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拷贝数变异与骨质疏松症。

Copy Number Variation and Osteoporosis.

机构信息

University of Ljubljana, Faculty of Pharmacy, Aškerčeva 7, 1000, Ljubljana, Slovenia.

出版信息

Curr Osteoporos Rep. 2023 Apr;21(2):167-172. doi: 10.1007/s11914-023-00773-y. Epub 2023 Feb 16.

Abstract

PURPOSE OF REVIEW

The purpose of this review is to summarize recent findings on copy number variations and susceptibility to osteoporosis.

RECENT FINDINGS

Osteoporosis is highly influenced by genetic factors, including copy number variations (CNVs). The development and accessibility of whole genome sequencing methods has accelerated the study of CNVs and osteoporosis. Recent findings include mutations in novel genes and validation of previously known pathogenic CNVs in monogenic skeletal diseases. Identification of CNVs in genes previously associated with osteoporosis (e.g. RUNX2, COL1A2, and PLS3) has confirmed their importance in bone remodelling. This process has been associated also with the ETV1-DGKB, AGBL2, ATM, and GPR68 genes, identified by comparative genomic hybridisation microarray studies. Importantly, studies in patients with bone pathologies have associated bone disease with the long non-coding RNA LINC01260 and enhancer sequences residing in the HDAC9 gene. Further functional investigation of genetic loci harbouring CNVs associated with skeletal phenotypes will reveal their role as molecular drivers of osteoporosis.

摘要

目的综述

本文旨在总结拷贝数变异与骨质疏松易感性的最新研究结果。

最近的发现

骨质疏松受遗传因素影响较大,包括拷贝数变异(CNVs)。全基因组测序方法的发展和普及加速了 CNVs 与骨质疏松的研究。最近的发现包括新基因的突变和单基因骨骼疾病中已确认致病性 CNVs 的验证。在与骨质疏松相关的基因(如 RUNX2、COL1A2 和 PLS3)中鉴定的 CNVs 证实了它们在骨重塑中的重要性。该过程还与通过比较基因组杂交微阵列研究确定的 ETV1-DGKB、AGBL2、ATM 和 GPR68 基因有关。重要的是,骨骼病理学患者的研究将骨疾病与位于 HDAC9 基因中的长非编码 RNA LINC01260 和增强子序列相关联。对携带与骨骼表型相关的 CNVs 的遗传位点进行进一步的功能研究,将揭示它们作为骨质疏松分子驱动因素的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b590/10105686/a342c92de309/11914_2023_773_Fig1_HTML.jpg

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