| Literature DB >> 25152917 |
Hiroyo Kondo1, Hidemi Fujino2, Fumiko Nagatomo3, Akihiko Ishihara3.
Abstract
Estrogen receptor α (ER α) is one of candidate genes for osteoporosis. This study examined the influence of ER α gene, PvuII, and XbaI genotypes on bone density of calcaneus in response to habitual exercise. ER α polymorphisms were detected using PvuII and XbaI restriction enzymes in 316 Japanese postmenopausal women. The bone density was significantly lower in the women carrying PP, pp, or xx genotype without habitual exercise than in the age-matched women without those genotypes. The women carrying Pp genotype without habitual exercise had normal bone density compared to those without Pp genotype. The women carrying PPxx or ppxx polymorphism without habitual exercise had low bone density compared to those with habitual exercise. Thus, the reduction of bone density was attenuated in the women carrying PPxx or ppxx with habitual exercise. In addition, habitual exercise was highly effective for the bone density in the women carrying xx homozygote. These findings indicate that analyses of XbaI and PvuII polymorphisms of ER α may be useful to predict the effect of exercise on bone density, and habitual exercise attenuates the reduction of bone density in women with some genotypes.Entities:
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Year: 2014 PMID: 25152917 PMCID: PMC4134819 DOI: 10.1155/2014/593927
Source DB: PubMed Journal: ScientificWorldJournal ISSN: 1537-744X
Physical characteristics in the exercise and nonexercise groups.
| All subjects | Exercise | Nonexercise | |
|---|---|---|---|
| Age, yr | 61.24 ± 6.96 | 60.55 ± 5.92 | 62.18 ± 8.11 |
| Height, m | 1.54 ± 0.06 | 1.54 ± 0.06 | 1.54 ± 0.06 |
| Body weight, kg | 54.05 ± 7.28 | 54.55 ± 6.66 | 53.34 ± 8.06 |
| BMI | 22.80 ± 3.22 | 22.96 ± 3.07 | 22.60 ± 3.40 |
Values are means ± SD. BMI: body mass index (body weight, kg/height squared, m2).
Figure 1Dependence of bone density Z scores on PvuII and XbaI RFLP genotypes and haplotypes. Values are expressed as mean ± SEM. The zero line is equal to the age-based mean value. *P < 0.05 compared between the exercise and nonexercise groups in each ER α genotype and haplotype. (a) The Z score (SD) of the exercise group was significantly higher than that of the nonexercise group. (b) pp showed higher Z score than Pp, but there was no significant difference. (c) In the XbaI genotype, the Z score of xx was significantly higher than that of Xx genotype. (d) The Z score of PPXX and Ppxx was significantly higher than other genotypes, but there was no significant difference.
Figure 2The exercise effect on bone density Z scores classified by PvuII and XbaI RFLP genotypes and haplotypes. Values are expressed as mean ± SEM. The zero line is equal to the age-based mean value. Solid and open bars indicate the exercise and nonexercise groups, respectively. *P < 0.05 compared between the exercise and nonexercise groups in each ER α genotype and haplotype. (a) The mean Z score in the PP or pp genotype with exercise was significantly higher than that without exercise. (b) The Z score in the exercise group with xx genotypes was significantly higher than that of the nonexercise group. (c) The Z score in the exercise group with PPxx or ppxx genotype was significantly higher than that of the nonexercise group. The difference of habitual exercise in bone density was minimal in PpXx and Ppxx.