Oxygen sensing and molecular adaptation to hypoxia

被引:1005
作者
Bunn, HF [1 ]
Poyton, RO [1 ]
机构
[1] UNIV COLORADO, DEPT MOLEC CELLULAR & DEV BIOL, BOULDER, CO 80309 USA
关键词
D O I
10.1152/physrev.1996.76.3.839
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
This review focuses on the molecular stratagems utilized by bacteria, yeast, and mammals in their adaptation to hypoxia Among this broad range of organisms, changes in oxygen tension appear to be sensed by heme proteins, with subsequent transfer of electrons along a signal transduction pathway which may depend on reactive oxygen species. These heme-based sensors are generally two-domain proteins. Some are hemokinases, while others are flavohemoproteins [flavohemoglobins and NAD(P)H oxidases]. Hypoxia-dependent kinase activation of transcription factors in nitrogen-fixing bacteria bears a striking analogy to the phosphorylation of hypoxia inducible factor-1 (HIF-1) in mammalian cells. Moreover, redox chemistry appears to play a critical role both in the trans-activation of oxygen-responsive genes in unicellular organisms as well as in the activation of HIF-1. In yeast and bacteria, regulatory operons coordinate expression of genes responsible for adaptive responses to hypoxia and hyperoxia. Similarly, in mammals, combinatorial interactions of HIF-1 with other identified transcription factors are required for the hypoxic induction of physiologically important genes.
引用
收藏
页码:839 / 885
页数:47
相关论文
共 384 条
[1]   REDOX REGULATION OF FOS AND JUN DNA-BINDING ACTIVITY INVITRO [J].
ABATE, C ;
PATEL, L ;
RAUSCHER, FJ ;
CURRAN, T .
SCIENCE, 1990, 249 (4973) :1157-1161
[2]  
ACKER H, 1994, ANN NY ACAD SCI, V718, P3
[3]   THE MEANING OF H2O2 GENERATION IN CAROTID-BODY CELLS FOR PO2 CHEMORECEPTION [J].
ACKER, H ;
BOLLING, B ;
DELPIANO, MA ;
DUFAU, E ;
GORLACH, A ;
HOLTERMANN, G .
JOURNAL OF THE AUTONOMIC NERVOUS SYSTEM, 1992, 41 (1-2) :41-52
[4]   MECHANISMS AND MEANING OF CELLULAR OXYGEN SENSING IN THE ORGANISM [J].
ACKER, H .
RESPIRATION PHYSIOLOGY, 1994, 95 (01) :1-10
[5]  
Ackrell B.A. C., 1992, CHEM BIOCH FLAVOENZY, VIII, P229
[6]   OXYGEN REGULATION OF NIFA TRANSCRIPTION INVITRO [J].
AGRON, PG ;
DITTA, GS ;
HELINSKI, DR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (08) :3506-3510
[7]  
AIRD WC, 1994, J BIOL CHEM, V269, P883
[8]   ISOFORMS OF YEAST CYTOCHROME-C-OXIDASE SUBUNIT-V AFFECT THE BINUCLEAR REACTION-CENTER AND AFTER THE KINETICS OF INTERACTION WITH THE ISOFORMS OF YEAST CYTOCHROME-C [J].
ALLEN, LA ;
ZHAO, XJ ;
CAUGHEY, W ;
POYTON, RO .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (01) :110-118
[9]  
Ames B., 1992, MOL BIOL FREE RADICA, P1
[10]   SEPARATION OF OXIDANT-INITIATED AND REDOX-REGULATED STEPS IN THE NF-KAPPA-B SIGNAL-TRANSDUCTION PATHWAY [J].
ANDERSON, MT ;
STAAL, FJT ;
GITLER, C ;
HERZENBERG, LA ;
HERZENBERG, LA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (24) :11527-11531