School of Biological Sciences, Monash University, Clayton, VIC 3800, Australia.
Proc Natl Acad Sci U S A. 2013 Sep 3;110(36):14688-92. doi: 10.1073/pnas.1309780110. Epub 2013 Aug 19.
Activation of the Drosophila receptor tyrosine kinase Torso (Tor) only at the termini of the embryo is achieved by the localized expression of the maternal gene Torso-like (Tsl). Tor has a second function in the prothoracic gland as the receptor for prothoracicotropic hormone (PTTH) that initiates metamorphosis. Consistent with the function of Tor in this tissue, Tsl also localizes to the prothoracic gland and influences developmental timing. Despite these commonalities, in our studies of Tsl we unexpectedly found that tsl and tor have opposing effects on body size; tsl null mutants are smaller than normal, rather than larger as would be expected if the PTTH/Tor pathway was disrupted. We further found that whereas both genes regulate developmental timing, tsl does so independently of tor. Although tsl null mutants exhibit a similar length delay in time to pupariation to tor mutants, in tsl:tor double mutants this delay is strikingly enhanced. Thus, loss of tsl is additive rather than epistatic to loss of tor. We also find that phenotypes generated by ectopic PTTH expression are independent of tsl. Finally, we show that a modified form of tsl that can rescue developmental timing cannot rescue terminal patterning, indicating that Tsl can function via distinct mechanisms in different contexts. We conclude that Tsl is not just a specialized cue for Torso signaling but also acts independently of PTTH/Tor in the control of body size and the timing of developmental progression. These data highlight surprisingly diverse developmental functions for this sole Drosophila member of the perforin-like superfamily.
果蝇受体酪氨酸激酶 Torso(Tor)的激活仅在胚胎的末端通过母体基因 Torso-like(Tsl)的局部表达来实现。Tor 在前胸腺中具有第二个功能,作为启动变态的前胸腺激素(PTTH)的受体。与 Tor 在该组织中的功能一致,Tsl 也定位于前胸腺并影响发育时间。尽管存在这些共性,但在我们对 Tsl 的研究中,我们出人意料地发现 tsl 和 tor 对体型有相反的影响;tsl 缺失突变体比正常体型小,而不是像 PTTH/Tor 途径被破坏时那样体型更大。我们进一步发现,尽管这两个基因都调节发育时间,但 tsl 独立于 tor 进行调节。尽管 tsl 缺失突变体在时间上到蛹化的延迟与 tor 突变体相似,但在 tsl:tor 双突变体中,这种延迟被显著增强。因此,tsl 的缺失是加性的,而不是 tor 的上位性。我们还发现,异位表达 PTTH 产生的表型独立于 tsl。最后,我们表明,一种可以挽救发育时间的 Tsl 的改良形式不能挽救末端模式形成,这表明 Tsl 可以通过不同的机制在不同的环境中发挥作用。我们得出结论,Tsl 不仅是 Torso 信号的专门提示,而且在控制体型和发育进展时间方面独立于 PTTH/Tor。这些数据突出了这个唯一的果蝇穿孔素样超家族成员在发育中具有惊人多样化的功能。