[蛋白酶K温和处理小鼠GV卵母细胞核仁样小体纤维蛋白定位及Pre-rRNA合成位点分析]。

Ontogenez Pub Date : 2015-05-01
K V Shishova, Yu M Khodarovich, E A Lavrentyeva, O V Zatsepina
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引用次数: 0

摘要

哺乳动物卵母细胞的出生后发育伴随着核仁器官的功能和结构重塑:该过程的最后阶段是在排卵前卵母细胞中形成称为核仁样体(NLBs)的大物体(直径达10 μm)。N - LB材料被证明是早期胚胎发育所必需的,但其组成仍未表征。本研究利用蛋白结合染料荧光素-5-异硫氰酸酯(FITC)表明,局部高浓度的蛋白是小鼠GV卵母细胞中必需的NLB成分。使用蛋白酶K对卵母细胞进行温和处理,其中一种蛋白首次被鉴定出来;鉴定出的蛋白质是纤维蛋白,是早期pre-rRNA加工的一个因素。纤维蛋白存在于所有能够合成rRNA的卵母细胞内的NLB团块中;然而,与“表面”纤维蛋白不同,它不与注射到卵母细胞中的BrUTP共定位,以鉴定转录的核糖体基因。这些观察结果暗示核仁蛋白的积累不参与核糖体的生物发生在NLB内。nsn型GV卵母细胞单个细胞核中存在的所有nlb都含有纤原蛋白,并与活性核糖体基因相关。本研究的结果表明,对GV小鼠卵母细胞进行蛋白酶K处理可以:(1)在密集堆积的NLB材料中识别“隐型”蛋白,(2)在基于brutp的rRNA合成位点识别过程中增强卵母细胞图像质量,但(3)不能检测NLB内部肿块中的活性核糖体基因。荧光染料FITC可推荐用于评估所有哺乳动物卵母细胞的细胞内蛋白定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Analysis of the Localization of Fibrillarin and Sites of Pre-rRNA Synthesis in the Nucleolus-Like Bodies of Mouse GV Oocytes after Mild Treatment with Proteinase K].

Postnatal development of mammalian oocytes is accompanied by functional and structural remodeling of the nucleolar apparatus: the final stage of this process is the formation of large objects (up to 10 μm in diameter) termed nucleolus-like bodies (NLBs) in preovulatory GV oocytes. N LB material was shown to be essential for early embryonic development, but its composition is still uncharacterized. In the present study, the protein-binding dye fluorescein-5-isothiocyanate (FITC) was used to show that proteins characterized by a high local concentration are essential NLB components in mouse GV oocytes. One of these proteins was able to be identified for the first time using a mild treatment of oocytes with proteinase K; the protein identified was fibrillarin, a factor of early pre-rRNA processing. Fibrillarin is present in the inner NLB mass of all oocytes capable of synthesizing rRNA; however, it is not colocalized with BrUTP microinjected into oocytes in order to identify transcribed ribosomal genes, in contrast to the "surface" fibrillarin. These observations imply the accumulation of nucleolar proteins not involved in ribosome biogenesis inside the NLB. All NLBs present in an individual nucleus of an NSN-type GV oocyte contain fibrillarin and are associated with active ribosomal genes. The results obtained in the present work demonstrate that proteinase K treatment of GV mouse oocytes allows for: (1) identification of "cryptic" proteins inside the densely packed NLB material and (2) the enhancement of oocyte image quality during BrUTP-based identification of rRNA synthesis sites but (3) not for the detection of active ribosomal genes in the inner mass of the NLB. The fluorescent dye FITC can be recommended for assessment of intracellular protein localization in the oocytes of all mammalian species.

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