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Volumn 40, Issue 3, 2008, Pages 207-212
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Genetic strategies for dissecting mammalian and Drosophila voltage-dependent anion channel functions
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Author keywords
Animal models; Drosophila; Mitochondria; Porin; Voltage dependent Anion Channel
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Indexed keywords
DROSOPHILA PROTEIN;
MEMBRANE PROTEIN;
MITOCHONDRIAL PROTEIN;
PHOSPHOTRANSFERASE;
PORIN;
VOLTAGE DEPENDENT ANION CHANNEL;
APOPTOSIS;
ARTICLE;
CENTRAL NERVOUS SYSTEM;
CYTOSOL;
DROSOPHILA MELANOGASTER;
ENERGY METABOLISM;
GENE EXPRESSION;
GENE LOCUS;
GENE SEQUENCE;
GENETIC ORGANIZATION;
GENOME ANALYSIS;
GLUCOSE HOMEOSTASIS;
KNOCKOUT MOUSE;
MALE GENITAL SYSTEM;
MAMMALIAN GENETICS;
MEMBRANE CHANNEL;
MITOCHONDRIAL MEMBRANE;
MOLECULAR GENETICS;
MOLECULAR INTERACTION;
NONHUMAN;
OUTER MEMBRANE;
PHENOTYPE;
PROTEIN ANALYSIS;
PROTEIN FAMILY;
PROTEIN FUNCTION;
SEQUENCE HOMOLOGY;
ANIMALS;
APOPTOSIS;
CYTOSOL;
DROSOPHILA MELANOGASTER;
DROSOPHILA PROTEINS;
EVOLUTION, MOLECULAR;
GENOME;
HUMANS;
MITOCHONDRIAL PROTEINS;
PHOSPHOTRANSFERASES;
PROTEIN ISOFORMS;
VOLTAGE-DEPENDENT ANION CHANNELS;
ANIMALIA;
DROSOPHILA MELANOGASTER;
EUKARYOTA;
HEXAPODA;
MAMMALIA;
MUS;
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EID: 52449097233
PISSN: 0145479X
EISSN: 15736881
Source Type: Journal
DOI: 10.1007/s10863-008-9146-x Document Type: Article |
Times cited : (38)
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References (40)
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