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Mitochondrial DNA Part A
DNA Mapping, Sequencing, and Analysis
Volume 29, 2018 - Issue 3
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Research Article

Genetic diversity of ATP8 and ATP6 genes is associated with high-altitude adaptation in yak

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Pages 385-393 | Received 17 Dec 2016, Accepted 18 Jan 2017, Published online: 17 Mar 2017

References

  • Anderson S, Bankier AT, Barrell BG, de Bruijn MH, Coulson AR, Drouin J, Eperon IC, Nierlich DP, Roe BA, Sanger F, et al. 1981. Sequence and organization of the human mitochondrial genome. Nature. 290:457–465.
  • Bakewell MA, Shi P, Zhang J. 2007. More genes underwent positive selection in chimpanzee evolution than in human evolution. Proc Natl Acad Sci USA. 104:7489–7494.
  • Bao H, Zhao C, Li J, Wu C. 2008. Sequencing and alignment of mitochondrial genomes of tibetan chicken and two lowland chicken breeds. Sci China C Life Sci. 51:47–51.
  • Boominathan A, Vanhoozer S, Basisty N, Powers K, Crampton AL, Wang X, Friedricks N, Schilling B, Brand MD, O'Connor MS. 2016. Stable nuclear expression of atp8 and atp6 genes rescues a mtdna complex v null mutant. Nucleic Acids Res. 44:9342–9357.
  • Cao SY, Wu XB, Yan P, Hu YL, Su X, Jiang ZG. 2006. Complete nucleotide sequences and gene organization of mitochondrial genome of bufo gargarizans. Mitochondrion. 6:186–193.
  • Chepelev NL, Willmore WG. 2011. Regulation of iron pathways in response to hypoxia. Free Radic Biol Med. 50:645–666.
  • Cross RL, Muller V. 2004. The evolution of a-, f-, and v-type ATP synthases and atpases: reversals in function and changes in the h+/atp coupling ratio. FEBS Lett. 576:1–4.
  • Dewey RE, Schuster AM, Levings CS, Timothy DH. 1985. Nucleotide sequence of f(0)-atpase proteolipid (subunit 9) gene of maize mitochondria. Proc Natl Acad Sci USA. 82:1015–1019.
  • Eipel C, Hildebrandt A, Scholz B, Schyschka L, Minor T, Kreikemeyer B, Ibrahim SM, Vollmar B. 2011. Mutation of mitochondrial atp8 gene improves hepatic energy status in a murine model of acute endotoxemic liver failure. Life Sci. 88:343–349.
  • Enns R, Criddle RS. 1977. Investigation of the structural arrangement of the protein subunits of mitochondrial atpase. Arch Biochem Biophys. 183:742–752.
  • Gnaiger E. 2003. Oxygen conformance of cellular respiration. A perspective of mitochondrial physiology. Adv Exp Med Biol. 543:39–55.
  • Guo S, Savolainen P, Su J, Zhang Q, Qi D, Zhou J, Zhong Y, Zhao X, Liu J. 2006. Origin of mitochondrial DNA diversity of domestic yaks. BMC Evol Biol. 6:73.
  • Hartzog PE, Cain BD. 1993. Mutagenic analysis of the a subunit of the f1f0 atp synthase in escherichia coli: Gln-252 through tyr-263. J Bacteriol. 175:1337–1343.
  • Holt IJ, Harding AE, Petty RK, Morgan-Hughes JA. 1990. A new mitochondrial disease associated with mitochondrial DNA heteroplasmy. Am J Hum Genet. 46:428–433.
  • Horemans N, Asard H, Caubergs RJ. 1994. The role of ascorbate free radical as an electron acceptor to cytochrome b-mediated trans-plasma membrane electron transport in higher plants. Plant Physiol. 104:1455–1458.
  • Houstek J, Klement P, Hermanska J, Houstkova H, Hansikova H, Van den Bogert C, Zeman J. 1995. Altered properties of mitochondrial atp-synthase in patients with a T-G mutation in the ATPase 6 (subunit a) gene at position 8993 of mtDNA. Biochim Biophys Acta. 1271:349–357.
  • Houstek J, Pickova A, Vojtiskova A, Mracek T, Pecina P, Jesina P. 2006. Mitochondrial diseases and genetic defects of ATP synthase. Biochim Biophys Acta. 1757:1400–1405.
  • Jesina P, Tesarova M, Fornuskova D, Vojtiskova A, Pecina P, Kaplanova V, Hansikova H, Zeman J, Houstek J. 2004. Diminished synthesis of subunit a (ATP6) and altered function of ATP synthase and cytochrome c oxidase due to the mtdna 2 bp microdeletion of ta at positions 9205 and 9206. Biochem J. 383:561–571.
  • Lamminen T, Majander A, Juvonen V, Wikstrom M, Aula P, Nikoskelainen E, Savontous ML. 1995. A mitochondrial mutation at nt 9101 in the atp synthase 6 gene associated with deficient oxidative phosphorylation in a family with leber hereditary optic neuroretinopathy. Am J Hum Genet. 56:1238–1240.
