Literature DB >> 19037013

Dissecting the effects of mtDNA variations on complex traits using mouse conplastic strains.

Xinhua Yu1, Ulrike Gimsa, Lena Wester-Rosenlöf, Ellen Kanitz, Winfried Otten, Manfred Kunz, Saleh M Ibrahim.   

Abstract

Previous reports have demonstrated that the mtDNA of mouse common inbred strains (CIS) originated from a single female ancestor and that mtDNA mutations occurred during CIS establishment. This situation provides a unique opportunity to investigate the impact of individual mtDNA variations on complex traits in mammals. In this study, we compiled the complete mtDNA sequences of 52 mouse CIS. Phylogenetic analysis demonstrated that 50 of the 52 CIS descended from a single female Mus musculus domesticus mouse, and mtDNA mutations have accumulated in 26 of the CIS. We then generated conplastic strains on the C57BL/6J background for 12 mtDNA variants with one to three functional mtDNA mutations. We also generated conplastic strains for mtDNA variants of the four M. musculus subspecies, each of which contains hundreds of mtDNA variations. In total, a panel of conplastic strains was generated for 16 mtDNA variants. Phenotypic analysis of the conplastic strains demonstrated that mtDNA variations affect susceptibility to experimental autoimmune encephalomyelitis and anxiety-related behavior, which confirms that mtDNA variations affect complex traits. Thus, we have developed a unique genetic resource that will facilitate exploration of the biochemical and physiological roles of mitochondria in complex traits.

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Year:  2008        PMID: 19037013      PMCID: PMC2612955          DOI: 10.1101/gr.078865.108

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  28 in total

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Journal:  Nat Genet       Date:  2003-08-17       Impact factor: 38.330

2.  Mitochondrial DNA polymorphisms in bipolar disorder.

Authors:  T Kato; H Kunugi; S Nanko; N Kato
Journal:  J Affect Disord       Date:  2001-02       Impact factor: 4.839

3.  Type 2 diabetes is associated with a common mitochondrial variant: evidence from a population-based case-control study.

Authors:  Joanna Poulton; Jian'an Luan; Vincent Macaulay; Susie Hennings; Jo Mitchell; Nicholas J Wareham
Journal:  Hum Mol Genet       Date:  2002-06-15       Impact factor: 6.150

4.  A nuclear-mitochondrial DNA interaction affecting hearing impairment in mice.

Authors:  K R Johnson; Q Y Zheng; Y Bykhovskaya; O Spirina; N Fischel-Ghodsian
Journal:  Nat Genet       Date:  2001-02       Impact factor: 38.330

5.  Mitochondrial polymorphisms significantly reduce the risk of Parkinson disease.

Authors:  Joelle M van der Walt; Kristin K Nicodemus; Eden R Martin; William K Scott; Martha A Nance; Ray L Watts; Jean P Hubble; Jonathan L Haines; William C Koller; Kelly Lyons; Rajesh Pahwa; Matthew B Stern; Amy Colcher; Bradley C Hiner; Joseph Jankovic; William G Ondo; Fred H Allen; Christopher G Goetz; Gary W Small; Frank Mastaglia; Jeffrey M Stajich; Adam C McLaurin; Lefkos T Middleton; Burton L Scott; Donald E Schmechel; Margaret A Pericak-Vance; Jeffery M Vance
Journal:  Am J Hum Genet       Date:  2003-02-28       Impact factor: 11.025

6.  mtDNA phylogeny and evolution of laboratory mouse strains.

Authors:  Ana Goios; Luísa Pereira; Molly Bogue; Vincent Macaulay; António Amorim
Journal:  Genome Res       Date:  2007-02-06       Impact factor: 9.043

7.  Analysis of European mitochondrial haplogroups with Alzheimer disease risk.

Authors:  Joelle M van der Walt; Yulia A Dementieva; Eden R Martin; William K Scott; Kristin K Nicodemus; Charles C Kroner; Kathleen A Welsh-Bohmer; Ann M Saunders; Allen D Roses; Gary W Small; Donald E Schmechel; P Murali Doraiswamy; John R Gilbert; Jonathan L Haines; Jeffery M Vance; Margaret A Pericak-Vance
Journal:  Neurosci Lett       Date:  2004-07-15       Impact factor: 3.046

8.  Production of transmitochondrial mice.

Authors:  Carl A Pinkert; Ian A Trounce
Journal:  Methods       Date:  2002-04       Impact factor: 3.608

9.  Revisiting the mouse mitochondrial DNA sequence.

Authors:  María Pilar Bayona-Bafaluy; Rebeca Acín-Pérez; James C Mullikin; Jeong Soon Park; Raquel Moreno-Loshuertos; Peiqing Hu; Acisclo Pérez-Martos; Patricio Fernández-Silva; Yidong Bai; José Antonio Enríquez
Journal:  Nucleic Acids Res       Date:  2003-09-15       Impact factor: 16.971

10.  mtDNA nt13708A variant increases the risk of multiple sclerosis.

