• Version:
  • 10.5 (archived version)
STRINGSTRING

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Relevant publications mentioning your query species (Homo sapiens):

  • Direct regulation of mitochondrial RNA synthesis by thyroid hormone.
    Enriquez JA, Fernandez-Silva P, Garrido-Perez N, Lopez-Perez MJ, Perez-Martos A, Montoya J
    Mol Cell Biol. 19(1):657-70 (1999).
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  • Abstract:
    We have analyzed the influence of in vivo treatment and in vitro addition of thyroid hormone on in organello mitochondrial DNA (mtDNA) transcription and, in parallel, on the in organello footprinting patterns at the mtDNA regions involved in the regulation of transcription. We found that thyroid hormone modulates mitochondrial RNA levels and the mRNA/rRNA ratio by influencing the transcriptional rate. In addition, we found conspicuous differences between the mtDNA dimethyl sulfate footprinting patterns of mitochondria derived from euthyroid and hypothyroid rats at the transcription initiation sites but not at the mitochondrial transcription termination factor (mTERF) binding region. Furthermore, direct addition of thyroid hormone to the incubation medium of mitochondria isolated from hypothyroid rats restored the mRNA/rRNA ratio found in euthyroid rats as well as the mtDNA footprinting patterns at the transcription initiation area. Therefore, we conclude that the regulatory effect of thyroid hormone on mitochondrial transcription is partially exerted by a direct influence of the hormone on the mitochondrial transcription machinery. Particularly, the influence on the mRNA/rRNA ratio is achieved by selective modulation of the alternative H-strand transcription initiation sites and does not require the previous activation of nuclear genes. These results provide the first functional demonstration that regulatory signals, such as thyroid hormone, that modify the expression of nuclear genes can also act as primary signals for the transcriptional apparatus of mitochondria.
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  • Colour vision of the foraging swallowtail butterfly papilio xuthus
    Kinoshita M, Shimada N, Arikawa K
    J Exp Biol. 202 (Pt 2):95-102 (1999).
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  • Alteration of dark respiration and reduction of phototrophic growth in a mitochondrial DNA deletion mutant of Chlamydomonas lacking cob, nd4, and the 3' end of nd5 (
    )
    .
    Duby F, Matagne RF
    Plant Cell. 11(1):115-25 (1999).
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  • Nuclear-recessive mutations of factors involved in mitochondrial translation are responsible for age-related respiration deficiency of human skin fibroblasts.
    Isobe K, Ito S, Hosaka H, Iwamura Y, Kondo H, Kagawa Y, Hayashi JI
    J Biol Chem. 273(8):4601-6 (1998).
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  • Codon reassignment and amino acid composition in hemichordate mitochondria.
    Castresana J, Feldmaier-Fuchs G, Paeaebo S
    Proc Natl Acad Sci U S A. 95(7):3703-7 (1998).
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Relevant publications mentioning other organisms:

  • The rearranged mitochondrial genome of Leptopilina boulardi (Hymenoptera: Figitidae), a parasitoid wasp of Drosophila.
    Oliveira DS, Gomes TM, Loreto EL
    Genet Mol Biol. 39(4):611-615 (2016).
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  • Genomes of Strongylocentrotus franciscanus and Lytechinus variegatus: are there any genomic explanations for the two order of magnitude difference in the lifespan of sea urchins?
    Sergiev PV, Artemov AA, Prokhortchouk EB, Dontsova OA, Berezkin GV
    Aging (Albany NY). 8(2):260-71 (2016).
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  • Comparative Mt Genomics of the Tipuloidea (Diptera: Nematocera: Tipulomorpha) and Its Implications for the Phylogeny of the Tipulomorpha.
    Zhang X, Kang Z, Mao M, Li X, Cameron SL, Jong Hd, Wang M, Yang D
    PLoS One. 11(6):e0158167 (2016).
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  • LMAP: Lightweight Multigene Analyses in PAML.
    Maldonado E, Almeida D, Escalona T, Khan I, Vasconcelos V, Antunes A
    BMC Bioinformatics. 17(1):354 (2016).
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  • Complete mitochondrial genomes of living and extinct pigeons revise the timing of the columbiform radiation.
    Soares AE, Novak BJ, Haile J, Heupink TH, Fjeldsaa J, Gilbert MT, Poinar H, Church GM, Shapiro B
    BMC Evol Biol. 16(1):230 (2016).
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  •  ND2, ND5 
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[showing publications for 'MT-ND2' only]
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