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M C Rio

Publications and source records attributed to M C Rio.

At least 73 records · Page 4Linked to original sources

Stromelysin-3 in stromal tissue as a control factor in breast cancer behavior.

BACKGROUND: It has long been proposed that secreted proteinases, including the matrix metalloproteinases, play an important part in tumor progression in mediating extracellular matrix remodeling. More recently, it has been suggested that extracellular proteinases also regulate growth factors and cytokines that may contribute to tumor progression. METHODS: RNA in situ hybridization and immunohistochemistry were used to study the expression, in breast and other types of human carcinomas, of the stromelysin-3 (ST3) gene, which encodes a putative new member of the matrix metalloproteinase family. RESULTS: The ST3 gene is overexpressed in most types of human carcinomas, including breast carcinoma where ST3 RNA was detected in 95% (99 of 104) of invasive primary tumors. Both ST3 protein and RNA are detected in fibroblastic cells immediately surrounding the cancer cells, but not in the malignant cells or in stromal cells at a distance from them. The ST3 gene also is expressed in some in situ breast carcinomas, where ST3 expression correlates with the known risk of these tumors to become invasive. CONCLUSIONS: ST3 is the paradigm of tumor proteinases that are not expressed in the malignant cells of human carcinomas but in fibroblastic cells of tumor stroma. ST3 represents a potential new prognostic parameter to identify subpopulations of aggressive tumors, particularly to evaluate the likelihood of in situ breast carcinoma progression to invasive cancer. Furthermore, the specific expression of the ST3 gene in fibroblastic cells immediately surrounding cancer cells suggests that ST3 may be involved in tumor progression and that it represents a potential target for cancer treatment.

Breast Neoplasms↗

Expression pattern of breast-cancer-associated protein pS2/BCEI in colorectal tumors.

Recently, several carcinomas of the gastrointestinal tract were tested for pS2/BCEI activity, a gene isolated from breast-cancer cells and coding for a small secreted peptide. In the latter tumors, its activity is under estrogen control; surprisingly, it was also found expressed in carcinomas of the stomach, biliary tract and pancreas. We have now investigated the expression of this gene in 64 colorectal carcinomas, 31 adenomas and 13 polyps in comparison with their matrix tissues by applying molecular (RNA analysis) and immunohistochemical (pS2 antibody) techniques. Positive pS2 immunostaining (ranging from focal to strong immunoreaction) was noted in 89% of human colon cancers, while 11% remained negative. Furthermore, all 40 transitional mucosae were strongly positive, whereas normal mucosa was negative. Of hyperplastic polyps, 68.2% displayed a significant immunoreaction, and 80.6% of adenomas were focally positive. Finally, 6 out of 16 cases showed significant pS2 transcription in Northern blot analysis. These data clearly indicate that the breast-cancer-associated pS2 protein also plays an as yet undetermined role in the tumorigenesis of human colorectal carcinomas.

Breast Neoplasms↗

The ulceration-associated cell lineage (UACL) reiterates the Brunner's gland differentiation programme but acquires the proliferative organization of the gastric gland.

The ulceration-associated cell lineage (UACL) develops in the human gastrointestinal mucosa after ulceration; it grows out from the bases of adjacent crypts and ramifies in the lamina propria to form a new gland, finally giving rise to a duct by which the glandular secretion and indeed cells are carried to the surface. Using immunocytochemistry and in situ hybridization with 35S-labelled riboprobes, we have defined the pattern of trefoil peptide gene expression (pS2; human spasmolytic polypeptide, hSP), epidermal growth factor/urogastrone (EGF/URO), and the distribution of cell proliferation during the development of the UACL, as indicated by immunostaining for proliferating cell nuclear antigen (PCNA). Our studies reveal that the morphogenesis of the UACL shows a marked morphological resemblance to developing Brunner's glands; the pattern of trefoil peptide gene expression during UACL development is also very similar. However, trefoil peptide gene expression in the mature UACL complex is unique amongst gastrointestinal cells. The mature UACL shows a distinctive proliferative organization: while the early buds and glands are non-proliferative, apparently being fed by cells from the parent crypts, a definitive proliferative zone develops within the duct. This, of course, corresponds to the location of the gastric gland proliferative zone. We propose that while the UACL shows novel features, it shares its differentiation programme with Brunner's glands, but its pattern of cell renewal eventually is that of the gastric gland.

