Redox and spectroscopic properties of mammalian nitrite reductase-like hemoproteins. 2022

Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
Hubei University of Technology Autism & Depression Diagnosis and Intervention Institute, Hubei University of Technology, Wuhan, Hubei, China; International Joint Research Center for General Health, Precision Medicine & Nutrition, Hubei University of Technology, Wuhan, Hubei, China; Department of Biomedicine and Biopharmacology, Hubei University of Technology, Wuhan, Hubei, China.

Besides the canonical pathway of L-arginine oxidation to produce nitric oxide (NO) in vivo, the nitrate-nitrite-NO pathway has been widely accepted as another source for circulating NO in mammals, especially under hypoxia. To date, there have been at least ten heme-containing nitrite reductase-like proteins discovered in mammals with activities mainly identified in vitro, including four globins (hemoglobin, myoglobin, neuroglobin (Ngb), cytoglobin (Cygb)), three mitochondrial respiratory chain enzymes (cytochrome c oxidase, cytochrome bc1, cytochrome c), and three other heme proteins (endothelial nitric oxide synthase, cytochrome P450 and indoleamine 2,3-dioxygenase 1 (IDO1)). The pathophysiological functions of these proteins are closely related to their redox and spectroscopic properties, as well as their protein structure, although the physiological roles of Ngb, Cygb and IDO1 remain unclear. So far, comprehensive summaries of the redox and spectroscopic properties of these nitrite reductase-like hemoproteins are still lacking. In this review, we have mainly summarized the published data on the application of ultraviolet-visible, electron paramagnetic resonance, circular dichroism and resonance Raman spectroscopies, and X-ray crystallography in studying nitrite reductase-like activity of these 10 proteins, in order to sort out the relationships among enzymatic function, structure and spectroscopic characterization, which might help in understanding their roles in redox biology and medicine.

UI MeSH Term Description Entries
D008322 Mammals Warm-blooded vertebrate animals belonging to the class Mammalia, including all that possess hair and suckle their young. Mammalia,Mammal
D009419 Nerve Tissue Proteins Proteins, Nerve Tissue,Tissue Proteins, Nerve
D009569 Nitric Oxide A free radical gas produced endogenously by a variety of mammalian cells, synthesized from ARGININE by NITRIC OXIDE SYNTHASE. Nitric oxide is one of the ENDOTHELIUM-DEPENDENT RELAXING FACTORS released by the vascular endothelium and mediates VASODILATION. It also inhibits platelet aggregation, induces disaggregation of aggregated platelets, and inhibits platelet adhesion to the vascular endothelium. Nitric oxide activates cytosolic GUANYLATE CYCLASE and thus elevates intracellular levels of CYCLIC GMP. Endogenous Nitrate Vasodilator,Mononitrogen Monoxide,Nitric Oxide, Endothelium-Derived,Nitrogen Monoxide,Endothelium-Derived Nitric Oxide,Monoxide, Mononitrogen,Monoxide, Nitrogen,Nitrate Vasodilator, Endogenous,Nitric Oxide, Endothelium Derived,Oxide, Nitric,Vasodilator, Endogenous Nitrate
D009572 Nitrite Reductases A group of enzymes that oxidize diverse nitrogenous substances to yield nitrite. (Enzyme Nomenclature, 1992) EC 1. Nitrite Reductase,Reductase, Nitrite,Reductases, Nitrite
D010084 Oxidation-Reduction A chemical reaction in which an electron is transferred from one molecule to another. The electron-donating molecule is the reducing agent or reductant; the electron-accepting molecule is the oxidizing agent or oxidant. Reducing and oxidizing agents function as conjugate reductant-oxidant pairs or redox pairs (Lehninger, Principles of Biochemistry, 1982, p471). Redox,Oxidation Reduction
D005914 Globins A superfamily of proteins containing the globin fold which is composed of 6-8 alpha helices arranged in a characterstic HEME enclosing structure. Globin
D000078787 Neuroglobin A vertebrate globin that is expressed predominantly in the brain where it is involved in oxygen transport. It protects neurons from APOPTOSIS during OXIDATIVE STRESS.
D000078842 Cytoglobin A globin protein that may protect cells from OXIDATIVE STRESS and function in intracellular oxygen storage and transfer. Histoglobin
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

Related Publications

Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
September 1996, The Journal of biological chemistry,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
January 2017, Redox report : communications in free radical research,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
November 1989, Archives of biochemistry and biophysics,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
June 2004, Bioelectrochemistry (Amsterdam, Netherlands),
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
May 2012, The journal of physical chemistry. B,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
August 2023, International journal of molecular sciences,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
June 2007, Natural product reports,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
January 2007, Journal of the American Chemical Society,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
October 2003, European journal of biochemistry,
Yunlong Zheng, and Wenwen Deng, and Di Liu, and Youheng Li, and Kang Peng, and George H Lorimer, and Jun Wang
May 2011, The Journal of biological chemistry,
Copied contents to your clipboard!