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Research Article

Association analyses suggest the effects of RANK and RANKL on age at menarche in Chinese women

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Pages 75-81 | Received 16 Feb 2011, Accepted 10 May 2011, Published online: 24 Oct 2011

References

  • Anderson CA, Duffy DL, Martin NG, Visscher PM. Estimation of variance components for age at menarche in twin families. Behav Genet 2007;37:668–77
  • Cabanes A, Ascunce N, Vidal E, . Decline in age at menarche among Spanish women born from 1925 to 1962. BMC Public Health 2009;9:449
  • Gerdhem P, Obrant KJ. Bone mineral density in old age: the influence of age at menarche and menopause. J Bone Miner Metab 2004;22:372–5
  • Ito M, Yamada M, Hayashi K, . Relation of early menarche to high bone mineral density. Calcif Tissue Int 1995;57:11–14
  • Rudra CL, Williams MA. BMI as a modifying factor in the relations between age at menarche, menstrual cycle characteristics, and risk of preeclampsia. Gynecol Endocrinol 2005;21: 200–5
  • Xu WH, Xiang YB, Ruan ZX, . Menstrual and reproductive factors and endometrial cancer risk: Results from a population-based case-control study in urban Shanghai. Int J Cancer 2004;108:613–9
  • Hsieh CC, Trichopoulos D, Katsouyanni K, Yuasa S. Age at menarche, age at menopause, height and obesity as risk factors for breast cancer: associations and interactions in an international case–control study. Int J Cancer 1990;46:796–800
  • Petridou E, Syrigou E, Toupadaki N, . Determinants of age at menarche as early life predictors of breast cancer risk. Int J Cancer 1996;68:193–8
  • Chiaffarino F, Pelucchi C, Parazzini F, . Reproductive and hormonal factors and ovarian cancer. Ann Oncol 2001;12:337–41
  • Jordan SJ, Webb PM, Green AC. Height, age at menarche, and risk of epithelial ovarian cancer. Cancer Epidemiol Biomarkers Prev 2005;14:2045–8
  • Harlow BL, Cohen LS, Otto MW, Spiegelman D, Cramer DW. Early life menstrual characteristics and pregnancy experiences among women with and without major depression: the Harvard study of moods and cycles. J Affect Disord 2004;79:167–76
  • Laitinen J, Power C, Jarvelin MR. Family social class, maternal body mass index, childhood body mass index, and age at menarche as predictors of adult obesity. Am J Clin Nutr 2001;74: 287–94
  • Wang W, Zhao LJ, Liu YZ, Recker RR, Deng HW. Genetic and environmental correlations between obesity phenotypes and age at menarche. Int J Obes (Lond) 2006;30:1595–600
  • Guo Y, Zhao LJ, Shen H, Deng HW. Genetic and environmental correlations between age at menarche and bone mineral density at different skeletal sites. Calcif Tissue Int 2005;77:356–60
  • Loesch DZ, Huggins R, Rogucka E, Hoang NH, Hopper JL. Genetic correlates of menarcheal age: a multivariate twin study. Ann Hum Biol 1995;22:470–90
  • Snieder H, MacGregor AJ, Spector TD. Genes control the cessation of a woman’s reproductive life: a twin study of hysterectomy and age at menopause. J Clin Endocrinol Metab 1998; 83:1875–80
  • van den Akker OB, Stein GS, Neale MC, Murray RM. Genetic and environmental variation in menstrual cycle: histories of two British twin samples. Acta Genet Med Gemellol (Roma) 1987; 36:541–8
  • Sulem P, Gudbjartsson DF, Rafnar T, . Genome-wide association study identifies sequence variants on 6q21 associated with age at menarche. Nat Genet 2009;41:734–8
  • Zhao J, Xiong DH, Guo Y, . Polymorphism in the insulin-like growth factor 1 gene is associated with age at menarche in Caucasian females. Hum Reprod 2007;22:1789–94
