4.0 Article

Mitochondria-Wide Association Study of Common Variants in Osteoporosis

Journal

ANNALS OF HUMAN GENETICS
Volume 75, Issue -, Pages 569-574

Publisher

WILEY-BLACKWELL
DOI: 10.1111/j.1469-1809.2011.00663.x

Keywords

mtSNP; haplogroup; osteoporosis; BMD; association

Funding

  1. National Natural Science Foundation of China [81000363, 31000554]
  2. NIH [R01 AR050496, R21 AG027110, R01 AG026564, P50 AR055081, R01 AR057049-01A1, R21 AA015973]
  3. Fundamental Research Funds for the Central Universities
  4. PhD Programs Foundation of Ministry of Education of China [20100201120058]
  5. Shanghai Leading Academic Discipline Project [S30501]
  6. Ministry of Education to ShangHai University of Science and Technology
  7. University of Shanghai for Science and Technology
  8. Xi'an Jiaotong University
  9. Ministry of Education of Chin
  10. University of Missouri- - -Kansas City
  11. Tulane University

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Mitochondrial DNA (mtDNA) variants are involved in the pathogenesis of human complex diseases, especially for age-related disorders, including osteoporosis. However, the role of mtDNA variants in osteoporosis is largely unknown. In this study, we performed a mitochondria-wide association study for osteoporosis in a large sample of 2286 unrelated Caucasian subjects. A total of 445 mtSNPs were genotyped and 72 mtSNPs survived the quality control. We first examined association between mtSNPs and bone mineral density (BMD), and identified that an mtSNP, mt4823 within the ND2 gene, was strongly associated with hip BMD (P = 2.05 x 10(-4)), even after Bonferroni correction. The C allele of mt4823 was associated with reduced hip BMD and the effect size (beta) was similar to 0.044. Another SNP mt15885 within the MT-CYB gene was associated both with spine (P = 1.66 x 10(-3)) and hip BMD (P = 0.023). The T allele of mt15885 had a protective effect on spine (beta = 0.064) and hip BMD (beta = 0.038). Next, we classified subjects into the nine common European haplogroups and conducted association analyses. Subjects classified as haplogroup X had significantly lower hip BMD values than others (P = 0.040). Our results highlighted the importance of mtDNA variants in osteoporosis.

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