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Variation in the Kozak sequence of WNT16 results in an increased translation and is associated with osteoporosis related parameters

机译:WNT16的Kozak序列变异导致翻译增加,并与骨质疏松症相关参数有关

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The importance of WNT16 in the regulation of bone metabolism was recently confirmed by several genome-wide association studies and by a Wnt16 (Wnt16-/-) knockout mouse model. The aim of this study was thus to replicate and further elucidate the effect of common genetic variation in WNT16 on osteoporosis related parameters. Hereto, we performed a WNT16 candidate gene association study in a population of healthy Caucasian men from the Odense Androgen Study (OAS). Using HapMap, five tagSNPs and one multimarker test were selected for genotyping to cover most of the common genetic variation in and around WNT16 (MAF5%). This study confirmed previously reported associations for rs3801387 and rs2707466 with bone mineral density (BMD) at several sites. Furthermore, we additionally demonstrated that rs2908007 is strongly associated with BMD at several sites in the young, elderly and complete OAS population. The observed effect of these three associated SNPs on the respective phenotypes is comparable and we can conclude that the presence of the minor allele results in an increase in BMD. Additionally, we performed re-sequencing of WNT16 on two cohorts selected from the young OAS cohort, based on their extreme BMD values. On this basis, rs55710688 was selected for an in vitro translation experiment since it is located in the Kozak sequence of WNT16a. We observed an increased translation efficiency and thus a higher amount of WNT16a for the Kozak sequence that was significantly more prevalent in the high BMD cohort. This observation is in line with the results of the Wnt16-/- mice. Finally, a WNT luciferase reporter assay was performed and showed no activation of the β-catenin dependent pathway by Wnt16. We did detect a dose-dependent inhibitory effect of Wnt16 on WNT1 activation of this canonical WNT pathway. Increased translation of WNT16 can thus lead to an increased inhibitory action of WNT16 on canonical WNT signaling. This statement is in contrast with the known activating effect of canonical WNT signaling on bone formation and suggests a stimulatory effect on bone metabolism via noncanonical WNT signaling. More research is required to not only confirm this hypothesis, but also to further elucidate the role of non-canonical WNT pathways in bone metabolism and the general mechanisms of interplay between the different WNT signaling pathways.
机译:最近,通过数个全基因组关联研究和Wnt16(Wnt16-/-)基因敲除小鼠模型证实了WNT16在调节骨代谢中的重要性。因此,本研究的目的是复制并进一步阐明WNT​​16常见遗传变异对骨质疏松症相关参数的影响。迄今为止,我们根据欧登塞雄激素研究(OAS)对健康的高加索男性人群进行了WNT16候选基因关联研究。使用HapMap,选择了5个tagSNP和1个多标记测试进行基因分型,以覆盖WNT16及其周围(MAF> 5%)的大多数常见遗传变异。这项研究证实了先前报道的rs3801387和rs2707466与几个部位的骨矿物质密度(BMD)的关联。此外,我们还证明了rs2908007在年轻,老年人和完整的OAS人群中的几个位置与BMD密切相关。这三个相关的SNP对各自表型的观察效果是可比的,我们可以得出结论,次要等位基因的存在导致BMD的增加。此外,我们根据年轻的OAS队列的极端BMD值,对两个队列进行了WNT16的重测序。在此基础上,选择rs55710688进行体外翻译实验,因为它位于WNT16a的Kozak序列中。我们观察到翻译效率提高,因此Kozak序列的WNT16a含量更高,而在高BMD人群中这种现象更为普遍。该观察结果与Wnt16-/-小鼠的结果一致。最后,进行了WNT荧光素酶报告基因测定,结果表明Wnt16未激活β-catenin依赖性途径。我们确实检测到Wnt16对该标准WNT途径的WNT1激活具有剂量依赖性抑制作用。 WNT16的翻译增加因此可以导致WNT16对经典WNT信号传导的抑制作用增加。该陈述与规范的WNT信号传导对骨形成的已知激活作用相反,并暗示了通过非规范的WNT信号传导对骨代谢的刺激作用。需要更多的研究来不仅证实这一假说,而且还需要进一步阐明非经典WNT途径在骨代谢中的作用以及不同WNT信号传导途径之间相互作用的一般机制。

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