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Cathepsin B: association with plasma membrane in metastatic tumors
Abstract:
The subcellular localization of cathepsin B activity (EC 3.4.22.1) in three murine melanomas of increasing metastatic potential (Cloudman less than B16-F1 less than B16 amelanotic) was determined. Cathepsin B activity was localized in the heavy mitochondrial fraction of normal murine liver but in the light mitochondrial fraction of the metastatic melanomas; the localization of three other lysosomal hydrolases did not shift. Further purification of the light mitochondrial fraction into L-1 (density = 1.045 g/ml) and L-2 (density = 1.07 g/ml) fractions was achieved on a 30% iso-osmotic Percoll gradient. The L-1 fraction of liver and melanomas contained Na+, K+-ATPase activity; the L-2 fraction of liver contained four lysosomal hydrolase (cathepsins B and H, N-acetyl-beta-glucosaminidase, and beta-glucuronidase) and glucose-6-phosphatase activities. Ultrastructural examination revealed that the L-1 fraction consisted of membrane vesicles and the L-2 fraction of secondary lysosomes. In the B16 melanomas cathepsin B and N-acetyl-beta-glucosaminidase activities were found in both L-1 and L-2 fractions. Specific activities of the two enzymes in the plasma membrane (L-1) fractions increased in correspondence with metastatic potential. Cathepsin H and beta-glucuronidase activities were not localized in the plasma membrane fractions of the B16 melanomas. Localization of hydrolytic enzymes in the plasma membrane of metastatic tumor cells could result in focal dissolution of the extracellular matrix and thereby invasion and metastasis.
Insights
Cathepsin B activity shifts to the plasma membrane in metastatic melanomas, correlating with increased metastatic potential. This enzyme localization may drive tumor invasion by degrading the extracellular matrix.
Area of Science:
- Biochemistry
- Cell Biology
- Oncology
Background:
- Cathepsin B is a lysosomal hydrolase implicated in cancer progression.
- Understanding enzyme localization is crucial for elucidating mechanisms of tumor metastasis.
Purpose of the Study:
- To determine the subcellular localization of cathepsin B activity in murine melanomas.
- To investigate the relationship between cathepsin B localization and metastatic potential.
Main Methods:
- Differential centrifugation and Percoll gradient fractionation to isolate subcellular components.
- Enzyme activity assays (cathepsin B, H, N-acetyl-beta-glucosaminidase, beta-glucuronidase, Na+, K+-ATPase) and glucose-6-phosphatase.
- Ultrastructural examination of isolated fractions.
Main Results:
- Cathepsin B activity shifted from heavy mitochondria in normal liver to light mitochondria in metastatic melanomas.
- Further fractionation revealed cathepsin B and N-acetyl-beta-glucosaminidase in plasma membrane (L-1) and lysosomal (L-2) fractions of B16 melanomas.
- Enzyme activity in plasma membrane fractions increased with melanoma metastatic potential.
Conclusions:
- Cathepsin B and N-acetyl-beta-glucosaminidase are present in the plasma membrane of metastatic melanoma cells.
- Increased plasma membrane localization of these enzymes correlates with metastatic capability.
- This aberrant localization may facilitate extracellular matrix degradation, promoting tumor invasion and metastasis.