  • Flint J, Wu S, Shott S, Suarez E, De Luca F. Relationships between osteoprotegerin (OPG), receptor activator of nuclear factor kappaB ligand (RANKL), and growth hormone (GH) secretory status in short children. J Pediatr Endocrinol Metab 2009;22: 1105–12
  • Guo Y, Xiong DH, Yang TL, . Polymorphisms of estrogen-biosynthesis genes CYP17 and CYP19 may influence age at menarche: a genetic association study in Caucasian females. Hum Mol Genet 2006;15:2401–8
  • Long JR, Xu H, Zhao LJ, . The oestrogen receptor α gene is linked and/or associated with age of menarche in different ethnic groups. J Med Genet 2005;42:796–800
  • Mitchell ES, Farin FM, Stapleton PL, . Association of estrogen-related polymorphisms with age at menarche, age at final menstrual period, and stages of the menopausal transition. Menopause 2008;15:105–11
  • Vihko R, Apter D. Endocrine characteristics of adolescent menstrual cycles: impact of early menarche. J Steroid Biochem 1984; 20:231–6
  • Binder NB, Niederreiter B, Hoffmann O, . Estrogen-dependent and C–C chemokine receptor-2-dependent pathways determine osteoclast behavior in osteoporosis. Nat Med 2009;15:417–24
  • Fata JE, Kong YY, Li J, . The osteoclast differentiation factor osteoprotegerin-ligand is essential for mammary gland development. Cell 2000;103:41–50
  • George S, Brenner A, Sarantopoulos J, Bukowski RM. RANK ligand: effects of inhibition. Curr Oncol Rep 2010;12:80–6
  • Fouque-Aubert A, Chapurlat R. Influence of RANKL inhibition on immune system in the treatment of bone diseases. Joint Bone Spine 2008;75:5–10
  • Anderson DM, Maraskovsky E, Billingsley WL, . A homologue of the TNF receptor and its ligand enhance T-cell growth and dendritic-cell function. Nature 1997;390:175–9
  • Theill LE, Boyle WJ, Penninger JM. RANK-L and RANK: T cells, bone loss, and mammalian evolution. Annu Rev Immunol 2002;20:795–823
  • Seshasayee D, Wang H, Lee WP, . A novel in vivo role for osteoprotegerin ligand in activation of monocyte effector function and inflammatory response. J Biol Chem 2004;279:30202–9
  • Lu Y, Liu P, Recker RR, Deng HW, Dvornyk V. TNFRSF11A and TNFSF11 are associated with age at menarche and natural menopause in white women. Menopause 2010;17:1048–54
  • Deng HW, Xu FH, Liu YZ, . A whole-genome linkage scan suggests several genomic regions potentially containing QTLs underlying the variation of stature. Am J Med Genet 2002;113:29–39
  • Liu YZ, Guo YF, Wang L, . Genome-wide association analyses identify SPOCK as a key novel gene underlying age at menarche. PLoS Genet 2009;5:e1000420
  • Barrett JC, Fry B, Maller J, Daly MJ. Haploview: analysis and visualization of LD and haplotype maps. Bioinformatics 2005; 21:263–5
  • Purcell S, Neale B, Todd-Brown K, . PLINK: a tool set for whole-genome association and population-based linkage analyses. Am J Hum Genet 2007;81:559–75
  • Boyce BF, Xing L. Functions of RANKL/RANK/OPG in bone modeling and remodeling. Arch Biochem Biophys 2008;473: 139–46
  • Roshandel D, Holliday K, Pye SR, . Genetic variation in the RANKL/RANK/OPG signaling pathway is associated with bone turnover and bone mineral density in men. J Bone Miner Res 2010;25:1830–8
  • Kong YY, Yoshida H, Sarosi I, . OPGL is a key regulator of osteoclastogenesis, lymphocyte development and lymph-node organogenesis. Nature 1999;397:315–23
  • Osako MK, Nakagami H, Koibuchi N, . Estrogen inhibits vascular calcification via vascular RANKL system: common mechanism of osteoporosis and vascular calcification. Circ Res 2010;107:466–75
  • Darnay BG, Haridas V, Ni J, Moore PA, Aggarwal BB. Characterization of the intracellular domain of receptor activator of NF-κB (RANK). Interaction with tumor necrosis factor receptor-associated factors and activation of NF-κB and c-Jun N-terminal kinase. J Biol Chem 1998;273:20551–5