Brunner Glands↗

pS2 and response to adjuvant hormone therapy in primary breast cancer.

We reviewed 319 primary breast tumours for cytosolic pS2 content, with a median follow-up of 6 years. pS2 status correlated positively with oestradiol and progesterone receptors and negatively with Scarff, Bloom and Richardson grade. pS2 positivity was associated with longer overall survival, particularly in patients who received hormone therapy, in whom pS2 status was also predictive of the response to therapy.

Adult↗

Expression of an estrogen-induced breast cancer-associated protein (pS2) in benign and malignant human ovarian cysts.

BACKGROUND: In human mammary tumors, pS2 expression is directly controlled by estrogens and restricted to a subclass of breast carcinomas. In addition, recent studies have suggested that this gene is expressed in both the invasive and preinvasive forms of breast cancer. EXPERIMENTAL DESIGN: pS2 gene expression was investigated in benign and malignant ovary tumors and whenever possible, pS2 expression was also studied in cells collected from cystadenoma fluids. In several cases, particularly with cells from cystadenoma fluids, the limited amount of material available prevented the used of the traditional RNA detection methods such slot/dot blots or Northern blots. Therefore, a rapid and sensitive polymerase chain reaction assay of pS2 expression has been developed and used in this study. RESULTS: In human ovarian tumors, data obtained show that pS2 transcripts and proteins are present in all mucinous cystadenomas studied and at a lower frequency in endometrioid cystadenomas. Quantitation of the CA 19-9 mucin concentration in ovarian fluids indicate that pS2 expression is always associated with high mucin concentrations, but mucin-positive and pS2-negative samples are also frequently observed. CONCLUSIONS: These data suggest that pS2 expression is restricted to subclasses of human ovarian cystadenomas.

Adult↗

Identification of a new interferon-alpha-inducible gene (p27) on human chromosome 14q32 and its expression in breast carcinoma.

A new complementary DNA, p27, has been cloned and sequenced from estradiol-treated MCF7 human breast carcinoma cells. It encodes a putative highly hydrophobic protein of 122 amino acids which has a 33% overall sequence similarity to the product of the 6-16 gene (R. L. Friedman, S. P. Manly, M. McMahon, I. M. Kerr, and G. R. Stark, Cell, 38: 745-755, 1984), which is transcriptionally induced by interferons of the alpha/beta type. We demonstrate here that the p27 gene, which is located in band q32 of human chromosome 14, is also induced by interferon-alpha in human cell lines of different origin and that expression is independent of the presence of estradiol receptor in the cells. High levels of p27 RNA were found in vivo in approximately 50% of primary human breast carcinomas (21 were tested by Northern blotting). In situ hybridization to some of the p27-overexpressing tumors showed that the p27 RNA is localized in cancer cells and sometimes also in fibroblastic cells of tumor stroma. p27 RNA levels in the tumors did not correlate with the presence of estrogen receptor or with the expression of the estrogen-induced pS2 gene. Further studies are now necessary to elucidate the cause of p27 gene overexpression in breast carcinoma and in particular to determine whether it corresponds to chromosomal rearrangements in the 14q32 region and/or to induction by interferons of the alpha/beta type.

Amino Acid Sequence↗

Increased stromelysin 3 gene expression is associated with increased local invasiveness in head and neck squamous cell carcinomas.

Matrix metalloproteinases are believed to play an important role in tumor invasion and metastasis. To examine the expression of the stromelysin 3 (ST3) gene, a new member of the matrix metalloproteinase gene family, 111 head and neck squamous cell carcinomas and 21 metastatic lymph nodes were analyzed by Northern blot. ST3 gene expression was observed in 106 carcinomas and 19 metastatic nodes, but in only 2 of 60 samples of corresponding normal tissue tested in parallel. ST3 RNA, by in situ hybridization, and ST3 protein, by immunohistochemical analysis, were specifically detected in fibroblastic cells immediately surrounding invasive cancer cells. This fibroblastic expression of the ST3 gene is characteristic among the matrix metalloproteinase genes known to be overexpressed in head and neck carcinomas, since stromelysin 2 transcripts were specifically detected in neoplastic cells, and type I collagenase transcripts in both neoplastic cells and stromal fibroblasts. Furthermore, there was a highly significant positive correlation (P < 0.0001) between ST3 RNA levels and local invasiveness by the cancer cells, suggesting that enhanced expression of the ST3 gene may contribute to the neoplastic phenotype in head and neck carcinomas.

