Alcoholic Liver Disease and Methionine Metabolism

被引:98
作者
Kharbanda, Kusum K. [1 ,2 ]
机构
[1] Dept Vet Affairs Med Ctr, Res Serv, Omaha, NE 68105 USA
[2] Univ Nebraska Med Ctr, Dept Internal Med, Omaha, NE USA
关键词
Alcoholic liver disease; betaine; S-adenosylmethionine; S-adenosylhomocysteine; homocysteine; methyltransferases; ENDOPLASMIC-RETICULUM STRESS; ADENOSYL-L-METHIONINE; PHOSPHATIDYLETHANOLAMINE N-METHYLTRANSFERASE; MITOCHONDRIAL GLUTATHIONE DEPLETION; ELEVATED S-ADENOSYLHOMOCYSTEINE; ETHANOL-INDUCED CHANGES; PLASMA HOMOCYSTEINE; HEPATIC METHIONINE; GENE-EXPRESSION; IN-VIVO;
D O I
10.1055/s-0029-1214371
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Alcoholic liver disease is a major health care problem worldwide. Findings have demonstrated that ethanol feeding impairs several of the multiple steps in methionine metabolism that leads to progressive liver injury. Ethanol consumption has been reported to predominantly inhibit the activity of a vital cellular enzyme, methionine synthase, involved in remethylating homocysteine. By way of compensation in some species, ethanol can also increase the activity of the enzyme, betaine homocysteine methyltransferase. This enzyme catalyzes all alternate pathway in methionine metabolism and utilizes hepatic betaine to remethylate homocysteine to form methionine and maintain levels of S-adenosymethionine, the key methylating agent. Under extended periods of ethanol feeding, however, this alternate pathway cannot be maintained. This results in a decrease In the hepatocyte level of S-adenosylmethionine and increases In two toxic metabolites, S-adenosylhomocysteine and homocysteine. These changes in the various metabolites of methionine metabolism, ill turn, result in serious functional consequences. These include decreases in essential methylation reactions by inhibiting various methyltransferases critical to normal functioning of the liver and upregulation of the activation of endoplasmic reticulum-dependent apoptosis and lipid synthetic pathways. The ultimate outcome of these consequences is increased fit deposition, increased apoptosis, accumulation of damaged proteins, and alterations in various signaling pathways, all of which call ultimately result in progressive liver damage. Of all the therapeutic modalities that are presently being used to attenuate ethanol-induced liver injury, betaine has been shown to be the most effective in a variety of experimental models of liver disease. Betaine, by virtue of aiding in the remethylation of homocysteine, removes both toxic metabolites (homocysteine and S-adenosylhomocysteine), restores S-adenosylmethionine level, reverses steatosis, prevents apoptosis and reduces both damaged protein accumulation and oxidative stress. Thus, betaine is a promising therapeutic agent In relieving the methylation and other defects associated with alcoholic abuse.
引用
收藏
页码:155 / 165
页数:11
相关论文
共 104 条
[91]   Gene expression profiling of alcoholic liver disease in the baboon (Papio hamadryas) and human liver [J].
Seth, D ;
Leo, MA ;
McGuinness, PH ;
Lieber, CS ;
Brennan, Y ;
Williams, R ;
Wang, XM ;
McCaughan, GW ;
Gorrell, MD ;
Haber, PS .
AMERICAN JOURNAL OF PATHOLOGY, 2003, 163 (06) :2303-2317
[92]   Biological significance of isoaspartate and its repair system [J].
Shimizu, T ;
Matsuoka, Y ;
Shirasawa, T .
BIOLOGICAL & PHARMACEUTICAL BULLETIN, 2005, 28 (09) :1590-1596
[93]   Emerging role of epigenetics in the actions of alcohol [J].
Shukla, Shivendra D. ;
Velazquez, Jose ;
French, Samuel W. ;
Lu, Shelly C. ;
Ticku, Maharaj K. ;
Zakhari, Samir .
ALCOHOLISM-CLINICAL AND EXPERIMENTAL RESEARCH, 2008, 32 (09) :1525-1534
[94]   Epigenetic effects of ethanol on liver and gastrointestinal injury [J].
Shukla, Shivendra D. ;
Aroor, Annayya R. .
WORLD JOURNAL OF GASTROENTEROLOGY, 2006, 12 (33) :5265-5271
[95]   Alcohol-induced S-adenosylhomocysteine accumulation in the liver sensitizes to TNF hepatotoxicity: Possible involvement of mitochondrial S-adenosylmethionine transport [J].
Song, Zhenyuan ;
Zhou, Zhanxiang ;
Song, Ming ;
Uriarte, Silvia ;
Chen, Theresa ;
Deaciuc, Ion ;
McClain, Craig J. .
BIOCHEMICAL PHARMACOLOGY, 2007, 74 (03) :521-531
[96]  
Stickel F, 2000, ALCOHOL CLIN EXP RES, V24, P259, DOI 10.1111/j.1530-0277.2000.tb04606.x
[97]   Induction of TIMP-1 expression in rat hepatic stellate cells and hepatocytes:: a new role for homocysteine in liver fibrosis [J].
Torres, L ;
García-Trevijano, ER ;
Rodríguez, JA ;
Carretero, MV ;
Bustos, M ;
Fernández, E ;
Eguinoa, E ;
Mato, JM ;
Avila, MA .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 1999, 1455 (01) :12-22
[98]   THE EFFECT OF ETHANOL ON ONE-CARBON METABOLISM - INCREASED METHIONINE CATABOLISM AND LIPOTROPE METHYL-GROUP WASTAGE [J].
TRIMBLE, KC ;
MOLLOY, AM ;
SCOTT, JM ;
WEIR, DG .
HEPATOLOGY, 1993, 18 (04) :984-989
[99]   Proteomic identification of novel substrates of a protein isoaspartyl methyltransferase repair enzyme [J].
Vigneswara, Vasanthy ;
Lowenson, Jonathan D. ;
Powell, Claire D. ;
Thakur, Matthew ;
Bailey, Kevin ;
Clarke, Steven ;
Ray, David E. ;
Carter, Wayne G. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (43) :32619-32629
[100]   Abnormal transsulfuration and glutathione metabolism in the micropig model of alcoholic liver disease [J].
Villanueva, JA ;
Esfandiari, F ;
Wong, DH ;
Ahmad, I ;
Melnyk, S ;
James, SJ ;
Halsted, CH .
ALCOHOLISM-CLINICAL AND EXPERIMENTAL RESEARCH, 2006, 30 (07) :1262-1270