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首页> 外文期刊>Development Growth and Differentiation >Induction of initial heart alpha-actin, smooth muscle alpha-actin, in chick pregastrula epiblast: The role of hypoblast and fibroblast growth factor-8
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Induction of initial heart alpha-actin, smooth muscle alpha-actin, in chick pregastrula epiblast: The role of hypoblast and fibroblast growth factor-8

机译:雏鸡前胃上皮细胞中初始心脏α-肌动蛋白,平滑肌α-肌动蛋白的诱导:次生纤维和成纤维细胞生长因子8的作用

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摘要

During heart development at the gastrula stage, inhibition of bone morphogenetic protein (BMP) activity affects the heart specification but does not impair the expression of smooth muscle alpha-actin (SMA), which is first expressed in the heart mesoderm and recruited into initial heart myofibrils. Interaction of tissues between posterior epiblast and hypoblast at the early blastula stage is necessary to induce the expression of SMA, in which Nodal and Chordin are thought to be involved. Here we investigated the role of fibroblast growth factor-8 (FGF8) in the expression of SMA. In situ hybridization and reverse transcription-polymerase chain reaction showed that Fgf8b is expressed predominantly in the nascent hypoblast. Anti-FGF8b antibody inhibited the expression of SMA, cTNT, and Tbx5, which are BMP-independent heart mesoderm/early cardiomyocyte genes, but not Brachyury in cultured posterior blastoderm, and combined FGF8b and Nodal, but neither factor alone induced the expression of SMA in association with heart specific markers in cultured epiblast. Although FGF8b did not induce the upregulation of phospho-Smad2, anti-FGF8b properties suppressed phospho-Smad2 in cultured blastoderm. FGF8b was able to reverse the BMP-induced inhibition of cardiomyogenesis. The results suggest that FGF8b acts on the epiblast synergistically with Nodal at the pregastrula stage and may play a role in the expression of SMA during early cardiogenesis.
机译:在下腹阶段的心脏发育过程中,抑制骨形态发生蛋白(BMP)活性会影响心脏规格,但不会损害平滑肌α-肌动蛋白(SMA)的表达,后者首先在心脏中胚层表达并被募集到初始心脏中肌原纤维。在胚泡早期,后表皮细胞与次胚细胞之间的组织相互作用对于诱导SMA的表达是必要的,其中认为Nodal和Chordin参与其中。在这里,我们研究了成纤维细胞生长因子8(FGF8)在SMA表达中的作用。原位杂交和逆转录聚合酶链反应表明Fgf8b主要在新生的次胚细胞中表达。抗FGF8b抗体抑制SMA,cTNT和Tbx5的表达,它们是BMP依赖性的中胚层/早期心肌细胞基因,但在培养的后胚层中不具有Brachyury,并与FGF8b和Nodal结合使用,但没有一个因素单独诱导SMA的表达与培养的成骨细胞中的心脏特异性标记物相关。尽管FGF8b不会诱导磷酸化Smad2的上调,但抗FGF8b的特性抑制了培养胚盘中的磷酸化Smad2。 FGF8b能够逆转BMP诱导的心肌发生抑制作用。结果表明,FGF8b在前胃阶段与Nodal协同作用于上皮细胞,并可能在早期心脏发生过程中参与SMA的表达。

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