PubMed Health⌕ Search

Biomedical subjects

E Miyagi

Publications and source records attributed to E Miyagi.

28 records · Page 2Linked to original sources

Characterization of matrix-degrading proteinases and their inhibitors secreted by human gynecological carcinoma cells.

Matrix-degrading proteinases secreted by tumor cells play crucial roles in tumor cell invasion and metastasis. Serum-free conditioned media of 7 human gynecological carcinoma cell lines were examined for proteinases and their inhibitors by using gelatin zymography, reverse zymography and immunoblotting. All of three ovarian adenocarcinoma cell lines secreted urokinase-type plasminogen activator. Among them, a mucinous cystadenocarcinoma cell line also secreted tissue-type plasminogen activator, plasmin-like enzyme and trypsinogen. On the other hand, two ovarian undifferentiated carcinoma cell lines mainly secreted glatinase A or B. A choriocarcinoma cell line secreted multiple metalloproteinases in the highest amount, whereas an endometrial adenocarcinoma cell line (HEC-1) derived from an early clinical stage hardly secreted any gelatinolytic enzyme. The five high proteinases producers hardly secreted the corresponding inhibitors, such as tissue inhibitor of metalloproteinases (TIMP)-1, -2 or plasminogen activator inhibitor-1. In contrast to these highly malignant cell lines, a poor proteinase producer, HEC-1, secreted a large amount of TIMPs. Therefore, an enhanced proteolytic tendency appears to be associated with gynecological cancer cells established from highly malignant tumors.

Adenocarcinoma, Clear Cell↗

cDNA cloning and mRNA expression of a serine proteinase inhibitor secreted by cancer cells: identification as placental protein 5 and tissue factor pathway inhibitor-2.

A serine proteinase inhibitor was purified from conditioned medium of the human glioblastoma cell line T98G. Analysis of its partial amino acid sequences indicated that this protein was identical to placental protein 5 (PP5), a placenta-derived glycoprotein with serine proteinase inhibitor activity, the amino acid sequence of which had been partially determined. cDNA cloning of PP5 demonstrated that it belonged to the Kunitz-type serine proteinase inhibitor family, having three putative Kunitz-type inhibitor domains, and that it was identical to a recently reported inhibitor, tissue factor pathway inhibitor-2 (TFPI-2) [Sprecher et al. (1994) Proc. Natl. Acad. Sci. USA 91, 3353-3357]. PP5/TFPI-2 transcripts were highly abundant in the full-term placenta and widely expressed in various adult human tissues, such as the liver, skeletal muscle, heart, kidney, and pancreas. Several ovarian carcinoma cells as well as T98G also contained significant amounts of the transcripts.

Amino Acid Sequence↗

Specific expression of PP5/TFPI2 mRNA by syncytiotrophoblasts in human placenta as revealed by in situ hybridization.

Placental protein 5 (PP5) is a placenta-derived glycoprotein with serine proteinase-inhibiting activity. To date its physiological functions have not been well elucidated. Recently, cDNA sequence analysis revealed that PP5 belongs to the Kunitz-type proteinase inhibitor family and it is identical to tissue factor pathway inhibitor-2 (TFPI-2), homologous to TFPI. Northern blot analysis demonstrated that placental tissue is extremely rich in the transcripts. This study localized PP5/TFPI-2 mRNA in placental tissues at three different gestational periods using in situ hybridization. PP5/TFPI-2 mRNA was specifically detected in syncytiotrophoblast at any gestational period examined, suggesting that syncytiotrophoblast is the principal production site of PP5/TFPI-2 in developing placental tissues. This mRNA expression pattern of PP5/TFPI-2 is quite different from that of TFPI, which is mainly found in vascular endothelial cells. The results indicated possible roles of PP5/TFPI-2 in the trophoblast differentiation and in the maintenance of intervillous blood flow. Also, Northern analysis demonstrated no or little expression of PP5/TFPI-2 in four choriocarcinoma cell lines, in contrast to its abundant expression in syncytiotrophoblast.

Adult↗

Subcellular localization of PP5/TFPI-2 in human placenta: a possible role of PP5/TFPI-2 as an anti-coagulant on the surface of syncytiotrophoblasts.

Placental protein 5 (PP5)/tissue factor pathway inhibitor-2 (TFPI-2), a serine proteinase inhibitor, is homologous to tissue factor pathway inhibitor (TFPI) and commonly found in peripheral blood of pregnant woman. Although TFPI is well known to be synthesized primarily in endothelium and to play an important role in regulation of the extrinsic pathway of blood coagulation, the function of PP5/TFPI-2 remains unclear. Our previous report demonstrated that PP5/TFPI-2 expression is ubiquitous and extremely high in growing placental tissue. Using newly generated polyclonal anti-PP5/TFPI-2 antibody, and by immunohistochemistry and immunoelectromicroscopy, we examined precise localization of PP5/TFPI-2 in placenta especially in syncytiotrophoblasts, which had been shown to produce PP5/TFPI-2 mRNA by our previous study using in situ hybridization. Immunoelectromicroscopy revealed PP5/TFPI-2 localizing on the surface of the microvilli and the membrane of endoplasmic reticulum of syncytiotrophoblasts. To confirm the cell surface association of PP5/TFPI-2, placental villi were incubated with heparin and resultant soluble fraction was analysed by Western blotting. Heparin liberating PP5/TFPI-2 from villi suggested that PP5/TFPI-2 might be retained on the microvilli surface through the binding to membrane-anchored proteoglycans such as glypican and/or syndecan family members. We also examined the relationship between the presence of cell layer of syncytiotrophoblasts and the coagulation using clinical specimens, and revealed that the fibrin depositions were specifically observed on the regions lacking syncytiotrophoblasts cell layer in placental villi. Therefore, it is likely that during pregnancy PP5/TFPI-2 may be retained on the surface of placental villi via proteoglycans, and may play an important role to maintain intervillous blood flow and the patency of microvasculature in feto-maternal blood system mediated by the inhibition of serine proteinases involved in the blood coagulation.

Adult↗