  • Gilmore TD. Introduction to NF-κB: players, pathways, perspectives. Oncogene 2006;25:6680–4
  • Cai D, Frantz JD, Tawa NE Jr, . IKKβ/NF-κB activation causes severe muscle wasting in mice. Cell 2004;119:285–98
  • Chen J, Zhou Y, Mueller-Steiner S, . SIRT1 protects against microglia-dependent amyloid-β toxicity through inhibiting NF-κB signaling. J Biol Chem 2005;280:40364–74
  • Huber N, Sakai N, Eismann T, . Age-related decrease in proteasome expression contributes to defective nuclear factor-κB activation during hepatic ischemia/reperfusion. Hepatology 2009;49:1718–28
  • Adler AS, Sinha S, Kawahara TL, . Motif module map reveals enforcement of aging by continual NF-κB activity. Genes Dev 2007;21:3244–57
  • Li X, Pilbeam CC, Pan L, Breyer RM, Raisz LG. Effects of prostaglandin E2 on gene expression in primary osteoblastic cells from prostaglandin receptor knockout mice. Bone 2002;30: 567–73
  • Seck T, Diel I, Bismar H, Ziegler R, Pfeilschifter J. Serum parathyroid hormone, but not menopausal status, is associated with the expression of osteoprotegerin and RANKL mRNA in human bone samples. Eur J Endocrinol 2001;145:199–205
  • Casazza K, Hanks LJ, Alvarez JA. Role of various cytokines and growth factors in pubertal development. Med Sport Sci 2010;55: 14–31
  • Shi L, Remer T, Buyken AE, . Prepubertal urinary estrogen excretion and its relationship with pubertal timing. Am J Physiol Endocrinol Metab 2010;299:E990–7
  • Mouritsen A, Aksglaede L, Sorensen K, . Hypothesis: exposure to endocrine-disrupting chemicals may interfere with timing of puberty. Int J Androl 2010;33:346–59
  • Escobar ME, Pipman V, Arcari A, . [Menstrual cycle disorders in adolescence]. Arch Argent Pediatr 2010;108:363–9
  • Brito VN, Latronico AC, Arnhold IJ, Mendonca BB. Update on the etiology, diagnosis and therapeutic management of sexual precocity. Arq Bras Endocrinol Metabol 2008;52:18–31
  • Schubert A, Schulz H, Emons G, Grundker C. Expression of osteoprotegerin and receptor activator of nuclear factor-κB ligand (RANKL) in HCC70 breast cancer cells and effects of treatment with gonadotropin-releasing hormone on RANKL expression. Gynecol Endocrinol 2008;24:331–8
  • de Brito VN, Latronico AC, Arnhold IJ, . Treatment of gonadotropin dependent precocious puberty due to hypothalamic hamartoma with gonadotropin releasing hormone agonist depot. Arch Dis Child 1999;80:231–4
  • Nemoto T, Yamauchi N, Shibasaki T. Novel action of pituitary urocortin 2 in the regulation of expression and secretion of gonadotropins. J Endocrinol 2009;201:105–14
  • Mauras N, Rogol AD, Haymond MW, Veldhuis JD. Sex steroids, growth hormone, insulin-like growth factor-1: neuroendocrine and metabolic regulation in puberty. Horm Res 1996; 45:74–80
  • Ebling FJ. The neuroendocrine timing of puberty. Reproduction 2005;129:675–83
  • Beleut M, Rajaram RD, Caikovski M, . Two distinct mechanisms underlie progesterone-induced proliferation in the mammary gland. Proc Natl Acad Sci USA 2010;107:2989–94
  • Casey VA, Dwyer JT, Coleman KA, . Accuracy of recall by middle-aged participants in a longitudinal study of their body size and indices of maturation earlier in life. Ann Hum Biol 1991;18:155–66
  • Must A, Phillips SM, Naumova EN, . Recall of early menstrual history and menarcheal body size: after 30 years, how well do women remember? Am J Epidemiol 2002;155:672–9
  • Liu P, Lu Y, Recker RR, Deng HW, Dvornyk V. Association analyses suggest multiple interaction effects of the methylenetetrahydrofolate reductase polymorphisms on timing of menarche and natural menopause in white women. Menopause 2010;17:185–90

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