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1.
获取高质量的体外成熟卵母细胞是成功进行人类体外受精、动物胚胎生产和克隆的关键。尽管大多数哺乳动物卵母细胞能够在体外自发完成细胞核成熟,但卵母细胞成熟质量远不如体内成熟卵母细胞,其受精后胚胎发育能力较差。目前认为,这可能是由于体外成熟的卵母细胞的胞质成熟不充分造成的。研究表明,卵母细胞体外成熟培养系统与受精率和囊胚发育率有强相关性。  相似文献   

2.
张俊玉  吕珊  牛慧敏  雷安民 《遗传》2018,40(4):279-291
哺乳动物卵母细胞成熟过程需要进行两次连续的不对称分裂,最终形成体积差异巨大的子细胞:大体积的卵母细胞和两种体积较小的极体。不对称分裂现象是哺乳动物卵母细胞减数分裂的典型特征,不对称分裂后的卵母细胞是高度极化的细胞。精卵结合后,细胞重新恢复了对称分裂,但是在卵母细胞减数分裂过程中形成的极性特征却得以保留并影响早期胚胎的极性。本文对近年来在哺乳动物卵母细胞不对称分裂方面的相关研究展开综述,从细胞质不对称分裂和细胞核不对称分裂两个方面对染色体、细胞骨架在哺乳动物卵母细胞不对称分裂中的作用、细胞器在哺乳动物卵母细胞成熟过程中的重组分配、染色体非随机分离等过程进行介绍,旨在从细胞和分子水平阐述哺乳动物卵母细胞不对称分裂的主要机制。  相似文献   

3.
Ghrelin在绵羊体内卵母细胞和早期胚胎的表达   总被引:1,自引:0,他引:1  
为了明确ghrelin是否参与了卵母细胞成熟及胚胎早期发育进程,本研究利用免疫荧光技术和实时定量RT-PCR技术检测了绵羊卵母细胞和体内早期胚胎中ghrelin蛋白的表达定位和ghrelin mRNA水平相对表达变化规律。免疫荧光染色结果表明,ghrelin蛋白主要分布于卵母细胞胞质内;实时定量RT-PCR结果揭示绵羊卵母细胞和早期胚胎ghrelin mRNA的相对表达量依据发育阶段的不同而呈现一定变化规律,即在成熟卵母细胞,2细胞胚胎期和8细胞胚胎期显著高于未成熟卵母细胞和4细胞胚胎期(P<0.05),囊胚期表达量最高。卵母细胞和早期胚胎中ghrelin蛋白的表达及ghrelin mRNA特定的表达模式,揭示这一新型分子在绵羊卵母细胞成熟以及胚胎早期发育过程中具有潜在的调控作用。  相似文献   

4.
胸腺肽-β4(thymosin-β4,Tb4)是一种重要的 G-actin遮蔽因子(G-actin sequestering factor),在细胞微丝活动中有着调节G-actin活性的作用. 以往报道证实了Tb4在细胞中具有广泛的生理作用,但其在哺乳动物卵母细胞成熟和早期胚胎发育等方面的作用,迄今还没有系统的研究报道. 以昆明白小鼠卵巢、卵母细胞和早期胚胎作为实验材料,以免疫( 荧光) 组织化学和RT-PCR技术为主要研究方法,对Tb4的表达与分布进行了研究. 结果显示,Tb4在相关发育过程中,存在差异性的表达和定位变化.结果表明,在小鼠卵母细胞成熟和早期胚胎的发育过程,Tb4能够通过表达与分布的变化对细胞微丝活动和细胞增殖活动进行调控,对小鼠卵母细胞成熟、早期胚胎发育以及胚胎着床过程有重要的作用.  相似文献   

5.
胸腺肽-β4(thymosin-β4,Tb4)是一种重要的G-actin遮蔽因子(G-actin sequestening factor),在细胞微丝活动中有着调节G-actin活性的作用.以往报道证实了Tb4在细胞中具有广泛的生理作用,但其在哺乳动物卵母细胞成熟和早期胚胎发育等方面的作用,迄今还没有系统的研究报道.以昆明白小鼠卵巢、卵母细胞和早期胚胎作为实验材料,以免疫(荧光)组织化学和RT-PCR技术为主要研究方法,对Tb4的表达与分布进行了研究.结果显示,Tb4在相关发育过程中,存在差异性的表达和定位变化.结果表明,在小鼠卵母细胞成熟和早期胚胎的发育过程,Tb4能够通过表达与分布的变化对细胞微丝活动和细胞增殖活动进行调控,对小鼠卵母细胞成熟、早期胚胎发育以及胚胎着床过程有重要的作用.  相似文献   

6.
山羊卵母细胞体外成熟过程中线粒体的动态分布   总被引:2,自引:0,他引:2  
目的研究山羊卵母细胞减数分裂过程中线粒体的动态分布。方法收集山羊卵母细胞,在M199中分别培养4、8、12、16、20和24 h,用特异性线粒体标记探针进行标记,用激光扫描共聚焦显微镜观察线粒体的分布情况。结果生发泡期线粒体多分散在卵母细胞的胞质内,并且距生发泡有一定的距离;生发泡破裂期线粒体逐渐移向染色质;第一次减数分裂中期与第二次减数分裂中期线粒体成簇密布在染色体周围。排出的第一极体中也含有大量的线粒体。结论同其他哺乳动物卵母细胞体外成熟过程中线粒体分布情况相比,线粒体在山羊卵母细胞中的分布具有明显的相似性。线粒体密布在成熟卵母细胞染色体周围可能与极体的排出和受精后染色体的迁移有关。  相似文献   

