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receptor tyrosine phosphatase {psi} is required for Delta/Notch signalling and cyclic gene expression in the presomitic mesoderm.

机译:受体酪氨酸磷酸酶{psi}是早熟中胚层中Delta / Notch信号和循环基因表达所必需的。

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摘要

Segmentation in vertebrate embryos is controlled by a biochemical oscillator ('segmentation clock') intrinsic to the cells in the unsegmented presomitic mesoderm, and is manifested in cyclic transcription of genes involved in establishing somite polarity and boundaries. We show that the receptor protein tyrosine phosphatase psi (RPTPpsi) gene is essential for normal functioning of the somitogenesis clock in zebrafish. We show that reduction of RPTPpsi activity using morpholino antisense oligonucleotides results in severe disruption of the segmental pattern of the embryo, and loss of cyclic gene expression in the presomitic mesoderm. Analysis of cyclic genes in RPTPpsi morphant embryos indicates an important requirement for RPTPpsi in the control of the somitogenesis clock upstream of or in parallel with Delta/Notch signalling. Impairing RPTPpsi activity also interferes with convergent extension during gastrulation. We discuss this dual requirement for RPTPpsi in terms of potential functions in Notch and Wnt signalling.
机译:脊椎动物胚胎中的节段受未节段的中胚层中细胞固有的生化振荡器(“节段时钟”)控制,并表现为涉及建立体节极性和边界的基因的循环转录。我们表明,受体蛋白酪氨酸磷酸酶psi(RPTPpsi)基因对于斑马鱼中的体细胞发生时钟的正常运作至关重要。我们显示,使用吗啉代反义寡核苷酸降低RPTPpsi活性会严重破坏胚胎的节段模式,并在早熟中胚层中丧失循环基因的表达。分析RPTPpsi突变体胚胎中的环状基因表明,对TPTPpsi的重要要求是控制Delta / Notch信号上游或与之并行的体发生时钟。 RPTPpsi活性受损也会干扰胃形成过程中的收敛性扩张。我们根据Notch和Wnt信号的潜在功能讨论RPTPpsi的双重要求。

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