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首页> 外文期刊>Journal of Cell Science >Cell cycle-dependent repetitive Ca2+ waves induced by a cytosolic sperm extract in mature ascidian eggs mimic those observed at fertilization
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Cell cycle-dependent repetitive Ca2+ waves induced by a cytosolic sperm extract in mature ascidian eggs mimic those observed at fertilization

机译:成熟卵子中的胞浆精子提取物诱导的细胞周期依赖性重复Ca 2+波模仿受精时观察到的

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摘要

Sperm-triggered Ca2+ oscillations occur throughout the animal kingdom. The mechanism sperm use to trigger Ca2+ oscillations at fertilization has not been resolved in any egg. The temporal, spatial and regulatory characteristics of the Ca2+ oscillations during fertilization in ascidians offer a unique advantage over other systems for determining the mechanism of fertilization, For example, sperm trigger two phases of Ca2+ oscillations that are all waves in ascidians,. The first of these Ca2+ waves begins at the point of sperm-egg fusion while a second phase of Ca2+ waves originates at a vegetal protrusion termed the contraction pole. In addition, cyclin B1-dependent kinase activity provides a form of positive feedback, maintaining the second phase of Ca2+ waves during meiosis acid thereby ensuring meiotic exit. We therefore prepared cytosolic ascidian sperm extracts or MonoQ-fractionated ascidian sperm extracts from this urochordate to investigate if a Ca2+-releasing sperm-borne factor was responsible for egg activation. Spatially, ascidian sperm extract induced repetitive Ca2+ waves that mimicked the spatial pattern displayed during fertilization: all the second-phase Ca2+ waves originated at a vegetal protrusion termed the contraction pole (thus mimicking fertilisation). We also demonstrated that ascidian sperm extract-induced Ca2+ oscillations were maintained when CDK activity was elevated and MAP kinase activity was low, as found previously for sperm-triggered Ca2+ oscillations. As would be predicted, large doses of ascidian sperm extract injected into prophase-stage oocytes, lacking CDK activity, failed to induce any Ca2+ release even though they responded to microinjection of the Ca2+-releasing second messenger inositol 1,4,5-trisphosphate, Finally, since the Ca2+-releasing activity from Mono-Q fractionated ascidian sperm extract eluted predominantly as one fraction, this may imply that one factor is responsible for the Ca2+-releasing activity. These data support a model of egg activation whereby the sperm introduces a Ca2+-releasing cytosolic factor into the egg. We demonstrated that ascidian sperm contain a protein factor(s) that is regulated by the egg CDK activity and can trigger all the Ca2+ waves observed at fertilization with a spatial pattern that mimics those initiated by sperm. [References: 59]
机译:在整个动物界中,精子触发的Ca2 +振荡都会发生。尚未发现任何受精卵在受精时触发Ca2 +振荡的机制。与其他确定受精机理的系统相比,海鞘中受精过程中Ca2 +振荡的时间,空间和调节特性具有独特的优势,例如,精子触发了两个阶段的Ca2 +振荡,它们都是海鞘中的波。这些Ca2 +波中的第一个开始于精卵融合点,而Ca2 +波的第二个相起源于被称为收缩极的植物突起。此外,细胞周期蛋白B1依赖性激酶活性提供了一种形式的正反馈,在减数分裂酸期间维持了Ca2 +波的第二阶段,从而确保了减数分裂的退出。因此,我们从该urochordate中制备了胞质海胆精子提取物或MonoQ分离的海胆精子提取物,以研究释放Ca2 +的精子携带因子是否对卵子活化起作用。在空间上,海鞘精子提取物诱导重复的Ca2 +波,模仿了受精过程中显示的空间模式:所有第二相Ca2 +波都起源于被称为收缩极的植物突起(因此模仿了受精)。我们还证明,当CDK活性升高而MAP激酶活性低时,海藻精子提取物诱导的Ca2 +振荡得以维持,这是先前发现的由精子触发的Ca2 +振荡所致。如预料的那样,即使缺乏注射钙的第二信使肌醇1,4,5-三三磷酸,最后,由于从Mono-Q分离的海鞘精子提取物中释放的Ca2 +活性主要作为一小部分洗脱,这可能暗示着一个因素导致了Ca2 +的释放活性。这些数据支持卵活化的模型,其中精子将释放Ca2 +的胞质因子引入卵中。我们证明,海鞘精子包含受卵CDK活性调节的蛋白质因子,并可以触发受精时观察到的所有Ca2 +波,其空间模式模仿由精子引发的Ca2 +波。 [参考:59]

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