CALCIUM-ACTIVATED NEUTRAL PROTEINASE (CANP, CALPAIN) ACTIVITY IN SCHWANN-CELLS - IMMUNOFLUORESCENCE LOCALIZATION AND COMPARTMENTATION OF MU-CANP AND MCANP
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BANIK, NL
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VIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USAVIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USA
BANIK, NL
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DEVRIES, GH
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VIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USAVIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USA
DEVRIES, GH
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NEUBERGER, T
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VIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USAVIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USA
NEUBERGER, T
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RUSSELL, T
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VIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USAVIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USA
RUSSELL, T
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CHAKRABARTI, AK
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VIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USAVIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USA
CHAKRABARTI, AK
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HOGAN, EL
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VIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USAVIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USA
HOGAN, EL
[1
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[1] VIRGINIA COMMONWEALTH UNIV, MED COLL VIRGINIA, DEPT BIOCHEM & MOLEC BIOPHYS, RICHMOND, VA 23298 USA
Calcium-activated neutral proteinase (CANP) activity was determined in cytosolic and membranous subcellular fractions of transformed Schwann cells (tSc). The mu-M and mM Ca2+-sensitive (mu- and mCANP) forms of CANP were separated by DEAE and phenyl Sepharose column chromatography, the latter step enabling removal of the endogenous inhibitor calpastatin. The tSc contained more mu-CANP than the mM isoform. More than 75% of mCANP activity was membrane-associated and 20% was cytosolic. In contrast, approximately 80% of mu-CANP was cytosolic and 15% was membranous. Triton X-100 stimulated activity of the whole homogenate and of the membrane pellet but did not stimulate CANP activity in the cytosolic fraction. Immunohistochemical distribution of mM enzyme was studied in both fixed and permeabilized tSc with cytosolic (anti-cyt-mCANP) and myelin (anti-my-mCANP) antibodies. Live cells (non-permeabilized) stained with anti-my-mCANP had a single filamentous ring circumscribing individual cells. Permeabilized cells treated with anti-my-mCANP had immunoreactive deposits throughout the intracellular space but sparing the perinuclear region. No immunohistochemical staining was detected when live cells were exposed to anti-cyt-mCANP whereas permeabilized cells had extensive intracellular staining with the most intense immunoreactivity in the perinuclear region. Our results indicate that both forms of CANP are present in tSc and that the activity of most of the mu-CANP is cytosolic while mCANP is particulate.