Carcinoma, Squamous Cell↗

Immunohistochemical localisation of pS2 protein in ductal carcinoma in situ and benign lesions of the breast.

The expression of pS2 was examined histochemically in paraffin sections taken from biopsy material from patients diagnosed with ductal carcinoma in situ (DCIS). Often intense immunoreactivity, to an anti-pS2 monoclonal antibody, was observed in comedo, solid, cribriform and micropapillary types of DCIS, with significant positivity found in 63-67% of cases. In 15 samples analysed, we found a good correlation between pS2 expression and presence of progesterone receptor positive cells, but not with estrogen receptor. There was only a limited degree of correspondence between the cells staining with these anti-sera. Some pS2 positive cells were also seen in normal acini in areas adjacent to cancer but much less frequently in sections of normal breast from reduction mammoplasty. Most normal areas were negative, as were cysts. In benign proliferative conditions (seen in sections with and without DCIS) such as adenosis, sclerosing adenosis, mild and florid ductal epithelial hyperplasia, significant pS2 positivity was seen in about 50% of cases. These results suggest that there is a progressive increase in pS2 from normal to benign to cancer cells and that this gene is expressed in both the invasive and pre-invasive forms of breast cancer.

Biopsy↗

The mouse one P-domain (pS2) and two P-domain (mSP) genes exhibit distinct patterns of expression.

We have previously shown that the human pS2 gene, which codes for a secreted peptide of 60 amino acids, is expressed in a number of human carcinomas, including carcinomas of the breast, the pancreas, and the large bowel. Strong pS2 gene expression was also observed in the normal gastric mucosa and in the regenerative tissues surrounding ulcerous lesions of the gastrointestinal tract. A number of pS2 similar peptides, designated as P-domain peptides, have been described, notably the porcine (PSP), murine (mSP), and human (hSP) spasmolytic polypeptides, which correspond to duplicated pS2 proteins. We have now cloned a mouse homolog of the human pS2 cDNA to dispose of an animal model to study the pS2 protein function, which remains unknown at the present time. We show that the mouse putative pS2 protein sequence and the physiological pattern of expression of the mouse pS2 gene are well conserved. The mouse pS2 gene is highly expressed in the stomach mucosa cells, whereas no pS2 gene expression could be detected in the mouse mammary gland, even during postnatal development processes dependent on growth factors or hormones. Using in situ hybridization, we show that although coexpressed in the fundus, the antrum and the antrum-pyloric regions of the stomach, the mouse pS2 and mSP genes exhibit distinct and complementary cellular patterns of expression.

Aging↗

pS2 immunostaining of colorectal carcinoma.

This study was aimed at assessing the significance of pS2 immunostaining in colorectal adenocarcinoma and adjacent tissue. Paraffin sections of 63 surgically resected colorectal adenocarcinomas were stained with a pS2 specific monoclonal antibody using the avidin-biotin complex immunoperoxidase technique. Several tumor sections also included adjacent nonneoplastic mucosa. Six tubular adenomas and five hyperplasic polyps found in the resected bowels were also examined. Focal staining for pS2 was seen in 32 tumors (51%). In all but one case, less than 10% of the tumor cells were stained. pS2 staining was more common in right-sided than in left-sided tumors (p < 0.05), and was more prevalent in Dukes C than combined Dukes A and B tumors (p < 0.05). No significant relationship was found between pS2 positivity and the degree of tumor differentiation, patients' sex, or outcome of the disease as judged by the development of recurrence or metastasis. Strong pS2 positivity was seen in hyperplastic polyps and in nonneoplastic mucosa adjacent to many tumors. Tubular adenomas were either negative or showed focal superficial staining. It is concluded that pS2 immunostaining in colorectal adenocarcinoma does not seem to have prognostic significance, but may reflect developmental differences between the right and left side of the colon. The presence of pS2 staining in adjacent nonneoplastic mucosa and in hyperplastic polyps suggests that the epithelium in these areas is of a regenerative or reactive nature.

Adenocarcinoma↗

The gene encoding the human spasmolytic protein (SML1/hSP) is in 21q 22.3, physically linked to the homologous breast cancer marker gene BCEI/pS2.

