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外源性 WNT5A 和 WNT11 蛋白可挽救小鼠胚胎干细胞和斑马鱼畸形胚胎中 CITED2 功能障碍。

Exogenous WNT5A and WNT11 proteins rescue CITED2 dysfunction in mouse embryonic stem cells and zebrafish morphants.

机构信息

Department of Biomedical Sciences and Medicine, University of Algarve, 8005-139, Faro, Portugal.

Centre for Biomedical Research (CBMR), University of Algarve, Campus of Gambelas, Building 8, room 2.22, 8005-139, Faro, Portugal.

出版信息

Cell Death Dis. 2019 Aug 5;10(8):582. doi: 10.1038/s41419-019-1816-6.

Abstract

Mutations and inadequate methylation profiles of CITED2 are associated with human congenital heart disease (CHD). In mouse, Cited2 is necessary for embryogenesis, particularly for heart development, and its depletion in embryonic stem cells (ESC) impairs cardiac differentiation. We have now determined that Cited2 depletion in ESC affects the expression of transcription factors and cardiopoietic genes involved in early mesoderm and cardiac specification. Interestingly, the supplementation of the secretome prepared from ESC overexpressing CITED2, during the onset of differentiation, rescued the cardiogenic defects of Cited2-depleted ESC. In addition, we demonstrate that the proteins WNT5A and WNT11 held the potential for rescue. We also validated the zebrafish as a model to investigate cited2 function during development. Indeed, the microinjection of morpholinos targeting cited2 transcripts caused developmental defects recapitulating those of mice knockout models, including the increased propensity for cardiac defects and severe death rate. Importantly, the co-injection of anti-cited2 morpholinos with either CITED2 or WNT5A and WNT11 recombinant proteins corrected the developmental defects of Cited2-morphants. This study argues that defects caused by the dysfunction of Cited2 at early stages of development, including heart anomalies, may be remediable by supplementation of exogenous molecules, offering the opportunity to develop novel therapeutic strategies aiming to prevent CHD.

摘要

CITED2 的突变和甲基化谱不足与人类先天性心脏病 (CHD) 有关。在小鼠中,Cited2 对于胚胎发生是必要的,特别是对于心脏发育,其在胚胎干细胞 (ESC) 中的耗竭会损害心脏分化。我们现在已经确定,ESC 中 Cited2 的耗竭会影响参与早期中胚层和心脏特化的转录因子和心脏发生基因的表达。有趣的是,在分化开始时补充由过表达 CITED2 的 ESC 制备的分泌组,挽救了 Cited2 耗竭的 ESC 的心脏发生缺陷。此外,我们证明了 WNT5A 和 WNT11 蛋白具有挽救潜力。我们还验证了斑马鱼作为研究发育过程中 cited2 功能的模型。事实上,针对 cited2 转录本的 morpholino 的显微注射导致了与小鼠敲除模型类似的发育缺陷,包括心脏缺陷的倾向增加和严重的死亡率。重要的是,与 CITED2 或 WNT5A 和 WNT11 重组蛋白共同注射抗 cited2 morpholino 纠正了 Cited2 形态发生体的发育缺陷。这项研究表明,由于 Cited2 在发育早期阶段的功能障碍引起的缺陷,包括心脏畸形,可能可以通过补充外源性分子来纠正,为开发旨在预防 CHD 的新型治疗策略提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9160/6680046/99c16795ff07/41419_2019_1816_Fig1_HTML.jpg

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