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A Drosophila Protease Cascade Member Seminal Metalloprotease-1 Is Activated Stepwise by Male Factors and Requires Female Factors for Full Activity

机译:果蝇蛋白酶级联成员精液金属蛋白酶-1被男性因素逐步激活需要女性因素才能充分发挥作用

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摘要

Females and males of sexually reproducing animals must cooperate at the molecular and cellular level for fertilization to succeed, even though some aspects of reproductive molecular biology appear to involve antagonistic interactions. We previously reported the existence of a proteolytic cascade in Drosophila melanogaster seminal fluid that is initiated in the male and ends in the female. This proteolytic cascade, which processes at least two seminal fluid proteins (Sfps), is a useful model for understanding the regulation of Sfp activities, including proteolysis cascades in mammals. Here, we investigated the activation mechanism of the downstream protease in the cascade, the astacin-family metalloprotease Seminal metalloprotease-1 (Semp1, CG11864), focusing on the relative contribution of the male and female to its activation. We identified a naturally occurring semp1 null mutation within the Drosophila Genetic Reference Panel. By expressing mutant forms of Semp1 in males homozygous for the null mutation, we discovered that cleavage is required for the complete activation of Semp1, and we defined at least two sites that are essential for this activational cleavage. These amino acid residues suggest a two-step mechanism for Semp1 activation, involving the action of at least two male-derived proteases. Although the cascade’s substrates potentially influence both fertility and sperm competition within the mated female, the role of female factors in the activation or activity of Semp1 is unknown. We show here that Semp1 can undergo its activational cleavage in male ejaculates, without female contributions, but that cleavage of Semp1’s substrates does not proceed to completion in ejaculates, indicating an essential role for female factors in Semp1’s full activity. In addition, we find that expression of Semp1 in virgin females demonstrates that females can activate this protease on their own, resulting in activity that is complete but substantially delayed.
机译:尽管生殖分子生物学的某些方面似乎涉及拮抗相互作用,但有性繁殖动物的雌性和雄性必须在分子和细胞水平上合作才能受精。我们先前曾报道果蝇果蝇精液中存在一个蛋白水解级联反应,该反应在雄性中开始,在雌性中结束。这种蛋白水解级联反应,至少处理两个精液蛋白(Sfps),是了解Sfp活性调节的有用模型,包括哺乳动物的蛋白水解级联反应。在这里,我们研究了级联反应下游蛋白酶的激活机制,即阿斯达星家族金属蛋白酶精液金属蛋白酶-1(Semp1,CG11864),重点是男性和女性对其激活的相对贡献。我们在果蝇遗传参考小组中鉴定出自然发生的semp1 null突变。通过在纯合子的无效突变雄性中表达Semp1突变形式,我们发现卵裂对于Semp1的完全激活是必需的,并且我们定义了至少两个对于这种激活卵裂至关重要的位点。这些氨基酸残基提示Semp1激活的两步机制,涉及至少两种雄性蛋白酶的作用。尽管级联的底物可能影响已交配雌性动物的生育力和精子竞争,但雌性因子在Semp1激活或活性中的作用尚不清楚。我们在这里表明,Semp1可以在没有女性参与的情况下在男性射精中进行活化裂解,但是Semp1底物的裂解并未在射精中完成,这表明女性因素在Semp1的全部活动中起着至关重要的作用。此外,我们发现Semp1在未成年雌性动物中的表达表明雌性动物可以自行激活该蛋白酶,从而导致活性完全但显着延迟。

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