首页> 外文期刊>Zygote >Soluble sperm extract specifically recapitulates the initial phase of the Ca2+ response in the fertilized oocyte of P-occelata following a G-protein/ PLC beta signaling pathway
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Soluble sperm extract specifically recapitulates the initial phase of the Ca2+ response in the fertilized oocyte of P-occelata following a G-protein/ PLC beta signaling pathway

机译:可溶性精子提取物特别概括了遵循G蛋白/ PLCβ信号转导途径的P-occelata受精卵母细胞中Ca2 +响应的初始阶段。

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摘要

Matured oocytes of the annelidan worm Pseudopotamilla occelata are fertilized at the first metaphase of the meiotic division. During the activation by fertilizing spermatozoa, the mature oocyte shows a two-step intracellular Ca2+ increase. Whereas the first Ca2+ increase is localized and appears to utilize the inositol 1,4,5-trisphosphate (IP3)-sensitive Ca2+ stores, the second Ca2+ increase is global and involves Ca2+ influx via voltage-gated Ca2+ channels on the entire surface of the oocyte. To study how sperm trigger the Ca2+ increases during fertilization, we prepared soluble sperm extract (SE) and examined its ability to induce Ca2+ increases in the oocyte. The SE could evoke a Ca2+ increase in the oocyte when it was added to the medium, but not when it was delivered by microinjection. However, the second-step Ca2+ increase leading to the resumption of meiosis did not follow in these eggs. Local application of SE induced a non-propagating Ca2+ increase and formed a cytoplasmic protrusion that was similar to that created by the fertilizing sperm at the first stage of the Ca2+ response, important for sperm incorporation into the oocyte. Our results suggest that the fertilizing spermatozoon may trigger the first-step Ca2+ increase before it fuses with the oocyte in a pathway that involves the G-protein-coupled receptor and phospholipase C. Thus, the first phase of the Ca2+ response in the fertilized egg of this species is independent of the second phase of the Ca2+ increase for egg activation.
机译:在减数分裂分裂的第一个中期受精的线虫线虫假卵小卵菌卵。在通过使精子受精而激活的过程中,成熟的卵母细胞显示出两步的细胞内Ca2 +增加。尽管第一个Ca2 +增加是局部的,并且似乎利用了对肌醇1,4,5-三磷酸(IP3)敏感的Ca2 +存储,但是第二个Ca2 +增加是全局性的,涉及Ca2 +通过电压门控Ca2 +通道流入整个表面。卵母细胞。为了研究精子如何在受精过程中触发Ca2 +增加,我们制备了可溶性精子提取物(SE),并检查了其诱导卵母细胞Ca2 +增加的能力。当将SE添加到培养基中时,SE可能引起卵母细胞中Ca2 +的增加,但是当通过显微注射递送时却不能。但是,这些卵中并未出现导致减数分裂恢复的第二步Ca2 +增加。 SE的局部应用诱导了非传播的Ca2 +增加,并形成了类似于在Ca2 +响应的第一阶段受精的精子所产生的胞质突起,这对于将精子掺入卵母细胞很重要。我们的研究结果表明,受精精子可能在与卵母细胞融合的过程中触发了第一步Ca2 +的增加,该途径涉及G蛋白偶联受体和磷脂酶C。因此,受精卵中Ca2 +响应的第一阶段该物种的生长与蛋活化中Ca2 +增加的第二阶段无关。

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