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孵化过程中鸡动脉导管的转录谱。

Transcriptional profiles in the chicken ductus arteriosus during hatching.

机构信息

Department of Cell Physiology, The Jikei University School of Medicine, Tokyo, Japan.

Department of Life Science and Medical Bioscience, Waseda University, Tokyo, Japan.

出版信息

PLoS One. 2019 Mar 21;14(3):e0214139. doi: 10.1371/journal.pone.0214139. eCollection 2019.

Abstract

The ductus arteriosus, an essential embryonic blood vessel between the pulmonary artery and the descending aorta, constricts after birth or hatching and eventually closes to terminate embryonic circulation. Chicken embryos have two long ductus arteriosi, which anatomically differ from mammal ductus arteriosus. Each long ductus arteriosus is divided into two parts: the pulmonary artery-sided and descending aorta-sided ductus arteriosi. Although the pulmonary artery-sided and descending aorta-sided ductus arteriosi have distinct functional characteristics, such as oxygen responsiveness, the difference in their transcriptional profiles has not been investigated. We performed a DNA microarray analysis (GSE 120116 at NCBI GEO) with pooled tissues from the chicken pulmonary artery-sided ductus arteriosus, descending aorta-sided ductus arteriosus, and aorta at the internal pipping stage. Although several known ductus arteriosus-dominant genes such as tfap2b were highly expressed in the pulmonary artery-sided ductus arteriosus, we newly found genes that were dominantly expressed in the chicken pulmonary artery-sided ductus arteriosus. Interestingly, cluster analysis showed that the expression pattern of the pulmonary artery-sided ductus arteriosus was closer to that of the descending aorta-sided ductus arteriosus than that of the aorta, whereas the morphology of the descending aorta-sided ductus arteriosus was closer to that of the aorta than that of the pulmonary artery-sided ductus arteriosus. Subsequent pathway analysis with DAVID bioinformatics resources revealed that the pulmonary artery-sided ductus arteriosus showed enhanced expression of the genes involved in melanogenesis and tyrosine metabolism compared with the descending aorta-sided ductus arteriosus, suggesting that tyrosinase and the related genes play an important role in the proper differentiation of neural crest-derived cells during vascular remodeling in the ductus arteriosus. In conclusion, the transcription profiles of the chicken ductus arteriosus provide new insights for investigating the mechanism of ductus arteriosus closure.

摘要

动脉导管是肺动脉和降主动脉之间的一种重要的胚胎血管,在出生或孵化后会收缩,最终关闭以终止胚胎循环。鸡胚胎有两条长的动脉导管,在解剖学上与哺乳动物的动脉导管不同。每条长的动脉导管分为肺动脉侧和降主动脉侧动脉导管。尽管肺动脉侧和降主动脉侧动脉导管具有明显的功能特征,如对氧气的反应性,但它们的转录谱差异尚未得到研究。我们对鸡肺动脉侧动脉导管、降主动脉侧动脉导管和内部破壳阶段的主动脉的组织进行了 DNA 微阵列分析(NCBI GEO 中的 GSE120116)。虽然几个已知的动脉导管主导基因,如 tfap2b,在肺动脉侧动脉导管中高度表达,但我们新发现了在鸡肺动脉侧动脉导管中高度表达的基因。有趣的是,聚类分析显示,肺动脉侧动脉导管的表达模式与降主动脉侧动脉导管更为接近,而与主动脉的表达模式则不那么接近,而降主动脉侧动脉导管的形态则与主动脉更为接近,而与肺动脉侧动脉导管的形态则不那么接近。随后使用 DAVID 生物信息学资源进行的途径分析显示,与降主动脉侧动脉导管相比,肺动脉侧动脉导管中涉及黑色素生成和酪氨酸代谢的基因表达增强,表明酪氨酸酶和相关基因在动脉导管中血管重塑过程中神经嵴衍生细胞的适当分化中发挥重要作用。总之,鸡动脉导管的转录谱为研究动脉导管关闭的机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d582/6428269/954ae437fa6e/pone.0214139.g001.jpg

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