Reduction of Caenorhabditis elegans frataxin increases sensitivity to oxidative stress, reduces lifespan, and causes lethality in a mitochondrial complex II mutant
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R. Vázquez-Manrique | P. Gonzalez-Cabo | Sheila Ros | Homera Aziz | Howard A. Baylis | Francesc Palau
[1] R. Vázquez-Manrique,et al. Frataxin interacts functionally with mitochondrial electron transport chain proteins. , 2005, Human molecular genetics.
[2] S. Murakami,et al. The effects of aging and oxidative stress on learning behavior in C. elegans , 2005, Neurobiology of Aging.
[3] I. Condò,et al. Reduced expression of frataxin extends the lifespan of Caenorhabditis elegans , 2005, Aging cell.
[4] M. Koenig,et al. Friedreich ataxia: the oxidative stress paradox. , 2005, Human molecular genetics.
[5] M. V. Busi,et al. Functional and molecular characterization of the frataxin homolog from Arabidopsis thaliana , , 2004, FEBS letters.
[6] A. Dancis,et al. Candida albicans lacking the frataxin homologue: a relevant yeast model for studying the role of frataxin , 2004, Molecular microbiology.
[7] M. Wood,et al. RNA interference: from model organisms towards therapy for neural and neuromuscular disorders. , 2004, Human molecular genetics.
[8] K. Caldwell,et al. Epileptic-like convulsions associated with LIS-1 in the cytoskeletal control of neurotransmitter signaling in Caenorhabditis elegans. , 2004, Human molecular genetics.
[9] Heather A. O'Neill,et al. Frataxin Acts as an Iron Chaperone Protein to Modulate Mitochondrial Aconitase Activity , 2004, Science.
[10] J. Cowan,et al. Frataxin-mediated Iron Delivery to Ferrochelatase in the Final Step of Heme Biosynthesis* , 2004, Journal of Biological Chemistry.
[11] E. Kayser,et al. The effects of complex I function and oxidative damage on lifespan and anesthetic sensitivity in Caenorhabditis elegans , 2004, Mechanisms of Ageing and Development.
[12] R. Contreras,et al. Expression of the human ferritin light chain in a frataxin mutant yeast affects ageing and cell death , 2004, Experimental Gerontology.
[13] Alejandro Chavez,et al. Genome-wide RNA interference screen identifies previously undescribed regulators of polyglutamine aggregation. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[14] R. Anson,et al. Mitochondrial influence on aging rate in Caenorhabditis elegans , 2004, Aging cell.
[15] F. Foury,et al. Mitochondrial functional interactions between frataxin and Isu1p, the iron–sulfur cluster scaffold protein, in Saccharomyces cerevisiae , 2004, FEBS letters.
[16] G. Lithgow,et al. Oxidative stress in Caenorhabditis elegans: protective effects of superoxide dismutase/catalase mimetics , 2003, Aging cell.
[17] M. Brini,et al. Ca2+ signalling in mitochondria: mechanism and role in physiology and pathology , 2003 .
[18] R. Lill,et al. An interaction between frataxin and Isu1/Nfs1 that is crucial for Fe/S cluster synthesis on Isu1 , 2003, EMBO reports.
[19] A. Akatsuka,et al. A Complex II Defect Affects Mitochondrial Structure, Leading to ced-3- and ced-4-dependent Apoptosis and Aging* , 2003, Journal of Biological Chemistry.
[20] L. Ségalat. Dystrophin and functionally related proteins in the nematode Caenorhabditis elegans , 2002, Neuromuscular Disorders.
[21] Zhixin Wu,et al. Ginkgo biloba extract EGb 761 increases stress resistance and extends life span of Caenorhabditis elegans. , 2002, Cellular and molecular biology.
[22] Jean Thierry-Mieg,et al. A global analysis of Caenorhabditis elegans operons , 2002, Nature.
[23] Oliver Hobert,et al. PCR fusion-based approach to create reporter gene constructs for expression analysis in transgenic C. elegans. , 2002, BioTechniques.
[24] A. Blamire,et al. Cardiac energetics are abnormal in Friedreich ataxia patients in the absence of cardiac dysfunction and hypertrophy: an in vivo 31P magnetic resonance spectroscopy study. , 2001, Cardiovascular research.
[25] C. Gellera,et al. Frataxin expression rescues mitochondrial dysfunctions in FRDA cells. , 2001, Human molecular genetics.
[26] E. Kayser,et al. Mitochondrial mutations differentially affect aging, mutability and anesthetic sensitivity in Caenorhabditis elegans , 2001, Mechanisms of Ageing and Development.
[27] P. Kuwabara,et al. The use of functional genomics in C. elegans for studying human development and disease , 2001, Journal of Inherited Metabolic Disease.
[28] J. Melki,et al. Mouse models for Friedreich ataxia exhibit cardiomyopathy, sensory nerve defect and Fe-S enzyme deficiency followed by intramitochondrial iron deposits , 2001, Nature Genetics.
[29] J. Dichgans,et al. Oxidative stress in patients with Friedreich ataxia , 2000, Neurology.
[30] C. Kahn,et al. Frataxin activates mitochondrial energy conversion and oxidative phosphorylation. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[31] K. Usdin,et al. The GAA*TTC triplet repeat expanded in Friedreich's ataxia impedes transcription elongation by T7 RNA polymerase in a length and supercoil dependent manner. , 2000, Nucleic acids research.
[32] K. Fischbeck,et al. Inactivation of the Friedreich ataxia mouse gene leads to early embryonic lethality without iron accumulation. , 2000, Human molecular genetics.
