasion and metastasis. In the present study, we report that the ST3 gene, which was initially identified in invasive breast carcinoma, is expressed in most other invasive human carcinomas, but rarely in sarcomas and other nonepithelial tumors. In carcinomas, both ST3 RNA and protein were specifically detected in fibroblastic cells immediately surrounding the cancer cells. In agreement with this observation, the carcinomas which are known to progress without inducing a prominent tumor stroma are also those which usually do not express the ST3 gene. ST3 gene expression was also observed in noninvasive carcinomas of the breast, uterus cervix and bladder, where the probability of detecting ST3 RNA and protein positively correlated with the known risk of these lesions evolving towards invasion. Taken together, these observations further support the hypothesis that ST3 may contribute to tissue-remodeling processes associated with carcinoma progression, and may represent a new prognostic factor to define populations of aggressive tumors.

Carcinoma↗