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首页> 外文期刊>Development >Sprouty is a general inhibitor of receptor tyrosine kinase signaling.
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Sprouty is a general inhibitor of receptor tyrosine kinase signaling.

机译:Sprouty是受体酪氨酸激酶信号传导的一般抑制剂。

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摘要

Sprouty was originally identified as an inhibitor of Drosophila FGF receptor signaling during tracheal development. By following the capacity of ectopic Sprouty to abolish the pattern of activated MAP kinase in embryos, we show that Sprouty can inhibit other receptor tyrosine kinase (RTK) signaling pathways, namely the Heartless FGF receptor and the EGF receptor. Similarly, in wing imaginal discs, ectopic Sprouty abolishes activated MAP kinase induced by the EGF receptor pathway. Sprouty expression is induced by the EGFR pathway in some, but not all, tissues in which EGFR is activated, most notably in follicle cells of the ovary, the wing imaginal disc and the eye disc. In the ovary, induction of sprouty expression follows the pattern of EGFR activation in the follicle cells. Generation of homozygous sprouty mutant follicle-cell clones demonstrates an essential role for Sprouty in restricting EGFR activation throughout oogenesis. At the stage when dorso-ventral polarity of the follicle cells is established, Sprouty limits the ventral expansion of the activating Gurken signal. Later, when dorsal appendage fates are determined, reduction of signaling by Sprouty facilitates the induction of inter-appendage cell fates. The capacity of Sprouty to reduce or eliminate accumulation of activated MAP kinase indicates that in vivo it intersects with the pathway upstream to MAP kinase. The ability of ectopic Sprouty to rescue lethality caused by activated Raf suggests that it may impinge upon the pathway by interacting with Raf or downstream to it.
机译:Sprouty最初被确定为在气管发育过程中果蝇FGF受体信号转导的抑制剂。通过遵循异位Sprouty消除胚胎中激活的MAP激酶模式的能力,我们表明Sprouty可以抑制其他受体酪氨酸激酶(RTK)信号传导途径,即无心FGF受体和EGF受体。同样,在机翼假想盘中,异位Sprouty消除了由EGF受体途径诱导的活化MAP激酶。 EGFR通路在某些但并非全部激活了EGFR的组织中诱导EGFR表达,最明显的是在卵巢的卵泡细胞,翼状视盘和眼盘中。在卵巢中,发芽表达的诱导遵循卵泡细胞中EGFR激活的模式。纯合的发芽突变卵泡细胞克隆的产生证明Sprouty在整个卵子发生过程中限制EGFR活化的重要作用。在卵泡细胞的背腹极性建立的阶段,Sprouty限制了激活的Gurken信号的腹侧扩张。后来,当确定了背肢的命运时,Sprouty减少了信号传导,从而促进了阑尾间细胞的命运。 Sprouty减少或消除活化的MAP激酶积累的能力表明,它在体内与MAP激酶上游的通路相交。异位Sprouty挽救被激活的Raf引起的致死性的能力表明,它可能通过与Raf相互作用或在其下游相互作用而影响该途径。

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