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Alkylglycerol monooxygenase, a heterotaxy candidate gene, regulates left-right patterning via Wnt signaling

机译:烷基甘油单氧结酶,异也候选基因,通过WNT信号调节左右图案化

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Congenital heart disease (CHD) is a major cause of morbidity in the pediatric population yet its genetic and molecular causes remain poorly defined. Previously, we identified AGMO as a candidate heterotaxy disease gene, a disorder of left-right (LR) patterning that can have a profound effect on cardiac function. AGMO is the only known alkylglycerol monooxygenase, an orphan tetrahydrobiopterin dependent enzyme that cleaves the ether linkage in alkylglycerols. However, whether AGMO plays a role in LR patterning was unexplored. Here we reveal that Agmo is required for correct development of the embryonic LR axis in Xenopus embryos recapitulating the patient’s heterotaxy phenotype. Mechanistically, we demonstrate that Agmo is a regulator of canonical Wnt signaling, required during gastrulation for normal formation of the left – right organizer. Mutational analysis demonstrates that this function is dependent on Agmo’s alkylglycerol monooxygenase activity. Together, our findings identify Agmo as a regulator of canonical Wnt signaling, demonstrate a role for Agmo in embryonic axis formation, and provide insight into the poorly understood developmental requirements for ether lipid cleavage.
机译:先天性心脏病(CHD)是儿科人群中发病率的主要原因,但其遗传和分子原因仍然定义不足。以前,我们将AGMO鉴定为候选异常疾病基因,左右紊乱(LR)图案,可以对心脏功能产生深远的影响。 AGMO是唯一已知的烷基甘油单氧基酶,孤儿四氢替替林依赖性酶,其切割烷基甘油中的醚键。但是,AGMO是否在LR Patterning中发挥作用是未开发的。在这里,我们揭示了AGMO,需要在外观胚胎胚胎中矫正胚胎LR轴的胚胎LR轴的要求。机械地,我们证明Agmo是甲状腺组织者正常形成的胃动态期间所需的规范Wnt信号传导的调节器。突变分析表明该功能取决于Agmo的烷基甘油单氧化酶活性。我们的研究结果将Agmo识别为规范Wnt信号传导的调节器,表明Agmo在胚胎轴形成中的作用,并对乙醚脂质切割的洞察力理解的发展要求提供了深入。

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