The human spasmolytic protein, SML1/hSP, an inhibitor of spasmolytic activity and gastric acid secretion in the pig, has been shown to exhibit homology to the pS2 protein, an estrogen-dependent breast cancer marker. Moreover, SML1/hSP and pS2 are expressed at the same localization in the normal stomach and during healing of the gastrointestinal tract. Here we report the chromosomal localization, obtained by in situ hybridization, of the hSP gene (SML1) to chromosome 21 at 21q22.3. Using pulsed-field gel electrophoresis, we found SML1 to be within 230 kb of the BCEI/pS2 gene.

Biomarkers, Tumor↗

Assignment of the human stromelysin 3 (STMY3) gene to the q11.2 region of chromosome 22.

The human stromelysin 3 (STMY3) gene, a new member of the matrix metalloproteinase (MMP) gene family, may contribute to breast cancer cell invasion, and has been localized by in situ hybridization to the long arm of chromosome 22. As demonstrated using a panel of somatic cell hybrids, the STMY3 gene is in band 22q11.2, in close proximity to the BCR gene involved in chronic myeloid leukemia, but far from the (11;22) translocation breakpoint observed in Ewing sarcoma. This position differs from that reported on chromosomes 11 and 16 for the other MMP genes, suggesting that stromelysin 3 could be a member of a new MMP subfamily.

Breast Neoplasms↗

The breast cancer-associated stromelysin-3 gene is expressed during mouse mammary gland apoptosis.

We have cloned from a mouse placenta cDNA library a mouse homologue of the human stromelysin-3 (ST3) cDNA, which codes for a putative matrix metalloproteinase expressed in breast carcinomas. The ST3 protein is well conserved between humans and mice, and the pattern of ST3 gene expression is similar in both species, and shows expression in the placenta, in the uterus, and during limb bud morphogenesis. We show that the ST3 gene can also be expressed in the normal mouse mammary gland. ST3 gene expression was not detected during mammary growth, neither in virgin nor in pregnant mice, but was specifically observed during postlactating involution of the gland, an apoptotic process associated with intense extracellular matrix remodeling. ST3 transcripts were found in fibroblasts immediately surrounding degenerative ducts, suggesting that ST3 gene expression may be associated with the basement membrane dissolution, which occurs during mammary gland involution. Since the ST3 gene is also specifically expressed in fibroblastic cells surrounding invasive neoplastic cells of breast carcinomas, we suggest that ST3 is implicated in extracellular matrix remodeling processes common to mammary apoptosis and breast cancer progression.

Amino Acid Sequence↗

Association of the human spasmolytic polypeptide and an estrogen-induced breast cancer protein (pS2) with human pancreatic carcinoma.

The human pS2 gene, isolated from the breast carcinoma cell line MCF-7 and shown to be under estrogen transcriptional control in a subclass of breast cancer cells was reported to be secreted in normal stomach surface epithelial cells, whereas additional gastrointestinal tissues like pancreas and colon do not secrete pS2 at all. In porcine pancreas, a spasmolytic polypeptide (sharing domains of homology with pS2) was observed; a corresponding human gene (hSP) was shown to be active in normal stomach mucosa. hSP and pS2 gene activity in normal and neoplastic pancreas tissues was then compared. Whereas both genes are inactive in normal pancreatic cells, activation of the pS2 sequence in a primary pancreatic carcinoma cell culture and in 23 tumor tissues was noted when investigated by immunostaining. In all cases when pS2 showed a regular 0.6 kb transcript, hSP displayed a transcript of 0.7 kb. Six of these tumors showed a reduced pS2 immunoreactivity and, at the same time, aberrant pS2 mRNA bands and a complete shut-down of the hSP gene were noted. In one case, whereas normal pancreas remained negative, the corresponding tumor and its metastasis displayed regular transcripts of pS2 and hSP. This remarkably high correlation suggests that pS2 and hSP expression in the pancreatic tumors, but not in their corresponding healthy tissue is significantly linked to molecular steps leading to tumorigenesis.

Adenocarcinoma↗

pS2 expression and response to hormonal therapy in patients with advanced breast cancer.

