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首页> 外文期刊>Journal of Cell Science >CYTOSTATIC FACTOR INACTIVATION IS INDUCED BY A CALCIUM-DEPENDENT MECHANISM PRESENT UNTIL THE SECOND CELL CYCLE IN FERTILIZED BUT NOT IN PARTHENOGENETICALLY ACTIVATED MOUSE EGGS
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CYTOSTATIC FACTOR INACTIVATION IS INDUCED BY A CALCIUM-DEPENDENT MECHANISM PRESENT UNTIL THE SECOND CELL CYCLE IN FERTILIZED BUT NOT IN PARTHENOGENETICALLY ACTIVATED MOUSE EGGS

机译:直到受精细胞中的第二个细胞周期都存在钙依赖性机制,才能诱导细胞凋亡因子的失活,而不是单基因遗传激活的小鼠卵

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摘要

Cytostatic factor (CSF) is an activity responsible for the metaphase II arrest in vertebrate oocytes, This activity maintains a high level of maturation promoting factor (MPF) in the oocyte and both activities are destroyed after fertilization or parthenogenetic activation. To study some of the characteristics of the mechanism involved in MPF and CSF destruction, we constructed hybrid cells between metaphase LT arrested oocytes and early embryos obtained after fertilization or artificial activation, We found that the behavior of hybrid cells differed depending upon the type of oocyte activation, Initially, the reaction of both types of hybrid cells was similar, the nuclear envelope broke down and chromatin condensation was induced. However, while metaphase II oocytes fused with parthenogenetic eggs remained arrested in M-phase, the oocytes fused with fertilized eggs underwent activation and passed into interphase, This ability of fertilized eggs to induce oocyte activation was still present at the beginning,but not at the end of the second embryonic cell cycle, Oocyte activation induced by fusion with a fertilized egg could be prevented when calcium was chelated by BAPTA. Thus, element(s) of the mechanism involved in calcium release triggered by a sperm component at fertilization remain(s) active until the second cell cycle and is (are) inactivated before the end of the 2-cell stage. [References: 33]
机译:细胞生长抑制因子(CSF)是负责脊椎动物卵母细胞中期II停滞的一种活性,该活性维持卵母细胞中高水平的成熟促进因子(MPF),并且在受精或孤雌生殖激活后这两种活性均被破坏。为了研究参与MPF和CSF破坏的机制的某些特征,我们在中期LT捕获的卵母细胞和受精或人工激活后获得的早期胚胎之间构建了杂交细胞,我们发现杂交细胞的行为因卵母细胞的类型而异活化,最初,两种类型的杂交细胞的反应是相似的,核被膜破裂并诱导了染色质凝聚。然而,尽管融合有孤雌生殖卵的中期II卵母细胞仍停留在M期,但与受精卵融合的卵母细胞却经历了活化并进入了相间期。受精卵诱导卵母细胞活化的能力在开始时仍然存在,但在开始时并不存在。在第二个胚胎细胞周期的末期,当钙被BAPTA螯合时,可以防止与受精卵融合诱导的卵母细胞活化。因此,受精过程中由精子成分触发的钙释放所涉及的机制要素一直保持活跃,直到第二个细胞周期,并在2个细胞阶段结束之前被灭活。 [参考:33]

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