  • Lane DJ, Bae DH, Merlot AM, Sahni S, Richardson DR. 2015. Duodenal cytochrome b (dcytb) in iron metabolism: an update on function and regulation. Nutrients. 7:2274–2296.
  • Nakanishi N, Rahman MM, Sakamoto Y, Takigami T, Kobayashi K, Hori H, Hase T, Park SY, Tsubaki M. 2009. Importance of the conserved lysine 83 residue of zea mays cytochrome b(561) for ascorbate-specific transmembrane electron transfer as revealed by site-directed mutagenesis studies. Biochemistry. 48:10665–10678.
  • Nijtmans LG, Henderson NS, Attardi G, Holt IJ. 2001. Impaired ATP synthase assembly associated with a mutation in the human atp synthase subunit 6 gene. J Biol Chem. 276:6755–6762.
  • Njus D, Kelley PM, Harnadek GJ, Pacquing YV. 1987. Mechanism of ascorbic acid regeneration mediated by cytochrome b561. Ann N Y Acad Sci. 493:108–119.
  • Njus D, Knoth J, Cook C, Kelly PM. 1983. Electron transfer across the chromaffin granule membrane. J Biol Chem. 258:27–30.
  • Puddu P, Barboni P, Mantovani V, Montagna P, Cerullo A, Bragliani M, Molinotti C, Caramazza R. 1993. Retinitis pigmentosa, ataxia, and mental retardation associated with mitochondrial DNA mutation in an Italian family. Br J Ophthalmol. 77:84–88.
  • Scott GR, Richards JG, Milsom WK. 2009. Control of respiration in flight muscle from the high-altitude bar-headed goose and low-altitude birds. Am J Physiol Regul Integr Comp Physiol. 297:R1066–R1074.
  • Scott GR, Schulte PM, Egginton S, Scott AL, Richards JG, Milsom WK. 2011. Molecular evolution of cytochrome c oxidase underlies high-altitude adaptation in the bar-headed goose. Mol Biol Evol. 28:351–363.
  • Su D, Asard H. 2006. Three mammalian cytochromes b561 are ascorbate-dependent ferrireductases. FEBS J. 273:3722–3734.
  • Santore MT, McClintock DS, Lee VY. 2002. Anoxia-induced apoptosis occurs through a mitochondria-dependent pathway in lung epithelial cells. Am J Physiol Lung Cell Mol Physiol. 282:727–734.
  • Tatuch Y, Pagon RA, Vlcek B, Roberts R, Korson M, Robinson BH. 1994. The 8993 mtDNA mutation: heteroplasmy and clinical presentation in three families. Eur J Hum Genet. 2:35–43.
  • Tatuch Y, Robinson BH. 1993. The mitochondrial DNA mutation at 8993 associated with narp slows the rate of ATP synthesis in isolated lymphoblast mitochondria. Biochem Biophys Res Commun. 192:124–128.
  • Todd RD, Douglas MG. 1981. A model for the structure of the yeast mitochondrial adenosine triphosphatase complex. J Biol Chem. 256:6984–6989.
  • Tzagoloff A, Barrientos A, Neupert W, Herrmann JM. 2004. ATP10p assists assembly of ATP6p into the f0 unit of the yeast mitochondrial ATPase. J Biol Chem. 279:19775–19780.
  • Wakefield LM, Cass AE, Radda GK. 1986. Functional coupling between enzymes of the chromaffin granule membrane. J Biol Chem. 261:9739–9745.
  • Ware SM, El-Hassan N, Kahler SG, Zhang Q, Ma YW, Miller E, Wong B, Spicer RL, Craigen WJ, Kozel BA, et al. 2009. Infantile cardiomyopathy caused by a mutation in the overlapping region of mitochondrial ATPase 6 and 8 genes. J Med Genet. 46:308–314.
  • Weiss H, Wester-Rosenloef L, Koch C, Koch F, Baltrusch S, Tiedge M, Ibrahim S. 2012. The mitochondrial ATP8 mutation induces mitochondrial ros generation, secretory dysfunction, and β-cell mass adaptation in conplastic B6-mtFVB mice. Endocrinology. 153:4666–4676.
  • Wiener G, Han JL, Long RJ. 2003. The yak: Regional Office for Asia and the Pacific of the Food and Agriculture Organization of the United Nations. 2nd ed. Bangkok: FAO Regional Office for Asia and the Pacific.
  • Yu X, Gimsa U, Wester-Rosenlof L, Kanitz E, Otten W, Kunz M, Ibrahim SM. 2009a. Dissecting the effects of mtDNA variations on complex traits using mouse conplastic strains. Genome Res. 19:159–165.
  • Yu X, Wester-Rosenlof L, Gimsa U, Holzhueter SA, Marques A, Jonas L, Hagenow K, Kunz M, Nizze H, Tiedge M, et al. 2009b. The mtdna nt7778 g/t polymorphism affects autoimmune diseases and reproductive performance in the mouse. Hum Mol Genet. 18:4689–4698.

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