Seventy-two patients with advanced breast carcinoma (42% bone, 25% visceral, 5.5% soft tissue, and 27.5% multiple site metastases) were evaluated to determine the relationship between tumor expression of the estrogen-regulated protein pS2, estrogen receptor (ER) or progesterone receptor (PgR) content, and response to hormonal therapy. Twenty-nine % of tumors were pS2 positive, 64% were ER positive, and 29% were PgR positive. Of the ER-positive patients (n = 43), 15 (35%) had greater than 10% of the invasive carcinoma which immunostained for pS2 (these were considered pS2 positive). Only 3 of 24 ER-negative tumors were pS2 positive. A weak association between pS2 expression and ER content (P = 0.08) but not PgR content was observed. Of pS2-positive patients, 52% had a partial or complete response to hormonal therapy. In 24% of pS2-positive patients the disease stabilized with treatment. In contrast, 27% of pS2-negative patients had a partial or complete response. In 10% of these patients the disease stabilized. Similar associations between therapeutic response and ER or PgR were not observed. The odds of having a clinical response to hormonal therapy was greater for pS2-positive than for ER- or PgR-positive tumors. pS2 expression may define a subset of ER-positive tumors that are more likely to respond to hormonal treatment.

Biomarkers, Tumor↗

Induction of pS2 and hSP genes as markers of mucosal ulceration of the digestive tract.

The recently discovered pS2 protein is expressed under estrogen control in a subset of estrogen receptor-positive breast cancers and in an estrogen-independent manner in normal stomach mucosa. The pS2 gene belongs to a family of genes encoding peptides that contain a conserved 5-cysteine domain, the P domains. Although the function of the pS2 protein is unknown, it has been suggested that it may have cell growth stimulatory activity. We report here that expression of the pS2 gene in the digestive tract, which is normally restricted to the stomach, is strongly induced by mucosal ulcerations elsewhere in the tract, most notably in Crohn's disease. pS2 gene expression is restricted to the mucosal layers adjacent to the ulcerations, in a region where a novel epidermal growth factor-secreting cell lineage was shown to be induced by mucosal ulceration. The human hSP gene, which contains a tandem duplication of the pS2 gene P domain and is coexpressed with the pS2 gene in normal stomach mucosa but not in breast cancers, is also expressed in Crohn's disease. We suggest that pS2 gene expression may provide a useful marker for mucosal ulcerations of the digestive tract.

Biomarkers↗

Expression of the breast cancer associated gene pS2 and the pancreatic spasmolytic polypeptide gene (hSP) in diffuse type of stomach carcinoma.

Expression of the pancreatic spasmolytic peptide (hSP) gene and pS2 (a gene isolated from oestrogen-induced breast carcinoma cells) were analysed in 36 samples of human stomach carcinoma. 17 tumours were investigated at the RNA level (by northern blots) as well as at the gene product level (by immunochemistry). Since pS2 had been shown to be expressed in normal stomach mucosa its activity in carcinoma samples was expected. Surprisingly, strong pS2 immunoreactivity was noted in the diffuse carcinoma type, whereas the intestinal type displayed weak reactivity. The tumour samples showing strong immunostaining expressed the regular 0.6 kb pS2 RNA band and weak staining was paralleled by aberrant transcripts. Additionally, only in tumour samples with regular pS2 transcription was the typical 0.7 kb hSP RNA band seen; samples with aberrant pS2 bands did not express hSP at all. This is the first demonstration of hSP gene activity in a human tumour.

Blotting, Northern↗

Breast cancer-associated protein pS2 expression in tumors of the biliary tract.

Expression of pS2 (an estrogen-induced gene isolated from breast carcinoma MCF7 cells) and of the human spasmolytic peptide (hSP) gene was analyzed in 21 human biliary tract and gallbladder carcinomas and 16 non-neoplastic gallbladders at the protein level (immunochemistry) and, in a series of these cases, at the RNA level (Northern blots). Eighteen carcinomas and 14 non-neoplastic mucosae with inflammatory alterations showed pS2 activity by immunostaining or Northern blotting. In addition, in samples with pS2 expression, hSP RNA was demonstrated. In the corresponding non-neoplastic and healthy mucosae, pS2 was negative, as judged by immunostaining. Northern blots showed weak (basal) level of activity for pS2 and hSP. The genes' increased expression in correlation to inflammatory and neoplastic processes, by now observed in several carcinomas and idiopathic inflammatory bowel disease, hints to their essential role in such diseases.

Biliary Tract Neoplasms↗