Calcium-dependent DNA damage and adenosine 3',5'-cyclic monophosphate-independent glycogen phosphorylase activation in an in vitro model of acetaminophen-induced liver injury

被引:33
作者
Salas, VM
Corcoran, GB
机构
[1] Toxicology Program, University of New Mexico, College of Pharmacy, Albuquerque, NM
[2] University of New Mexico, College of Pharmacy, Albuquerque, NM 87131-1066
关键词
D O I
10.1002/hep.510250621
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Acetaminophen (N-acetyl-p-aminophenol [APAP]) hepatotoxicity is a process characterized by Ca2+ deregulation. Cellular functions utilizing Ca2+ as a second messenger molecule affect both cytosolic and nuclear signal transduction. Many studies have independently shown Ca2+-related effects on target molecules in response to toxic doses of APAP; however the primary Ca2+ target resulting in liver necrosis has not been determined. We hypothesize that Ca2+-dependent DNA damage is a critical event in liver necrosis caused by alkylating hepatotoxins, In this study, Ca2+-dependent endonuclease activity was determined hom DNA single-strand lesions measured by fluorometric analysis of DNA unwinding. The status of cytosolic Ca2+ was determined by measuring Ca2+-dependent activation of glycogen phosphorylase a. Primary cultures of mouse hepatocytes exposed to a toxic concentration of APAP showed twofold and greater increases in glycogen phosphorylase a stimulation at 6 hours, which was reversible with Ca2+-chelating agents. Cell death was preceded by a large decline in intact, double-stranded DNA. Following toxic administration of APAP, the percentage of total double-stranded DNA was significantly reduced by 2 hours. At 6 and 24 hours, genomic integrity was compromised by 26% and 37%, respectively, compared with untreated controls, Hepatotoxic effects of APAP-mediated Ca2+ deregulation were confirmed in both primary mouse hepatocytes and the human hepatoblastoma HepG2 cell line by lactate dehydrogenase (LDH) release and tetrazolium reduction using the 3-4,5-dimethylthiazole-2-yl-2,5-diphenyl zolium bromide thiazol blue(MTT) assay. The Ca2+ chelator, ethylene glycol-bis (beta-aminoethyl ether) N',N',N', N'-tetraacetic acid (EGTA), blocked APAP-induced phosphorylase a activation and necrotic cell death, but failed to inhibit phosphorylase a activation by the adenosine 3',5'-cyclic monophosphate (cAMP) analogue, dibutyryl cAMP, indicating little or no contribution of the cAMP pathway to phosphorylase a stimulation during APAP-induced necrotic death. Results with these in vitro models of liver injury are interpreted as supporting the hypothesis that increased Ca2+ availability plays a major role in the progression of APAP-dependent cellular necrosis, and that the nucleus is a critical target for APAP hepatotoxicity.
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页码:1432 / 1438
页数:7
相关论文
共 42 条
[1]   LABORATORY AND ANIMAL INVESTIGATIONS - CALCIUM-ENTRY ATTENUATES ADENYLYL-CYCLASE ACTIVITY - A POSSIBLE MECHANISM FOR CALCIUM-INDUCED CATECHOLAMINE RESISTANCE [J].
ABERNETHY, WB ;
BUTTERWORTH, JF ;
PRIELIPP, RC ;
LEITH, JP ;
ZALOGA, GP .
CHEST, 1995, 107 (05) :1420-1425
[2]  
BIRNBOIM HC, 1981, CANCER RES, V41, P1889
[3]   MITOCHONDRIAL DYSFUNCTION IN PARACETAMOL HEPATOTOXICITY - INVITRO STUDIES IN ISOLATED MOUSE HEPATOCYTES [J].
BURCHAM, PC ;
HARMAN, AW .
TOXICOLOGY LETTERS, 1990, 50 (01) :37-48
[4]   CALCIUM SIGNALING [J].
CLAPHAM, DE .
CELL, 1995, 80 (02) :259-268
[5]  
COHEN JJ, 1984, J IMMUNOL, V132, P38
[6]   THE ROLE OF THE NUCLEUS AND OTHER COMPARTMENTS IN TOXIC CELL-DEATH PRODUCED BY ALKYLATING HEPATOTOXICANTS [J].
CORCORAN, GB ;
RAY, SD .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1992, 113 (02) :167-183
[7]   IMMEDIATE RISE IN INTRACELLULAR CALCIUM AND GLYCOGEN PHOSPHORYLASE-A ACTIVITIES UPON ACETAMINOPHEN COVALENT BINDING LEADING TO HEPATOTOXICITY IN MICE [J].
CORCORAN, GB ;
BAUER, JA ;
LAU, TWD .
TOXICOLOGY, 1988, 50 (02) :157-167
[8]   GENOTOXICITY STUDIES WITH PARACETAMOL [J].
DYBING, E ;
HOLME, JA ;
GORDON, WP ;
SODERLUND, EJ ;
DAHLIN, DC ;
NELSON, SD .
MUTATION RESEARCH, 1984, 138 (01) :21-32
[9]   THE ORIGINS OF DNA BREAKS - A CONSEQUENCE OF DNA DAMAGE, DNA-REPAIR, OR APOPTOSIS [J].
EASTMAN, A ;
BARRY, MA .
CANCER INVESTIGATION, 1992, 10 (03) :229-240
[10]   PEROXIDATION-DEPENDENT AND PEROXIDATION-INDEPENDENT MECHANISMS BY WHICH ACETAMINOPHEN KILLS CULTURED RAT HEPATOCYTES [J].
FARBER, JL ;
LEONARD, TB ;
KYLE, ME ;
NAKAE, D ;
SERRONI, A ;
ROGERS, SA .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1988, 267 (02) :640-650