Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: UMLS:C0024623 (gastric cancer)
36,219 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Cathepsin L activity was partially purified by S-Sepharose FF chromatography, concanavalin-A Sepharose chromatography, phenyl-Superose column chromatography, Mono S column chromatography, and TSK G3000SWXL column chromatography from gastric cancer tissue. The optimal pH of cathepsin L from gastric cancer tissue was 7.4, and the activity was retained even at alkaline pH. Heat stability tests showed that cathepsin L from gastric cancer tissue was heat stable; that is, 65% activity was retained after incubation at 56 degrees C for 60 min. The molecular weight of cathepsin L from gastric cancer tissue was estimated as 115 kD by gel filtration or 110 kD by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The enzyme showed a different affinity for wheat germ agglutinin-Sepharose than cathepsin L from gastric normal mucosa. These results suggest that cathepsin L from gastric cancer tissue may play an important role in gastric cancer invasion through the destruction of the surrounding extracellular matrix by its proteolytic activity.
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PMID:Variant cathepsin L activity from gastric cancer tissue. 211 94

Activities of cathepsin B, cathepsin L, and plasminogen activators (urinary type plasminogen activator and tissue type plasminogen activator) were assayed in homogenates of cancer tissue, normal tissue closely surrounding the cancer tissue, and normal tissue distant from the cancer tissue from 30 patients undergoing surgery for gastric cancers and 10 patients undergoing surgery for colon cancers. Activities of those proteases were also assayed in homogenates of adenoma tissue from 10 patients undergoing polypectomy for colon polyps. In the gastric cancer tissue homogenates, the activities of cathepsin B, cathepsin L and tissue type plasminogen activator were significantly higher than in normal tissues. By contrast, the activities of urinary type plasminogen activator of gastric cancer tissues were significantly lower than normal tissues. In the colon cancer tissue homogenates, the activities of cathepsin, B, cathepsin L, and urinary type plasminogen activator were significantly higher than in normal tissues. On the other hand, the activities of tissue type plasminogen activator of cancer tissues were significantly lower than normal tissues. But there were no significant differences in the activities of plasminogen activators between the cancer tissues and adenoma tissues. These results suggest that cathepsin B and cathepsin L play an important role in gastric and colon cancer proliferation and evolution, although the roles of plasminogen activators in gastric and colon cancer proliferation and evolution and in the colon adenoma-carcinoma sequence are still unknown.
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PMID:[Protease activities in gastric and colon cancer tissues]. 223 1

Cathepsin B and L activities were determined with 7-amino-4-methyl-coumarin conjugates as substrates using small tissue specimens of gastric cancer and benign gastric ulcer. Both cathepsin B and L activities were higher in homogenates of gastric cancer tissue than in regenerative mucosa of benign gastric ulcer. Cathepsin B activity was much higher in cancer tissue than in tissue surrounding the tumor. In contrast, the activity in regenerative mucosa of benign gastric ulcer was not elevated as compared with the tissue surrounding the ulcer. Similar results were obtained with cathepsin L activity. These results indicate that cathepsin B and L are related to proliferation and evolvement of gastric cancer.
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PMID:Elevation of tissue cathepsin B and L activities in gastric cancer. 361 18

Cathepsin B and cathepsin L--cysteine proteinases--may play an important role in cancer invasion and metastasis. The authors determined tissue antigen concentrations of cathepsins, using the ELISA method, in 25 patients with gastric cancer (17 males, 8 females, mean age 62, range 31-84). They evaluated the possible relationship that these proteinases may have with the presence of metastases, differentiation and histotype. Significantly higher cathepsin B and cathepsin L antigen levels were found: 1. in gastric cancer tissues vs. normal tissues distant from tumors (CATB: p < 0.05, CATL: p < 0.005); 2. in diffuse vs. intestinal type cancers (p < 0.05); 3. in patients with poorly vs. well-differentiated cancers (p < 0.05); in gastric cancers with vs. without metastasis (p < 0.05). Their results confirm that cathepsin B and L play an important role in gastric cancer invasion and metastasis. Considering the significantly higher cathepsins detected in cancers with metastasis, a poor differentiation and of diffuse histotype, these proteinases could be useful for identification gastric cancer patients with a poor prognosis.
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PMID:[Role and behavior of cathepsin B and cathepsin L in gastric cancer]. 759 89