[33] D. Sattelle,et al. A role for Caenorhabditis elegans in understanding the function and interactions of human disease genes. , 2000, Human molecular genetics.
[34] M. Koenig,et al. Recent advances in the molecular pathogenesis of Friedreich ataxia. , 2000, Human molecular genetics.
[35] M. Labouesse,et al. RNA interference can target pre-mRNA: consequences for gene expression in a Caenorhabditis elegans operon. , 1999, Genetics.
[36] Denise S Walker,et al. The Caenorhabditis elegans orthologue of the human gene responsible for spinal muscular atrophy is a maternal product critical for germline maturation and embryonic viability. , 1999, Human molecular genetics.
[37] Mary A. Logan,et al. DEPARTMENT OF BIOLOGY , 2003 .
[38] F. Foury. Low iron concentration and aconitase deficiency in a yeast frataxin homologue deficient strain , 1999, FEBS letters.
[39] C. Gellera,et al. The Friedreich's ataxia mutation confers cellular sensitivity to oxidant stress which is rescued by chelators of iron and calcium and inhibitors of apoptosis. , 1999, Human molecular genetics.
[40] Michio Tsuda,et al. A mutation in succinate dehydrogenase cytochrome b causes oxidative stress and ageing in nematodes , 1998, Nature.
[41] A. Fire,et al. Potent and specific genetic interference by double-stranded RNA in Caenorhabditis elegans , 1998, Nature.
[42] P Trouillas,et al. Frataxin is reduced in Friedreich ataxia patients and is associated with mitochondrial membranes. , 1997, Human molecular genetics.
[43] A. Munnich,et al. Aconitase and mitochondrial iron–sulphur protein deficiency in Friedreich ataxia , 1997, Nature Genetics.
[44] Thomas L. Madden,et al. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. , 1997, Nucleic acids research.
[45] Michel Koenig,et al. Studies of human, mouse and yeast homologues indicate a mitochondrial function for frataxin , 1997, Nature Genetics.
[46] Robert B. Wilson,et al. Respiratory deficiency due to loss of mitochondrial DNA in yeast lacking the frataxin homologue , 1997, Nature Genetics.
[47] F. Foury,et al. Deletion of the yeast homologue of the human gene associated with Friedreich's ataxia elicits iron accumulation in mitochondria , 1997, FEBS letters.
[48] M. Pandolfo,et al. Regulation of mitochondrial iron accumulation by Yfh1p, a putative homolog of frataxin. , 1997, Science.
[49] P. Patel,et al. Atypical Friedreich ataxia caused by compound heterozygosity for a novel missense mutation and the GAA triplet-repeat expansion. , 1997, American journal of human genetics.
[50] N. Ishii,et al. Properties of an oxygen-sensitive mutant mev-3 of the nematode Caenorhabditis elegans. , 1996, Mutation research.
[51] P. Patel,et al. Friedreich's Ataxia: Autosomal Recessive Disease Caused by an Intronic GAA Triplet Repeat Expansion , 1996, Science.
[52] M. Gonzalo Claros,et al. MitoProt, a Macintosh application for studying mitochondrial proteins , 1995, Comput. Appl. Biosci..
[53] C. Li,et al. apl-1, a Caenorhabditis elegans gene encoding a protein related to the human beta-amyloid protein precursor. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[54] C. Anderson,et al. A turn of the worm , 1992, Nature.
[55] V. Ambros,et al. Efficient gene transfer in C.elegans: extrachromosomal maintenance and integration of transforming sequences. , 1991, The EMBO journal.
[56] N. Ishii,et al. A methyl viologen-sensitive mutant of the nematode Caenorhabditis elegans. , 1990, Mutation research.
[57] E. Park,et al. The Caenorhabditis elegans rol-6 gene, which interacts with the sqt-1 collagen gene to determine organismal morphology, encodes a collagen , 1990, Molecular and cellular biology.
[58] L. Avery,et al. Pharyngeal pumping continues after laser killing of the pharyngeal nervous system of C. elegans , 1989, Neuron.
[59] N. Munakata. [Genetics of Caenorhabditis elegans]. , 1989, Tanpakushitsu kakusan koso. Protein, nucleic acid, enzyme.
[60] D. H. Mitchell,et al. A simple method for maintaining large, aging populations of Caenorhabditis elegans , 1980, Mechanisms of Ageing and Development.
[61] Shin Kwak,et al. FRIEDREICH'S ATAXIA , 1917, Nihon rinsho. Japanese journal of clinical medicine.
[62] M. Duchen,et al. Interplay between mitochondria and cellular calcium signalling , 2004, Molecular and Cellular Biochemistry.
[63] W. Young,et al. Rapid amplification of cDNA ends. , 2003, Methods in molecular biology.
[64] M. Brini,et al. Ca(2+) signalling in mitochondria: mechanism and role in physiology and pathology. , 2003, Cell calcium.
[65] A. Coulson,et al. RNA-Mediated Interference as a Tool for Identifying Drug Targets , 2001, American journal of pharmacogenomics : genomics-related research in drug development and clinical practice.
[66] Leon Avery,et al. Feeding and Defecation , 1997 .
[67] D. Riddle,et al. Feeding and Defecation -- C. elegans II , 1997 .
[68] Thomas Blumenthal,et al. RNA Processing and Gene Structure , 1997 .
[69] Andrew Fire,et al. Chapter 19 DNA Transformation , 1995 .
[70] R. Porter,et al. DNA transformation. , 1988, Methods in enzymology.