Bento Margaret, Correia Elizabeth, Tavares Ana T, Becker Jörg D, Belo José A
Regenerative Medicine Program, Departamento de Ciências Biomédicas e Medicina, Universidade do Algarve, Portugal.
Gene Expr Patterns. 2011 Oct;11(7):437-47. doi: 10.1016/j.gep.2011.07.002. Epub 2011 Jul 13.
Genetic evidence has implicated several genes as being critical for heart development. However, the inducers of these genes as well as their targets and pathways they are involved with, remain largely unknown. Previous studies in the avian embryo showed that at HH4 Cerberus (cCer) transcripts are detected in the anterior endomesoderm including the heart precursor cells and later in the left lateral plate mesoderm. We have identified a promoter element of chick cCer able to drive EGFP expression in a population of cells that consistently exit from the anterior primitive streak region, from as early as stage HH3+, and that later will populate the heart. Using this promoter element as a tool allowed us to identify novel genes previously not known to potentially play a role in heart development. In order to identify and study genes expressed and involved in the correct development and differentiation of the vertebrate heart precursor cell (HPC) lineages, a differential screening using Affymetrix GeneChip system technologies was performed. Remarkably, this screening led to the identification of more than 700 transcripts differentially expressed in the heart forming regions (HFR). Bioinformatic tools allowed us to filter the large amount of data generated from this approach and to select a few transcripts for in vivo validation. Whole-mount in situ hybridization and sectioning of selected genes showed heart and vascular expression patterns for these transcripts during early chick development. We have developed an effective strategy to specifically identify genes that are differentially expressed in the HPC lineages. Within this set we have identified several genes that are expressed in the heart, blood and vascular lineages, which are likely to play a role in their development. These genes are potential candidates for future functional studies on early embryonic patterning.
遗传证据表明,有几个基因对心脏发育至关重要。然而,这些基因的诱导因子以及它们的靶标和所涉及的信号通路在很大程度上仍然未知。先前对鸡胚的研究表明,在HH4阶段,在包括心脏前体细胞的前端内胚层以及后来的左侧板中胚层中检测到了Cerberus(cCer)转录本。我们已经鉴定出鸡cCer的一个启动子元件,该元件能够驱动EGFP在一群细胞中表达,这些细胞从最早的HH3 +阶段就持续从前原始条纹区域迁出,随后将迁移至心脏。使用这个启动子元件作为工具,使我们能够鉴定出以前未知的可能在心脏发育中起作用的新基因。为了鉴定和研究在脊椎动物心脏前体细胞(HPC)谱系的正确发育和分化过程中表达并参与其中的基因,我们使用Affymetrix基因芯片系统技术进行了差异筛选。值得注意的是,这种筛选导致鉴定出700多个在心脏形成区域(HFR)中差异表达的转录本。生物信息学工具使我们能够筛选通过这种方法产生的大量数据,并选择一些转录本进行体内验证。对选定基因进行的全胚胎原位杂交和切片显示,在鸡胚早期发育过程中,这些转录本具有心脏和血管表达模式。我们已经开发出一种有效的策略来特异性鉴定在HPC谱系中差异表达的基因。在这个基因集合中,我们鉴定出了几个在心脏、血液和血管谱系中表达的基因,它们可能在其发育过程中发挥作用。这些基因是未来早期胚胎模式形成功能研究的潜在候选基因。