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首页> 外文期刊>The Journal of Reproduction and Development >p27(Kip1) Negatively Regulates the Activation of Murine Primordial Oocytes
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p27(Kip1) Negatively Regulates the Activation of Murine Primordial Oocytes

机译:p27(Kip1)负调控小鼠原始卵母细胞的激活。

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In mice, small oocytes (primordial oocytes) are enclosed within flattened granulosa cells to form primordial follicles around birth. A small number of primordial oocytes enter the growth phase, whereas others are quiescent. The mechanism regulating this selection of primordial oocytes is not well understood. The objective of the present study was to understand the role of p27(Kip1), which regulates cell cycle progression in somatic cells, in the growth initiation of primordial oocytes in neonatal mice. We studied the localization of p27(Kip1) in 0-, 3-, 5-, 7- and 21-day-old mouse ovaries by immunohistochemistry. Ovaries from 3-day-old mice were treated with p27(Kip1) siRNAs (small interfering RNAs), and knockdown of p27(Kip1) was determined by immunohistochemistry and Western blotting. Ovaries treated with siRNAs were organ-cultured for 6 days, and oocyte growth was estimated histologically.. Expression of p27(Kip1) was undetectable in the primordial oocytes of newborn mice. In the 3-day-old ovaries (n=3), p27(Kip1) was demonstrated in the nucleus of 36 +/- 6% primordial oocytes. The percentage of p27(Kip1)-positive primordial oocytes increased to 72 8 (n=3), 85 7 (n=3) and 93 5 (n=3) in the 5-, 7- and 21-day-old mouse ovaries, respectively. After knockdown of the p27(Kip1) protein by siRNAs, a higher proportion of oocytes entered the growth phase in cultured ovaries than those in the control. These results suggest that p27(Kip1) negatively regulates primordial oocyte growth and that knockdown of p27(Kip1) leads primordial oocytes to enter the growth phase in vitro.
机译:在小鼠中,小的卵母细胞(原始卵母细胞)被包裹在扁平的颗粒细胞内,在出生时形成原始卵泡。少数原始卵母细胞进入生长期,而其他卵母细胞则处于静止状态。尚不清楚调节这种原始卵母细胞选择的机制。本研究的目的是了解p27(Kip1)调节体细胞中细胞周期进程在新生小鼠原始卵母细胞生长中的作用。我们通过免疫组织化学研究了p27(Kip1)在0、3、5、7和21天大的小鼠卵巢中的定位。用p27(Kip1)siRNA(小干扰RNA)处理3日龄小鼠的卵巢,并通过免疫组织化学和Western印迹法检测p27(Kip1)的敲低。将经过siRNA处理的卵巢器官培养6天,并从组织学角度评估卵母细胞的生长。在新生小鼠的原始卵母细胞中未检测到p27(Kip1)的表达。在3天大的卵巢(n = 3)中,在36 +/- 6%的原始卵母细胞核中显示出p27(Kip1)。在5、7和21天龄的小鼠中,p27(Kip1)阳性原始卵母细胞的百分比增加到72 8(n = 3),85 7(n = 3)和93 5(n = 3)卵巢。 siRNA敲除p27(Kip1)蛋白后,培养的卵巢中卵母细胞进入生长阶段的比例高于对照组。这些结果表明,p27(Kip1)负调节原始卵母细胞的生长和p27(Kip1)的敲低导致原始卵母细胞进入体外的生长阶段。

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