NUCLEAR SERINE-PROTEASE ACTIVITY CONTRIBUTES TO BILE ACID-INDUCED APOPTOSIS IN HEPATOCYTES
被引:102
作者:
KWO, P
论文数: 0引用数: 0
h-index: 0
机构:
MAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USAMAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USA
KWO, P
[1
]
PATEL, T
论文数: 0引用数: 0
h-index: 0
机构:
MAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USAMAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USA
PATEL, T
[1
]
BRONK, SF
论文数: 0引用数: 0
h-index: 0
机构:
MAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USAMAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USA
BRONK, SF
[1
]
GORES, GJ
论文数: 0引用数: 0
h-index: 0
机构:
MAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USAMAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USA
GORES, GJ
[1
]
机构:
[1] MAYO CLIN & MAYO FDN, CTR BASIC RES DIGEST DIS, DIV GASTROENTEROL & INTERNAL MED, ROCHESTER, MN 55905 USA
来源:
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY
|
1995年
/
268卷
/
04期
Glycodeoxycholate (GDC) induces apoptosis in hepatocytes by a mechanism associated with DNA cleavage by endonucleases. In many models of apoptosis, proteolysis is required prior to DNA cleavage. Our aims were to determine if enhanced proteolysis is a mechanism causing GDC-mediated apoptosis. In cultured rat hepatocytes exposed to 50 mu M GDC for 4 h, nonlysosomal proteolysis increased by 65% compared with controls. The serine protease inhibitor N alpha-p-tosyl-L-lysine chloromethyl ketone (TLCK; 100 mu M) reduced cell death from apoptosis by 75% after 4 h of treatment with GDC. TLCK also inhibited DNA fragmentation. There was a twofold increase in nuclear serinelike protease activity during GDC-induced apoptosis accompanied by a 2.5-fold reduction in nonnuclear serine protease activity, suggesting translocation of the protease from the cytosol to the nucleus. Zn2+, an inhibitor of apoptosis, also inhibited nonlysosomal proteolysis and nuclear serinelike protease activity. These novel data suggest that nonlysosomal serinelike protease activity contributes to hepatocyte apoptosis. These data may be important in understanding apoptosis in other cell types and in providing insight into the mechanisms of liver injury during cholestasis.