SNP rs6265在人体内可调节蛋白质磷酸化和成骨细胞分化,并影响BMD。

SNP rs6265 regulates protein phosphorylation and osteoblast differentiation and influences BMD in humans
作者:Deng, F.-Y.abc, Tan, L.-J.bcd, Shen, H.bc, Liu, Y.-J.bc, Liu, Y.-Z.bc, Li, J.bc, Zhu, X.-Z.e, Chen, X.-D.d, Tian, Q.bc, Zhao, M.bc, Deng, H.-W.bcde
机构: 苏州大学公共卫生学院遗传流行病与基因组学研究中心
期刊: J BONE MINER RES2013年12月12期28卷

Abstract

Bone mineral density (BMD) is a major index for diagnosing osteoporosis. PhosSNPs are nonsynonymous SNPs that affect protein phosphorylation. The relevance and significance of phosSNPs to BMD and osteoporosis is unknown. This study aimed to identify and characterize phosSNPs significant for BMD in humans. We conducted a pilot genomewide phosSNP association study for BMD in three independent population samples, involving ∼5000 unrelated individuals. We identified and replicated three phosSNPs associated with both spine BMD and hip BMD in Caucasians. Association with hip BMD for one of these phosSNPs, ie, rs6265 (major/minor allele: G/A) in BDNF gene, was also suggested in Chinese. Consistently in both ethnicities, individuals carrying the AA genotype have significantly lower hip BMD than carriers of the GA and GG genotypes. Through in vitro molecular and cellular studies, we found that compared to osteoblastic cells transfected with wild-type BDNF-Val66 (encoded with allele G at rs6265), transfection of variant BDNF-Met66 (encoded with allele A at rs6265) significantly decreased BDNF protein phosphorylation (at amino acid residue T62), expression of osteoblastic genes (OPN, BMP2, and ALP), and osteoblastic activity. The findings are consistent with and explain our prior observations in general human populations. We conclude that phosSNP rs6265, by regulating BDNF protein phosphorylation andosteoblast differentiationinfluences hip BMD in humans. This study represents our first endeavor to dissect the functions of phosSNPs in bone, which might stimulate extended large-scale studies on bone or similar studies on other human complex traits and diseases.

© 2013 American Society for Bone and Mineral Research.

通讯作者:Deng, H.-W.; Center for Bioinformatics and Genomics, Tulane University School of Public Health, Tropical Medicine, 1440 Canal Street, New Orleans, LA 70112, United States
学科代码:内分泌学与糖尿病   关键词:人体内可调节蛋白质
来源: Scopus
Scopus介绍:Scopus 于2004年11月正式推出,是目前全球规模最大的文摘和引文数据库。Scopus涵盖了由5000多家出版商出版发行的科技、医学和社会科学方面的18,000多种期刊,其中同行评审期刊16,500多种。相对于其他单一的文摘索引数据库而言,Scopus的内容更加全面,学科更加广泛,特别是在获取欧洲及亚太地区的文献方面,用户可检索出更多的文献数量。通过Scopus,用户可以检索到1823年以来的近4000万条摘要和题录信息,以及1996年以来所引用的参考文献。数据每日更新。 马上访问Scopus网站http://www.scopus.com/
顶一下(0
您可能感兴趣的文章
    发表评论网友评论(0)
      发表评论
      登录后方可发表评论,点击此处登录