Literature DB >> 17289676

Roles of hemoglobin Allostery in hypoxia-induced metabolic alterations in erythrocytes: simulation and its verification by metabolome analysis.

Ayako Kinoshita1, Kosuke Tsukada, Tomoyoshi Soga, Takako Hishiki, Yuki Ueno, Yoichi Nakayama, Masaru Tomita, Makoto Suematsu.   

Abstract

When erythrocytes are exposed to hypoxia, hemoglobin (Hb) stabilizes in the T-state by capturing 2,3-bisphosphoglycerate. This process could reduce the intracellular pool of glycolytic substrates, jeopardizing cellular energetics. Recent observations suggest that hypoxia-induced activation of glycolytic enzymes is correlated with their release from Band III (BIII) on the cell membrane. Based on these data, we developed a mathematical model of erythrocyte metabolism and compared hypoxia-induced differences in predicted activities of the enzymes, their products, and cellular energetics between models with and without the interaction of Hb with BIII. The models predicted that the allostery-dependent Hb interaction with BIII accelerates consumption of upstream glycolytic substrates such as glucose 6-phosphate and increases downstream products such as phosphoenolpyruvate. This prediction was consistent with metabolomic data from capillary electrophoresis mass spectrometry. The hypoxia-induced alterations in the metabolites resulted from acceleration of glycolysis, as judged by increased conversion of [(13)C]glucose to [(13)C]lactate. The allostery-dependent interaction of Hb with BIII appeared to contribute not only to maintenance of energy charge but also to further synthesis of 2,3-bisphosphoglycerate, which could help sustain stabilization of T-state Hb during hypoxia. Furthermore, such an activation of glycolysis was not observed when Hb was stabilized in R-state by treating the cells with CO. These results suggest that Hb allostery in erythrocytes serves as an O(2)-sensing trigger that drives glycolytic acceleration to stabilize intracellular energetics and promote the ability to release O(2) from the cells.

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Year:  2007        PMID: 17289676     DOI: 10.1074/jbc.M610717200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  34 in total

Review 1.  Oxygen-linked modulation of erythrocyte metabolism: state of the art.

Authors:  Massimo Castagnola; Irene Messana; Maria Teresa Sanna; Bruno Giardina
Journal:  Blood Transfus       Date:  2010-06       Impact factor: 3.443

Review 2.  Interactions of multiple gas-transducing systems: hallmarks and uncertainties of CO, NO, and H2S gas biology.

Authors:  Mayumi Kajimura; Ryo Fukuda; Ryon M Bateman; Takehiro Yamamoto; Makoto Suematsu
Journal:  Antioxid Redox Signal       Date:  2010-07-15       Impact factor: 8.401

3.  Role of band 3 in regulating metabolic flux of red blood cells.

Authors:  Ian A Lewis; M Estela Campanella; John L Markley; Philip S Low
Journal:  Proc Natl Acad Sci U S A       Date:  2009-10-21       Impact factor: 11.205

4.  Paradoxical ATP elevation in ischemic penumbra revealed by quantitative imaging mass spectrometry.

Authors:  Katsuji Hattori; Mayumi Kajimura; Takako Hishiki; Tsuyoshi Nakanishi; Akiko Kubo; Yoshiko Nagahata; Mitsuyo Ohmura; Ayako Yachie-Kinoshita; Tomomi Matsuura; Takayuki Morikawa; Tomomi Nakamura; Mitsutoshi Setou; Makoto Suematsu
Journal:  Antioxid Redox Signal       Date:  2010-10       Impact factor: 8.401

5.  iAB-RBC-283: A proteomically derived knowledge-base of erythrocyte metabolism that can be used to simulate its physiological and patho-physiological states.

Authors:  Aarash Bordbar; Neema Jamshidi; Bernhard O Palsson
Journal:  BMC Syst Biol       Date:  2011-07-12

6.  Sickle hemoglobin disturbs normal coupling among erythrocyte O2 content, glycolysis, and antioxidant capacity.

Authors:  Stephen C Rogers; Jerlinda G C Ross; Andre d'Avignon; Lindsey B Gibbons; Vered Gazit; Mojibade N Hassan; Dylan McLaughlin; Sherraine Griffin; Tara Neumayr; Malcolm Debaun; Michael R DeBaun; Allan Doctor
Journal:  Blood       Date:  2013-01-07       Impact factor: 22.113

7.  Interaction of deoxyhemoglobin with the cytoplasmic domain of murine erythrocyte band 3.

Authors:  Martiana F Sega; Haiyan Chu; John Christian; Philip S Low
Journal:  Biochemistry       Date:  2012-04-06       Impact factor: 3.162

8.  A metabolic model of human erythrocytes: practical application of the E-Cell Simulation Environment.

Authors:  Ayako Yachie-Kinoshita; Taiko Nishino; Hanae Shimo; Makoto Suematsu; Masaru Tomita
Journal:  J Biomed Biotechnol       Date:  2010-06-28

9.  Hypotaurine is an Energy-Saving Hepatoprotective Compound against Ischemia-Reperfusion Injury of the Rat Liver.

Authors:  Tadayuki Sakuragawa; Takako Hishiki; Yuki Ueno; Satsuki Ikeda; Tomoyoshi Soga; Ayako Yachie-Kinoshita; Mayumi Kajimura; Makoto Suematsu
Journal:  J Clin Biochem Nutr       Date:  2010-02-27       Impact factor: 3.114

10.  Fluorescence assay of the interaction between hemoglobin and the cytoplasmic domain of erythrocyte membrane band 3.

Authors:  Martiana F Sega; Haiyan Chu; John A Christian; Philip S Low
Journal:  Blood Cells Mol Dis       Date:  2015-07-08       Impact factor: 3.039

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