We investigated the mechanism of apoptosis induced by bafilomycin A(1), an inhibitor of vacuolar H(+)-ATPase. Bafilomycin A(1) significantly inhibited the growth of MKN-1 human gastric cancer cells. Bafilomycin A(1) induced apoptosis as demonstrated by DNA ladder formation and the TUNEL method. We designed a flow cytometric assay to detect the alteration in lysosomal pH using a fluorescent probe, fluorescein isothiocyanate-conjugated dextran. This assay revealed that bafilomycin A(1) dramatically increased lysosomal pH. However, bafilomycin A(1) induced neither significant decrease in mitochondrial transmembrane potential nor the release of mitochondrial cytochrome c into the cytoplasm. Western blotting showed that cathepsin D, but not cathepsin L, was released into the cytoplasm. The activity of caspase-3 was significantly increased by bafilomycin A(1). However, cathepsin D did not directly cleave procaspase-3. These findings suggest that bafilomycin A(1)-induced apoptosis in MKN-1 cells is mediated by other proteases released after lysosomal dysfunction followed by activation of caspase-3 in a cytochrome c-independent manner. The present study showed that flow cytometric analysis of lysosomal pH can be useful to evaluate lysosomal protease-mediated apoptosis.
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PMID:Vacuolar H+-ATPase inhibitor induces apoptosis via lysosomal dysfunction in the human gastric cancer cell line MKN-1. 1456 21

Forkhead box O3A (FOXO3a) is an important transcription factor involved in various human cancers. However, the role of FOXO3a in regulating the invasion and metastasis of gastric cancer cells has not been clarified. Here, we report that FOXO3a overexpression promoted migration and invasion of gastric cancer cells by upregulating cathepsin L. FOXO3a knockdown suppressed migration and invasion and also downregulated cathepsin L expression in gastric cancer cells. Silencing cathepsin L in these cells suppressed FOXO3a overexpression-induced cell migration and invasion. Mechanistic studies revealed that FOXO3a increased cathepsin L promoter activation, and cathepsin L overexpression repressed E-cadherin expression, causing gastric cancer cells to undergo epithelial-mesenchymal transition (EMT). Our data reveal a previously unexplored function of FOXO3a in gastric cancer invasion by regulating proteins involved in extracellular matrix (ECM) degradation and EMT. We suggest that FOXO3a may be of prognostic value and a potential therapeutic target in blocking tumor metastasis.
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PMID:FOXO3a promotes gastric cancer cell migration and invasion through the induction of cathepsin L. 2712 80

Traditional Chinese medication is increasingly used to treat a wide range of human chronic diseases like cardiovascular diseases and cancers. This study was designed to explore whether ka-sai-ping (KSP), a novel traditional Chinese medicine developed by us, prevents gastric cancer growths and to investigate the underlying mechanism. The xenograft model of mouse gastric cancer was established by injecting MFCs into nude mouse subcutaneously. Cell autophagy was assessed by MDC staining. Lysosome and mitochondria were detected by Lyso-Tracker Red and Mito-Traker Green staining. Incubation of cultured mouse gastric cancer cell line MFCs with KSP for 48 hours, concentration-dependently reduced cell survivals and activated autophagy, which were accompanied with damaged lysosomes and mitochondria. In vivo studies indicated that KSP therapy (20 ml/kg/day) for two weeks suppressed the growth of gastric cancer, increased the protein levels of LC3-II, beclin-1, cathepsin L, bcl-2, p53, and capase-3 in tumor tissues from the xenograft model of mouse gastric cancer. Importantly, all these effects induced by KSP were abolished by co-administration of autophagy inhibitor 3-MA. In conclusion, KSP activates cell autophagy to suppress gastric cancer growths. Clinically, KSP is potentially considered as a medicine to treat patients with gastric cancer.
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PMID:Traditional Chinese medicine Ka-Sai-Ping suppresses the growths of gastric cancers via induction of autophagy. 2922 Nov 12