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果蝇 Torso 样蛋白在原肠胚质膜上的积累表明它从蛋壳中转位。

Accumulation of the Drosophila Torso-like protein at the blastoderm plasma membrane suggests that it translocates from the eggshell.

机构信息

Institut de Biologia Molecular de Barcelona (CSIC), Institute for Research in Biomedicine (IRB Barcelona), 08028 Barcelona, Catalonia, Spain.

Institut de Biologia Molecular de Barcelona (CSIC), Institute for Research in Biomedicine (IRB Barcelona), 08028 Barcelona, Catalonia, Spain

出版信息

Development. 2015 Apr 1;142(7):1299-304. doi: 10.1242/dev.117630. Epub 2015 Mar 10.

Abstract

The eggshell serves as a depository for proteins that play an important role in early embryonic development. In particular, the Drosophila eggshell is responsible for transferring asymmetries from the egg chamber to specify the regions at both ends of the embryo through the uneven activation of the Torso (Tor) receptor in its membrane. This process relies on the restricted expression of the gene torso-like (tsl) in subpopulations of follicle cells during oogenesis and its protein accumulation at both poles of the eggshell, but it is not known how this signal is transmitted to the embryo. Here, we show that Tsl accumulates at the embryonic plasma membrane, even in the absence of the Tor receptor. However, during oogenesis, we detected Tsl accumulation only at the eggshell. These results suggest that there is a two-step mechanism to transfer the asymmetric positional cues from the egg chamber into the early embryo: initial anchoring of Tsl at the eggshell as it is secreted, followed by its later translocation to the egg plasma membrane, where it enables Tor receptor activation. Translocation of anchored determinants from the eggshell might then regulate the spatial and temporal control of early embryonic developmental processes.

摘要

蛋壳是蛋白质的储存库,这些蛋白质在早期胚胎发育中起着重要作用。特别是,果蝇的蛋壳负责通过其膜上的 Torso(Tor)受体的不均匀激活,将不对称性从卵室传递到胚胎的两端,从而指定胚胎的区域。这个过程依赖于基因 torso-like(tsl)在卵子发生过程中在滤泡细胞的亚群中的受限表达及其在蛋壳两极的蛋白质积累,但尚不清楚该信号如何传递到胚胎。在这里,我们表明 Tsl 积累在胚胎质膜上,即使在没有 Tor 受体的情况下也是如此。然而,在卵子发生过程中,我们仅在蛋壳上检测到 Tsl 积累。这些结果表明,从卵室向早期胚胎传递不对称位置线索存在两步机制:在 Tsl 分泌时将其初始锚定在蛋壳上,然后将其转移到卵质膜上,在那里它能够激活 Tor 受体。然后,从蛋壳固定的决定因素的易位可能调节早期胚胎发育过程的时空控制。

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