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首页> 外文期刊>Development >Pericardin, a Drosophila type IV collagen-like protein is involved in the morphogenesis and maintenance of the heart epithelium during dorsal ectoderm closure.
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Pericardin, a Drosophila type IV collagen-like protein is involved in the morphogenesis and maintenance of the heart epithelium during dorsal ectoderm closure.

机译:Pericardin是果蝇IV型胶原样蛋白,参与背外胚层闭合过程中心脏上皮的形态发生和维持。

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摘要

The steps that lead to the formation of a single primitive heart tube are highly conserved in vertebrate and invertebrate embryos. Concerted migration of the two lateral cardiogenic regions of the mesoderm and endoderm (or ectoderm in invertebrates) is required for their fusion at the midline of the embryo. Morphogenetic signals are involved in this process and the extracellular matrix has been proposed to serve as a link between the two layers of cells. Pericardin (Prc), a novel Drosophila extracellular matrix protein is a good candidate to participate in heart tube formation. The protein has the hallmarks of a type IV collagen alpha-chain and is mainly expressed in the pericardial cells at the onset of dorsal closure. As dorsal closure progresses, Pericardin expression becomes concentrated at the basal surface of the cardioblasts and around the pericardial cells, in close proximity to the dorsal ectoderm. Pericardin is absent from the lumen of the dorsal vessel.Genetic evidence suggests that Prc promotes the proper migration and alignment of heart cells. Df(3)vin6 embryos, as well as embryos in which prc has been silenced via RNAi, exhibit similar and significant defects in the formation of the heart epithelium. In these embryos, the heart epithelium appears disorganized during its migration to the dorsal midline. By the end of embryonic development, cardial and pericardial cells are misaligned such that small clusters of both cell types appear in the heart; these clusters of cells are associated with holes in the walls of the heart. A prc transgene can partially rescue each of these phenotypes, suggesting that prc regulates these events. Our results support, for the first time, the function of a collagen-like protein in the coordinated migration of dorsal ectoderm and heart cells.
机译:导致单个原始心管形成的步骤在脊椎动物和无脊椎动物胚胎中高度保守。中胚层和内胚层(或无脊椎动物的外胚层)的两个侧向心源区的协调迁移是它们在胚胎中线融合所必需的。形态发生信号参与该过程,并且已提出细胞外基质用作细胞两层之间的连接。 Pericardin(Prc)是一种新的果蝇细胞外基质蛋白,是参与心管形成的良好候选者。该蛋白具有IV型胶原蛋白α链的标志,主要在背闭合开始时在心包细胞中表达。随着背闭合的进行,心包膜蛋白的表达变得集中在成纤维细胞的基面和心包细胞周围,紧邻背外胚层。背血管腔内无心包素。遗传证据表明,Prc可促进心脏细胞的正常迁移和排列。 Df(3)vin6胚胎,以及其中已通过RNAi使prc沉默的胚胎,在心脏上皮细胞的形成过程中显示出相似且明显的缺陷。在这些胚胎中,心脏上皮在向背中线的迁移过程中显得杂乱无章。到胚胎发育结束时,心脏和心包细胞未对准,从而在心脏中出现两种细胞类型的小簇。这些细胞簇与心脏壁上的孔相关。 prc转基因可以部分拯救每种这些表型,表明prc调节这些事件。我们的研究结果首次支持了胶原蛋白样蛋白在背外胚层和心脏细胞协调迁移中的功能。

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