Authors:  Xinhua Yu; Dirk Koczan; Anna-Maija Sulonen; Denis A Akkad; Antje Kroner; Manuel Comabella; Gianna Costa; Daniela Corongiu; Robert Goertsches; Montserrat Camina-Tato; Hans-Juergen Thiesen; Harald I Nyland; Sverre J Mørk; Xavier Montalban; Peter Rieckmann; Maria G Marrosu; Kjell-Morten Myhr; Joerg T Epplen; Janna Saarela; Saleh M Ibrahim
Journal:  PLoS One       Date:  2008-02-13       Impact factor: 3.240

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  42 in total

1.  Parent-of-origin effects on voluntary exercise levels and body composition in mice.

Authors:  Scott A Kelly; Derrick L Nehrenberg; Kunjie Hua; Ryan R Gordon; Theodore Garland; Daniel Pomp
Journal:  Physiol Genomics       Date:  2009-11-10       Impact factor: 3.107

Review 2.  Selfish Mitonuclear Conflict.

Authors:  Justin C Havird; Evan S Forsythe; Alissa M Williams; John H Werren; Damian K Dowling; Daniel B Sloan
Journal:  Curr Biol       Date:  2019-06-03       Impact factor: 10.834

3.  Lifespan effects of mitochondrial mutations.

Authors:  Misa Hirose; Paul Schilf; Yask Gupta; Marvin N Wright; Marvin N Wright; Olaf Jöhren; Anika E Wagner; Christian Sina; Andreas Ziegler; Michael Ristow; Saleh M Ibrahim
Journal:  Nature       Date:  2016-12-14       Impact factor: 49.962

4.  Mitochondrial GWAS and association of nuclear - mitochondrial epistasis with BMI in T1DM patients.

Authors:  Agnieszka H Ludwig-Słomczyńska; Michał T Seweryn; Przemysław Kapusta; Ewelina Pitera; Samuel K Handelman; Urszula Mantaj; Katarzyna Cyganek; Paweł Gutaj; Łucja Dobrucka; Ewa Wender-Ożegowska; Maciej T Małecki; Paweł P Wołkow
Journal:  BMC Med Genomics       Date:  2020-07-07       Impact factor: 3.063

5.  The second genome: Effects of the mitochondrial genome on cancer progression.

Authors:  Adam D Scheid; Thomas C Beadnell; Danny R Welch
Journal:  Adv Cancer Res       Date:  2019-02-27       Impact factor: 6.242

6.  Mitochondrial-nuclear genome interactions in non-alcoholic fatty liver disease in mice.

Authors:  Angela M Betancourt; Adrienne L King; Jessica L Fetterman; Telisha Millender-Swain; Rachel D Finley; Claudia R Oliva; David R Crowe; Scott W Ballinger; Shannon M Bailey
Journal:  Biochem J       Date:  2014-07-15       Impact factor: 3.857

Review 7.  The mitochondrial paradigm for cardiovascular disease susceptibility and cellular function: a complementary concept to Mendelian genetics.

Authors:  David M Krzywanski; Douglas R Moellering; Jessica L Fetterman; Kimberly J Dunham-Snary; Melissa J Sammy; Scott W Ballinger
Journal:  Lab Invest       Date:  2011-06-06       Impact factor: 5.662

8.  Mitochondrial polymorphisms in rat genetic models of hypertension.

Authors:  Sivarajan Kumarasamy; Kathirvel Gopalakrishnan; Asher Shafton; Jeremy Nixon; Jayakumar Thangavel; Phyllis Farms; Bina Joe
Journal:  Mamm Genome       Date:  2010-05-05       Impact factor: 2.957

Review 9.  Beyond retrograde and anterograde signalling: mitochondrial-nuclear interactions as a means for evolutionary adaptation and contemporary disease susceptibility.

Authors:  Scott W Ballinger
Journal:  Biochem Soc Trans       Date:  2013-02-01       Impact factor: 5.407

10.  Construction of two novel reciprocal conplastic rat strains and characterization of cardiac mitochondria.

Authors:  Sivarajan Kumarasamy; Kathirvel Gopalakrishnan; Shakila Abdul-Majeed; Rod Partow-Navid; Phyllis Farms; Bina Joe
Journal:  Am J Physiol Heart Circ Physiol       Date:  2012-11-02       Impact factor: 4.733

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