Literature DB >> 17179207

A new activating role for CO in cardiac mitochondrial biogenesis.

Hagit B Suliman1, Martha S Carraway, Lynn G Tatro, Claude A Piantadosi.   

Abstract

To investigate a possible new physiological role of carbon monoxide (CO), an endogenous gas involved in cell signaling and cytotoxicity, we tested the hypothesis that the mitochondrial generation of reactive oxygen species by CO activates mitochondrial biogenesis in the heart. In mice, transient elevations of cellular CO by five- to 20-fold increased the copy number of cardiac mitochondrial DNA, the content of respiratory complex I-V and interfibrillar mitochondrial density within 24 hours. Mitochondrial biogenesis is activated by gene and protein expression of the nuclear respiratory factor 1 (NRF1) and NRF2, of peroxisome proliferator-activated receptor gamma co-activator-1alpha, and of mitochondrial transcription factor A (TFAM), which augmented the copy number of mitochondrial DNA (mtDNA). This is independent of nitric oxide synthase (NOS), as demonstrated by the identical responses in wild-type and endothelial NOS (eNOS)-deficient mice, and by the inhibition of inducible NOS (iNOS). In the heart and in isolated cardiomyocytes, CO activation involved both guanylate cyclase and the pro-survival kinase Akt/PKB. Akt activation was facilitated by mitochondrial binding of CO and by production of hydrogen peroxide (H(2)O(2)). Interference with Akt activity by blocking PI 3-kinase and by mitochondrial targeting of catalase to scavenge H(2)O(2) prevented binding of NRF1 to the Tfam promoter, thereby connecting mitochondrial H(2)O(2) to the pathway leading to mtDNA replication. The findings disclose mitochondrial CO and H(2)O(2) as new activating factors in cardiac mitochondrial biogenesis.

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Year:  2006        PMID: 17179207     DOI: 10.1242/jcs.03318

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  89 in total

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2.  Activation of mitochondrial biogenesis by heme oxygenase-1-mediated NF-E2-related factor-2 induction rescues mice from lethal Staphylococcus aureus sepsis.

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3.  Akt activation improves oxidative phosphorylation in renal proximal tubular cells following nephrotoxicant injury.

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4.  Mitochondrial quality-control dysregulation in conditional HO-1-/- mice.

Authors:  Hagir B Suliman; Jeffrey E Keenan; Claude A Piantadosi
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5.  NADPH Oxidase 4 (Nox4) Suppresses Mitochondrial Biogenesis and Bioenergetics in Lung Fibroblasts via a Nuclear Factor Erythroid-derived 2-like 2 (Nrf2)-dependent Pathway.

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Review 6.  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
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7.  Mitochondrial biogenesis and the development of diabetic retinopathy.

Authors:  Julia M Santos; Shikha Tewari; Andrew F X Goldberg; Renu A Kowluru
Journal:  Free Radic Biol Med       Date:  2011-08-25       Impact factor: 7.376

8.  Mitochondrial biogenesis in the pulmonary vasculature during inhalational lung injury and fibrosis.

Authors:  Martha S Carraway; Hagir B Suliman; Corrine Kliment; Karen E Welty-Wolf; Tim D Oury; Claude A Piantadosi
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9.  Resveratrol induces hepatic mitochondrial biogenesis through the sequential activation of nitric oxide and carbon monoxide production.

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Journal:  Antioxid Redox Signal       Date:  2013-11-16       Impact factor: 8.401

Review 10.  Use of carbon monoxide as a therapeutic agent: promises and challenges.

Authors:  Roberta Foresti; Mohamed G Bani-Hani; Roberto Motterlini
Journal:  Intensive Care Med       Date:  2008-02-20       Impact factor: 17.440

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