Literature DB >> 14559826

Decreased mitochondrial nitric oxide synthase activity and hydrogen peroxide relate persistent tumoral proliferation to embryonic behavior.

Soledad Galli1, Mariana Inés Labato, Elisa Bal de Kier Joffé, María Cecilia Carreras, Juan José Poderoso.   

Abstract

Differential expression and activity of constitutive mitochondrial nitric oxide synthase (mtNOS) in the mitochondrial compartment is followed by significant variations in matrix nitric oxide (NO) steady-state concentration. The mitochondrial utilization of NO involves the production of superoxide anion and H(2)O(2), a species freely diffusible outside the mitochondria that participates in the modulation of cell proliferation and apoptosis and in cell transformation and cancer. On these bases, we analyzed the modulation of mtNOS in the frame of cellular redox state in M3, MM3, and P07 murine tumors and their respective cell lines, as compared with normal proliferating and quiescent tissues. The results showed that: (a) tumoral and proliferating mitochondria only retain 10-50% of the activity of complexes I, II-III, and IV and Mn-SOD of quiescent tissues; (b) normal proliferating tissues, like embryonic liver or pregnant mammary gland, have 10-20% of mtNOS expression and activity and mitochondrial H(2)O(2) yield than quiescent nonproliferating tissues; (c) similarly but irrespective of mtNOS expression, tumoral mitochondria have no >5% of mtNOS activity and H(2)O(2) yield of mature tissues; and (d) in opposition to stable tissues, both tumoral and normal proliferating cells exhibit high cyclin D1 expression and low pro-apoptotic p38mitogen-activated protein kinase activity. Dually, H(2)O(2) stimulated tumor cell proliferation (<10 microM) or markedly inhibited it (>10 microM) with parallel variations of cyclin D1, phospho-extracellular-regulated kinase1/2, and phospho-p38mitogen-activated protein kinase. It is surmised that decreased oxidative phosphorylation, defective tumoral mtNOS, and low mitochondrial NO-dependent H(2)O(2) may be a platform to link persistent tumoral growth to embryonic behavior.

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Year:  2003        PMID: 14559826

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  12 in total

Review 1.  Mitochondrial regulation of cell cycle and proliferation.

Authors:  Valeria Gabriela Antico Arciuch; María Eugenia Elguero; Juan José Poderoso; María Cecilia Carreras
Journal:  Antioxid Redox Signal       Date:  2012-01-13       Impact factor: 8.401

Review 2.  Small mitochondria-targeting molecules as anti-cancer agents.

Authors:  Feng Wang; Marcia A Ogasawara; Peng Huang
Journal:  Mol Aspects Med       Date:  2009-12-06

3.  Atrophic gastritis: deficient complex I of the respiratory chain in the mitochondria of corpus mucosal cells.

Authors:  Marju Gruno; Nadezhda Peet; Andres Tein; Riina Salupere; Meeli Sirotkina; Julio Valle; Ants Peetsalu; Enn K Seppet
Journal:  J Gastroenterol       Date:  2008-10-29       Impact factor: 7.527

4.  Akt1 intramitochondrial cycling is a crucial step in the redox modulation of cell cycle progression.

Authors:  Valeria Gabriela Antico Arciuch; Soledad Galli; María Clara Franco; Philip Y Lam; Enrique Cadenas; María Cecilia Carreras; Juan José Poderoso
Journal:  PLoS One       Date:  2009-10-21       Impact factor: 3.240

5.  Effect of ω-3 and ω-9 fatty acid rich oils on lipoxygenases and cyclooxygenases enzymes and on the growth of a mammary adenocarcinoma model.

Authors:  Andrea Comba; Damian M Maestri; María A Berra; Carolina Paola Garcia; Undurti N Das; Aldo R Eynard; María E Pasqualini
Journal:  Lipids Health Dis       Date:  2010-10-08       Impact factor: 3.876

Review 6.  Involvement of free radicals in breast cancer.

Authors:  Sandra Ríos-Arrabal; Francisco Artacho-Cordón; Josefa León; Elisa Román-Marinetto; María Del Mar Salinas-Asensio; Irene Calvente; Maria Isabel Núñez
Journal:  Springerplus       Date:  2013-08-27

7.  A new paradigm for MAPK: structural interactions of hERK1 with mitochondria in HeLa cells.

Authors:  Soledad Galli; Olaf Jahn; Reiner Hitt; Doerte Hesse; Lennart Opitz; Uwe Plessmann; Henning Urlaub; Juan Jose Poderoso; Elizabeth A Jares-Erijman; Thomas M Jovin
Journal:  PLoS One       Date:  2009-10-22       Impact factor: 3.240

8.  Pathological alteration in the choroid plexus of Alzheimer's disease: implication for new therapy approaches.

Authors:  Agnieszka Krzyzanowska; Eva Carro
Journal:  Front Pharmacol       Date:  2012-05-03       Impact factor: 5.810

9.  Apoptosis resistance in HIV-1 persistently-infected cells is independent of active viral replication and involves modulation of the apoptotic mitochondrial pathway.

Authors:  Pablo N Fernández Larrosa; Diego O Croci; Diego A Riva; Mariel Bibini; Renata Luzzi; Mónica Saracco; Susana E Mersich; Gabriel A Rabinovich; Liliana Martínez Peralta
Journal:  Retrovirology       Date:  2008-02-08       Impact factor: 4.602

10.  Tumor cell phenotype is sustained by selective MAPK oxidation in mitochondria.

Authors:  Soledad Galli; Valeria Gabriela Antico Arciuch; Cecilia Poderoso; Daniela Paola Converso; Qiongqiong Zhou; Elisa Bal de Kier Joffé; Enrique Cadenas; Jorge Boczkowski; María Cecilia Carreras; Juan José Poderoso
Journal:  PLoS One       Date:  2008-06-11       Impact factor: 3.240

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