Abstract

An extracellular proteasome-like (EP) structure has been isolated from serum-free media conditioned by C6 astrocytoma cells. EP has a native molecular mass of 1000 kDa and is composed of three subunits, two isoelectric variants at 70 kDa and one at 65 kDa. The extracellular proteasome degraded collagen IV, alpha-casein, beta-insulin, and certain synthetic peptide substrates. A 68-kDa type IV collagenase, identified as the activated form of gelatinase A, was also isolated from this medium. The type IV collagenase activity of the proteasome was sensitive to serine protease inhibitors, while the 68-kDa collagenase IV represented the matrix metalloprotease gelatinase A. The general protease activity of the proteasome was sensitive to metalloprotease inhibitors. Western blot analysis indicates a sequence relationship between the 68-kDa type IV collagenase and either one or both of the 70-kDa isoelectric variants of the proteasome; however, the two enzymes appear to be distinct functionally. Comparison with known proteasomes indicates that EP represents a novel proteasome. The complexity of degradative enzymes in the extracellular microenvironment implies that complete inhibition of tumor growth requires at least a combination of serine and metalloprotease inhibitors.

Highlights

  • An extracellular proteasome-like (EP) structure has been isolated from serum-free media conditioned by C6 astrocytoma cells

  • The involvement ofC6 astrocytoma cells in angiogenesis may be due to their enhanced levels of both collagenase IV activity and general protease activity

  • Control studies were carried out to ensure that the extracellular activities were not the result of proteolytic activity already present in non-conditioned medium, nor due to cell lysis

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Summary

THE JOURNAL OF BIOLOGICAL CHEMISTRY

4588--4593, 1995 Printed in U.S.A. An Extracellular Proteasome-like Structure from C6 Astrocytoma Cells with Serine Collagenase IV Activity and Metallo-dependent Activity on a-Casein and p-Insulin*. The type IV collagenase activity of the proteasome was sensitive to serine protease inhibitors, while the 68-kDa collagenase IV represented the matrix metalloprotease gelatinase A. The involvement ofC6 astrocytoma cells in angiogenesis may be due to their enhanced levels of both collagenase IV activity and general protease activity. In vivo, these activities are maximal prior to the rapid phase ofC6 astrocytoma growth [3,4,5]. Degradation of collagen IV represents a significant step in this process, since it composes between 60 and 90% of the basement membrane [8]

Type IV collagenases belong to the matrix metalloprotease
EXPERIMENTAL PROCEDURES
RESULTS
ACTIVITY PROTEIN
DISCUSSION
Collagen IV
Type of activity
Full Text
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