首页> 外文期刊>Human Molecular Genetics >Cyp26 genes a1, b1 and c1 are down-regulated in Tbx1 null mice and inhibition of Cyp26 enzyme function produces a phenocopy of DiGeorge Syndrome in the chick.
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Cyp26 genes a1, b1 and c1 are down-regulated in Tbx1 null mice and inhibition of Cyp26 enzyme function produces a phenocopy of DiGeorge Syndrome in the chick.

机译:在没有Tbx1的小鼠中,Cyp26基因a1,b1和c1下调,并且对Cyp26酶功能的抑制会在雏鸡中产生DiGeorge综合征的表型。

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摘要

Cyp26a1, a gene required for retinoic acid (RA) inactivation during embryogenesis, was previously identified as a potential Tbx1 target from a microarray screen comparing wild-type and null Tbx1 mouse embryo pharyngeal arches (pa) at E9.5. Using real-time PCR and in situ hybridization analysis of Cyp26a1 and its two functionally related family members Cyp26b1 and c1, we demonstrate reduced and/or altered expression for all three genes in pharyngeal tissues of Tbx1 null embryos. Blockade of Cyp26 function in the chick embryo using R115866, a specific inhibitor of Cyp26 enzyme function, resulted in a dose-dependent phenocopy of the Tbx1 null mouse including loss of caudal pa and pharyngeal arch arteries (paa), small otic vesicles, loss of head mesenchyme and, at later stages, DiGeorge Syndrome-like heart defects, including common arterial trunk and perimembranous ventricular septal defects. Molecular markers revealed a serious disruption of pharyngeal pouch endoderm (ppe) morphogenesis and reduced staining for smooth muscle cells in paa. Expression of the RA synthesizing enzyme Raldh2 was also up-regulated and altered Hoxb1 expression indicated that RA levels are raised in R115866-treated embryos as reported for Tbx1 null mice. Down-regulation of Tbx1 itself was observed, in accordance with previous observations that RA represses Tbx1 expression. Thus, by specifically blocking the action of the Cyp26 enzymes we can recapitulate many elements of the Tbx1 mutant mouse, supporting the hypothesis that the dysregulation of RA-controlled morphogenesis contributes to the Tbx1 loss of function phenotype.
机译:Cyp26a1是胚胎发生过程中视黄酸(RA)失活所必需的基因,先前已从微阵列筛选中比较了E9.5处的野生型和空Tbx1小鼠胚胎咽弓(pa),将其识别为潜在的Tbx1靶标。使用实时PCR和Cyp26a1及其两个功能相关的家族成员Cyp26b1和c1的原位杂交分析,我们证明了Tbx1空胚的咽组织中所有三个基因的表达降低和/或改变。使用Cyp26酶功能的特异性抑制剂R115866阻断雏鸡胚胎中的Cyp26功能,导致Tbx1无效小鼠的剂量依赖性表型,包括尾巴和咽弓动脉(paa)丢失,小耳泡,头部间充质,以及在后期出现的DiGeorge综合征样心脏缺陷,包括常见的动脉干和膜周室间隔缺损。分子标记显示咽袋内胚层(ppe)形态发生严重破坏,并减少了paa中平滑肌细胞的染色。 RA合成酶Raldh2的表达也被上调并且Hoxb1表达的改变表明,R115866处理的胚胎中RA水平升高,如针对Tbx1 null小鼠的报道。根据以前观察到RA抑制Tbx1表达,观察到Tbx1本身的下调。因此,通过特异地阻断Cyp26酶的作用,我们可以概括Tbx1突变小鼠的许多元素,支持以下假设:RA控制的形态发生失调有助于Tbx1功能表型的丧失。

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