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8 个基因与绝经后白种女性的骨密度变化高度相关。

Eight genes are highly associated with BMD variation in postmenopausal Caucasian women.

机构信息

Institute of Basic Medical Sciences, University of Oslo, Norway.

出版信息

Bone. 2010 Mar;46(3):604-12. doi: 10.1016/j.bone.2009.11.007. Epub 2009 Nov 14.

DOI:10.1016/j.bone.2009.11.007
PMID:19922823
Abstract

Low bone mineral density (BMD) is an important risk factor for skeletal fractures which occur in about 40% of women >/=50 years in the western world. We describe the transcriptional changes in 84 trans-iliacal bone biopsies associated with BMD variations in postmenopausal females (50 to 86 years), aiming to identify genetic determinants of bone structure. The women were healthy or having a primary osteopenic or osteoporotic status with or without low energy fractures. The total cohort of 91 unrelated women representing a wide range of BMDs, were consecutively registered and submitted to global gene Affymetrix microarray expression analysis or histomorphometry. Among almost 23,000 expressed transcripts, a set represented by ACSL3 (acyl-CoA synthetase long-chain family member 3), NIPSNAP3B (nipsnap homolog 3B), DLEU2 (Deleted in lymphocytic leukemia, 2), C1ORF61 (Chromosome 1 open reading frame 61), DKK1 (Dickkopf homolog 1), SOST (Sclerostin), ABCA8, (ATP-binding cassette, sub-family A, member 8), and uncharacterized (AFFX-M27830-M-at), was significantly correlated to total hip BMD (5% false discovery rate) explaining 62% of the BMD variation expressed as T-score, 53% when adjusting for the influence of age (Z-score) and 44% when further adjusting for body mass index (BMI). Only SOST was previously associated to BMD, and the majority of the genes have previously not been associated with a bone phenotype. In molecular network analyses, SOST shows a strong, positive correlation with DKK1, both being members of the Wnt signaling pathway. The results provide novel insight in the underlying biology of bone metabolism and osteoporosis which is the ultimate consequence of low BMD.

摘要

低骨密度(BMD)是骨骼骨折的一个重要危险因素,在西方世界,大约 40%的 50 岁以上女性会发生骨折。我们描述了 84 个跨髂骨活检样本中与绝经后女性(50 至 86 岁)BMD 变化相关的转录变化,旨在确定骨结构的遗传决定因素。这些女性健康或患有原发性骨质疏松或骨质疏松症,伴有或不伴有低能量骨折。总共 91 名无血缘关系的女性组成了一个广泛的 BMD 队列,她们连续登记并接受了全基因 Affymetrix 微阵列表达分析或组织形态计量学分析。在近 23000 个表达的转录本中,一组由 ACSL3(酰基辅酶 A 合成酶长链家族成员 3)、NIPSNAP3B(nipsnap 同源物 3B)、DLEU2(淋巴细胞白血病缺失,2)、C1ORF61(染色体 1 开放阅读框 61)、DKK1(Dickkopf 同源物 1)、SOST(硬化蛋白)、ABCA8(ATP 结合盒,亚家族 A,成员 8)和未表征(AFFX-M27830-M-at)组成,与总髋部 BMD 显著相关(5%错误发现率),解释了 T 评分表示的 BMD 变化的 62%,调整年龄影响(Z 评分)后为 53%,进一步调整体重指数(BMI)后为 44%。只有 SOST 先前与 BMD 相关,而大多数基因以前与骨表型无关。在分子网络分析中,SOST 与 DKK1 表现出强烈的正相关,两者都是 Wnt 信号通路的成员。研究结果为骨代谢和骨质疏松症的潜在生物学提供了新的见解,骨质疏松症是低 BMD 的最终结果。

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