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Transient modification of lin28b expression - Permanent effects on zebrafish growth

机译:LIN28B表达的瞬态修改 - 对斑马鱼生长的永久影响

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摘要

Recent genome-wide association studies and mouse models have identified LIN28B as a gene affecting several pubertal timing-related traits and vertebrate growth. However, the exact biological mechanisms underlying the associations remain unknown. We have explored the mechanisms linking LIN28B with growth regulation by combining human gene expression data with functional models. Specifically, we show that 1) pubertal timing-associated genetic variation correlates with LIN28B expression in the pituitary and hypothalamus, 2) downregulating lin28b in zebrafish embryos associates with aberrant development of kiss2-neurons, and 3) increasing lin28b expression transiently by synthetic mRNA injections during embryogenesis results in sustained enhancement of zebrafish growth. Unexpectedly, the mRNA injections resulted in advanced sexual maturation of female fish, suggesting that lin28b may influence pubertal timing through multiple developmental mechanisms. Overall, these results provide novel insight into LIN28B function in vertebrate growth regulation, emphasizing the importance of the gene and related genetic pathways for embryonic and juvenile development.
机译:最近的基因组关联研究和小鼠模型已鉴定为影响几个普别特定时相关性状和脊椎动物生长的基因。然而,联想的基础的确切生物机制仍然是未知的。通过将人类基因表达数据与功能模型组合,我们探索了将LIN28B与生长调节联系起来的机制。具体而言,我们表明,1)普及塔尔时序相关的遗传变异与垂体和下丘脑中的LIN28B表达相关,2)在斑马鱼胚胎中下调LIN28B与Kiss2-neurons的异常发育,3)通过合成mRNA注射瞬时表达LIN28B表达在胚胎发生期间,导致斑马鱼生长的持续增强。出乎意料的是,mRNA注射导致母鱼的晚期性成熟,表明LIN28B可能会通过多种发育机制影响青春期时机。总体而言,这些结果为脊椎动物生长调节中的LIN28B功能提供了新的洞察力,强调了基因和相关遗传途径对胚胎和幼年发育的重要性。

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