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A network of interactions among seminal proteins underlies the long-term postmating response in Drosophila

机译:果蝇蛋白之间相互作用的网络是果蝇长期后代反应的基础

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摘要

Despite the importance of seminal proteins in fertility and their capacity to alter mated females' physiology, the molecular pathways and networks through which they act have not been well characterized. Drosophila seminal fluid includes proteins that fall into biochemical classes conserved from insects to mammals, making it an excellent model with which to address this question. Drosophila seminal fluid also contains a “sex peptide” (SP, Acp70A) that plays a major role in regulating egg production and mating behavior in females for several days after mating. This long-term postmating response (LTR) initially requires the association of SP with sperm. The LTR also requires members of the conserved seminal protein classes (two lectins, a protease, and a cysteine-rich secretory protein). Here, we show that these seminal proteins function interdependently, regulating a three-step cascade (first, at the level of seminal protein transfer to the female; second, at the level of stability; and third, at the level of localization within females), leading to the normal localization of SP to sperm-storage organs. This localization is, in turn, necessary for successful induction of the LTR. The requirements for manifestation of the LTR in Drosophila establish the paradigm that multiple seminal proteins can exert their actions through a multistep, multicomponent network of interactions.
机译:尽管精子蛋白在生育能力中具有重要意义,并且它们具有改变已交配雌性生理功能的能力,但其作用的分子途径和网络尚未得到很好的表征。果蝇的精液中包括从昆虫到哺乳动物都属于生物化学类别的蛋白质,这使其成为解决该问题的极佳模型。果蝇精液还含有“性别肽”(SP,Acp70A),在交配后的几天中,它在调节雌性卵的产生和交配行为中起主要作用。这种长期的后期交配反应(LTR)最初需要将SP与精子相关联。 LTR还需要保守精蛋白类别的成员(两个凝集素,一种蛋白酶和一个富含半胱氨酸的分泌蛋白)。在这里,我们显示了这些精蛋白相互依赖地起作用,调节了三步级联反应(首先是在精蛋白向女性的转移水平;其次是在稳定性水平;其次是在雌性体内的定位水平) ,导致SP正常定位于精子存储器官。反过来,这种定位是成功诱导LTR所必需的。果蝇中LTR表现的要求建立了一个范例,即多个精蛋白可以通过多步,多组分相互作用网络发挥作用。

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