The heme oxygenase - carbon monoxide system: regulation and role in stress response and organ failure

被引:81
作者
Bauer, Michael [1 ]
Huse, Klaus [2 ]
Settmacher, Utz
Claus, Ralf A. [1 ]
机构
[1] Friedrich Schiller Univ Hosp, Dept Anesthesiol & Intens Care Med, D-07740 Jena, Germany
[2] Fritz Lipmann Inst, Leibniz Inst Age Res, Jena, Germany
关键词
D O I
10.1007/s00134-008-1010-2
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Heme oxygenase (HO) breaks down heme, the iron-containing, oxygen-carrying constituent of red blood cells, yielding biliverdin, iron (II) ions, and carbon monoxide (CO). Among the isoenzymes cloned to date, only HO-1 can be induced by a panoply of stimuli linked by their ability to provoke oxidative stress. HO-1 induction protects against cell death in experimental models associated with ischemia/reperfusion or inflammation, making the gene a promising target for critical care medicine. Induction of HO-1 may confer protection by controlling intracellular levels of toxic heme, or by anti-inflammatory, anti-apoptotic, and blood flow-maintaining effects of its by-products biliverdin and CO. Although protective effects of upregulation of HO-1 have been reported for a variety of cells and tissues, evidence suggests that the protective action may be restricted to a rather narrow threshold of overexpression. In addition, there is substantial variation in gene expression depending on transcriptional control mechanisms such as a microsatellite length polymorphism. Genetic variability and the required use of cytotoxic inducers are hurdles for purposeful targeting of HO-1 gene expression in critical care, while administration of by-products of the pathway seems feasible at present.
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页码:640 / 648
页数:9
相关论文
共 100 条
[1]  
Akagi R, 2005, CONTRIB NEPHROL, V148, P70, DOI 10.1159/000086044
[2]   Upregulation of heme oxygenase-1 protects genetically fat Zucker rat livers from ischemia/reperfusion injury [J].
Amersi, F ;
Buelow, R ;
Kato, H ;
Ke, BB ;
Coito, AJ ;
Shen, XD ;
Zhao, DL ;
Zaky, J ;
Melinek, J ;
Lassman, CR ;
Kolls, JK ;
Alam, J ;
Ritter, T ;
Volk, HD ;
Farmer, DG ;
Ghobrial, RM ;
Busuttil, RW ;
Kupiec-Weglinski, JW .
JOURNAL OF CLINICAL INVESTIGATION, 1999, 104 (11) :1631-1639
[3]   Six- to five-coordinate heme-nitrosyl conversion in cytochrome c′ and its relevance to guanylate cyclase [J].
Andrew, CR ;
George, SJ ;
Lawson, DM ;
Eady, RR .
BIOCHEMISTRY, 2002, 41 (07) :2353-2360
[4]  
APPLEGATE LA, 1991, CANCER RES, V51, P974
[5]  
BALLA G, 1991, LAB INVEST, V64, P648
[6]   Heme, heme oxygenase and ferritin in vascular endothelial cell injury [J].
Balla, J ;
Vercellotti, GM ;
Jeney, V ;
Yachie, A ;
Varga, Z ;
Eaton, JW ;
Balla, G .
MOLECULAR NUTRITION & FOOD RESEARCH, 2005, 49 (11) :1030-1043
[7]   Atypical neural messengers [J].
Barañano, DE ;
Ferris, CD ;
Snyder, SH .
TRENDS IN NEUROSCIENCES, 2001, 24 (02) :99-106
[8]   Expression pattern and regulation of heme oxygenase-1 heat shock protein 32 in human liver cells [J].
Bauer, I ;
Rensing, H ;
Florax, A ;
Ulrich, C ;
Pistorius, G ;
Redl, H ;
Bauer, M .
SHOCK, 2003, 20 (02) :116-122
[9]   Expression pattern of heme oxygenase isoenzymes 1 and 2 in normal and stress-exposed rat liver [J].
Bauer, I ;
Wanner, GA ;
Rensing, H ;
Alte, G ;
Miescher, EA ;
Wolf, B ;
Pannen, BHJ ;
Clemens, MG ;
Bauer, M .
HEPATOLOGY, 1998, 27 (03) :829-838
[10]   Heme oxygenase in liver transplantation: Heme catabolism and metabolites in the search of function [J].
Bauer, M .
HEPATOLOGY, 2003, 38 (02) :286-288