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首页> 外文期刊>Developmental genetics >Regulation and function of tinman during dorsal mesoderm induction andheart specification in Drosophila
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Regulation and function of tinman during dorsal mesoderm induction andheart specification in Drosophila

机译:锡曼在果蝇背中胚层诱导和心脏规范过程中的调节和功能

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摘要

The homeobox gene tinman plays a key role in the specification of Drosophila heart progenitors and the visceral mesoderm of the midgut, both of which arise at defined positions within dorsal areas of the mesoderm. Here, we show that in addition to the heart and midgut visceral mesoderm, tinman is also required for the specification of all dorsal body wall muscles. Thus it appears that the precursors of the heart, Visceral musculature, and dorsal somatic muscles are all specified within the same broad domain of dorsal mesodermal tinman expression, locally restricted activities of tinman are also observed during its early, general mesodermal expression, where tinman is required for the activation of the homeobox gene buttonless in precursors of the "dorsal median" (DM) glial cells along the Ventral midline. These observations, together with others showing only mild effects of ectopic tinman expression on heart development, indicate that tinman function is obligatory, but nor sufficient to determine individual tissues within the mesoderm. Therefore, we propose that tinman has a role in integrating positional information that is provided by intersecting domains of additional regulators and signals, which may include Wingless, Sloppy Paired, and Hedgehog in the dorsal mesoderm and EGF-signaling at the ventral midline. Previous studies have shown that Dpp acts as an inductive signal from dorsal ectodermal cells to induce tinman expression in the dorsal mesoderm, which, in turn, is needed for heart and visceral mesoderm formation. In the present report, we show that Thickveins, a type I receptor of Dpp, is essential for the transmission of Dpp signals into the mesoderm. Constitutive activity of Tkv in the entire mesoderm induces ectopic tinman expression in the ventral mesoderm, and this results in the ectopic formation of heart precursors in a defined area of the ventrolateral mesoderm. We further show that Screw, a second BMP2/4-related gene product, Tolloid, a BMP1-related protein, and the zinc finger-containing protein Schnuiri, are required to allow full levels of tinman induction during this process. It is likely that some of these functional and regulatory properties of tinman are shared by tinman-related genes from vertebrates that have similarly important roles in embryonic heart development.
机译:同源盒基因tinman在果蝇心脏祖细胞和中肠内脏中胚层的规格中起着关键作用,两者都出现在中胚层背侧区域的特定位置。在这里,我们表明,除了心脏和中肠内脏中胚层外,所有背侧体壁肌肉的规格也需要锡曼。因此,似乎心脏,内脏肌肉组织和躯体背侧肌肉的前体都在背侧中胚层锡曼表达的同一广域中指定,在早期早期,普遍的中胚层表达中也观察到了锡曼局部受限制的活动,其中锡曼是激活沿腹中线的“背中位数”(DM)神经胶质细胞前体中无纽扣同源盒基因所需的功能。这些观察结果以及其他观察结果仅显示异位锡曼表达对心脏发育的轻微影响,表明锡曼功能是必不可少的,但不足以确定中胚层中的单个组织。因此,我们建议tinman在整合位置信息中发挥作用,该位置信息是由其他调节器和信号的相交域提供的,这些信息可能包括背中皮中的Wingless,Sloppy Paired和Hedgehog以及腹中线的EGF信号。先前的研究表明,Dpp作为来自背外胚层细胞的诱导信号,以诱导Tinman在背中胚层中的表达,而这反过来又是心脏和内脏中胚层形成所必需的。在本报告中,我们显示了Dpp的I型受体Thickveins对于将Dpp信号传输到中胚层中至关重要。 Tkv在整个中胚层中的本构活性诱导腹膜中胚层中异位丁曼的表达,这导致在腹侧中胚层的限定区域中心脏前体的异位形成。我们进一步表明,第二个BMP2 / 4相关基因产物Screw,Tolloid,BMP1相关蛋白和含锌指的蛋白Schnuiri,需要在此过程中允许完全水平的锡曼诱导。锡曼的这些功能和调节特性中的某些可能与来自脊椎动物的锡曼相关基因共有,这些基因在胚胎心脏发育中具有相似的重要作用。

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