Literature DB >> 19459785

The respiratory complexes I from the mitochondria of two Pichia species.

Hannah R Bridges1, Ljuban Grgic, Michael E Harbour, Judy Hirst.   

Abstract

NADH:ubiquinone oxidoreductase (complex I) is an entry point for electrons into the respiratory chain in many eukaryotes. It couples NADH oxidation and ubiquinone reduction to proton translocation across the mitochondrial inner membrane. Because complex I deficiencies occur in a wide range of neuromuscular diseases, including Parkinson's disease, there is a clear need for model eukaryotic systems to facilitate structural, functional and mutational studies. In the present study, we describe the purification and characterization of the complexes I from two yeast species, Pichia pastoris and Pichia angusta. They are obligate aerobes which grow to very high cell densities on simple medium, as yeast-like, spheroidal cells. Both Pichia enzymes catalyse inhibitor-sensitive NADH:ubiquinone oxidoreduction, display EPR spectra which match closely to those from other eukaryotic complexes I, and show patterns characteristic of complex I in SDS/PAGE analysis. Mass spectrometry was used to identify several canonical complex I subunits. Purified P. pastoris complex I has a particularly high specific activity, and incorporating it into liposomes demonstrates that NADH oxidation is coupled to the generation of a protonmotive force. Interestingly, the rate of NADH-induced superoxide production by the Pichia enzymes is more than twice as high as that of the Bos taurus enzyme. Our results both resolve previous disagreement about whether Pichia species encode complex I, furthering understanding of the evolution of complex I within dikarya, and they provide two new, robust and highly active model systems for study of the structure and catalytic mechanism of eukaryotic complexes I.

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Year:  2009        PMID: 19459785     DOI: 10.1042/BJ20090492

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  15 in total

1.  The reaction of NADPH with bovine mitochondrial NADH:ubiquinone oxidoreductase revisited: I. Proposed consequences for electron transfer in the enzyme.

Authors:  Simon P J Albracht
Journal:  J Bioenerg Biomembr       Date:  2010-07-14       Impact factor: 2.945

Review 2.  Exploiting mitochondria as targets for the development of new antifungals.

Authors:  Dongmei Li; Richard Calderone
Journal:  Virulence       Date:  2016-05-18       Impact factor: 5.882

3.  Fungal-specific subunits of the Candida albicans mitochondrial complex I drive diverse cell functions including cell wall synthesis.

Authors:  Xiaodong She; Kasra Khamooshi; Yin Gao; Yongnian Shen; Yuxia Lv; Richard Calderone; William Fonzi; Weida Liu; Dongmei Li
Journal:  Cell Microbiol       Date:  2015-04-16       Impact factor: 3.715

4.  The reaction of NADPH with bovine mitochondrial NADH:ubiquinone oxidoreductase revisited: II. Comparison of the proposed working hypothesis with literature data.

Authors:  Simon P J Albracht
Journal:  J Bioenerg Biomembr       Date:  2010-07-15       Impact factor: 2.945

5.  The subunit composition of mitochondrial NADH:ubiquinone oxidoreductase (complex I) from Pichia pastoris.

Authors:  Hannah R Bridges; Ian M Fearnley; Judy Hirst
Journal:  Mol Cell Proteomics       Date:  2010-07-07       Impact factor: 5.911

6.  Mössbauer spectroscopy on respiratory complex I: the iron-sulfur cluster ensemble in the NADH-reduced enzyme is partially oxidized.

Authors:  Hannah R Bridges; Eckhard Bill; Judy Hirst
Journal:  Biochemistry       Date:  2011-12-09       Impact factor: 3.162

7.  The deactive form of respiratory complex I from mammalian mitochondria is a Na+/H+ antiporter.

Authors:  Philippa G Roberts; Judy Hirst
Journal:  J Biol Chem       Date:  2012-08-01       Impact factor: 5.157

8.  Effects of metformin and other biguanides on oxidative phosphorylation in mitochondria.

Authors:  Hannah R Bridges; Andrew J Y Jones; Michael N Pollak; Judy Hirst
Journal:  Biochem J       Date:  2014-09-15       Impact factor: 3.857

9.  Integration and Validation of the Genome-Scale Metabolic Models of Pichia pastoris: A Comprehensive Update of Protein Glycosylation Pathways, Lipid and Energy Metabolism.

Authors:  Màrius Tomàs-Gamisans; Pau Ferrer; Joan Albiol
Journal:  PLoS One       Date:  2016-01-26       Impact factor: 3.240

10.  Investigating the function of [2Fe-2S] cluster N1a, the off-pathway cluster in complex I, by manipulating its reduction potential.

Authors:  James A Birrell; Klaudia Morina; Hannah R Bridges; Thorsten Friedrich; Judy Hirst
Journal:  Biochem J       Date:  2013-11-15       Impact factor: 3.857

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