7.
冯应龙 《生命科学》2003,15(4):238-242
早期线虫胚胎提供了一个研究发育过程的极佳模型。线虫胚胎的第一次分裂是不对称的,产生的两个子细胞在尺度的大小和发育命运上均有不同,而这些不同是由第一次有丝分裂周期中胞质决定子的不均匀分布造成的。通常相信,在受精过程中,精子所携带的中心体介导了对极性建成至关重要的胞质流动的产生。同时,细胞骨架成分被认为参与了胞质成分的定位事件。关于par基因的研究目前进展迅速,大多数par基因的突变都导致了线虫早期胚胎分裂不对称性的丧失。  相似文献   

8.
Feng XQ  Lin YW  Chen YJ  Zhong SQ  Yan XF  Dong JJ  Lei L 《生理学报》2008,60(1):113-118
为研究微管在体外受精与孤雌活化过程中的动态变化,本实验比较了体外受精胚胎、SrCl2激活的孤雌胚胎和体内受精的原核期胚胎在体外发育的情况,采用免疫荧光化学与激光共聚焦显微术检测卵母细胞孤雌活化过程中及体外受精后微管及核的动态变化,以分析微管在减数分裂过程中的作用及其对早期发育的影响.结果显示,体内受精胚胎的发育率显著高于体外受精和孤雌激活胚胎体外发育率(P<0.05),而体外受精与孤雌激活胚胎在各阶段发育率差异均不显著.在体外受精中,精子入卵,激活卵母细胞,减数分裂恢复,纺锤丝牵拉赤道板卜致密排列的母源染色体向纺锤体两侧迁移;后期将染色体拉向两极;末期时,微管分布于两组已去凝集的母源染色体之间,卵母细胞排出第二极体(the second polarbody,Pb2),解聚的母源染色体形成雌原核.同时,在受精后5~8 h精子染色质发生去浓缩与再浓缩,形成雄原核.在原核形成的同时,胞质星体在雌、雄原核的周围重组形成长的微管,负责雌、雄原核的迁移靠近.孤雌活化过程中,卵母细胞恢复减数分裂,姐妹染色单体分离,被拉向两极,经细胞松弛素B处理后,活化4~6 h,卵周隙中未见Pb2,而在胞质中出现两个混合的单倍体原核,之间由微管相连接,负责两个单倍体原核的迁移靠近.与体外受精相比较,孤雌活化时卵母细胞更容易被激活,减数分裂期间微管的发育早且更完善.  相似文献   

9.
哺乳动物受精过程中染色体构象发生剧烈的变化.来自精子高度凝缩的染色质在卵母细胞胞质环境中解凝缩,与雌性染色质融合,发生基因组重编程共同构建合子基因组,激活胚胎基因组转录,获得发育的全能性,并进一步发育成完整的胚胎.表观遗传调节机制在这一过程中起重要作用,其中主要包括DNA甲基化、组蛋白甲基化、组蛋白乙酰化及组蛋白替代,这些修饰形式改变了染色体的空间构象以及与转录调节因子的结合模式,调控染色体的活性,进而调节胚胎的发生发育.  相似文献   

10.
卵母细胞和早期胚胎的正常发育是获得健康后代的关键,遗传因素在卵母细胞成熟和早期胚胎发育过程中发挥重要作用。调控卵母细胞和早期胚胎发育的关键基因突变可导致卵母细胞成熟障碍、受精失败或早期胚胎发育停滞,进而导致不孕或早期流产等。随着全基因组测序和全外显子组测序技术的广泛应用,越来越多的致病基因突变被发现,为不孕患者提供了可靠的诊疗靶点。该文系统回顾了导致人类卵母细胞成熟、受精和早期胚胎发育异常的致病基因,以期促进其在辅助生殖遗传咨询中的应用。  相似文献   

11.
Cytoskeleton in Xenopus oocytes and eggs   总被引:2,自引:0,他引:2  
The Xenopus egg is a huge cell divided into compartments with distinct characteristics. The organization of the cytoskeleton reflects both the size of the egg and its regional differences. We review the information concerning the deployment and function of cytoskeletal elements during the changes in cellular organization accompanying oogenesis, oocyte maturation, and following fertilization.  相似文献   

12.
Mammalian oocyte maturation is distinguished by asymmetric division that is regulated primarily by cytoskeleton, including microtubules and microfilaments. Small Rho GTPase RhoA is a key regulator of cytoskeletal organization which regulates cell polarity, migration, and division. In this study, we investigated the roles of RhoA in mammalian oocyte meiosis and early embryo cleavage. (1) Disrupting RhoA activity or knock down the expression of RhoA caused the failure of polar body emission. This may have been due to decreased actin assembly and subsequent spindle migration defects. The involvement of RhoA in this process may have been though its regulation of actin nucleators ROCK, p-Cofilin, and ARP2 expression. (2) In addition, spindle morphology was also disrupted and p-MAPK expression decreased in RhoA inhibited or RhoA KD oocytes, which indicated that RhoA also regulated MAPK phosphorylation for spindle formation. (3) Porcine embryo development was also suppressed by inhibiting RhoA activity. Two nuclei were observed in one blastomere, and actin expression was reduced, which indicated that RhoA regulated actin-based cytokinesis of porcine embryo. Thus, our results demonstrated indispensable roles for RhoA in regulating porcine oocyte meiosis and cleavage during early embryo development.  相似文献   

13.
At the beginning of diplotene, the oocyte of Xenopus laevis is a cell of about 10–20 microns destined to increase 10,000-fold its size when the oocyte becomes filled with yolk platelets and has accumulated a great number of pigment granules in a half of its periphery. Its internal architecture is gradually accomplished during growth because of several factors, especially because of cytoskeletal changes. In the fully-grown oocyte, the cytoskeleton appears to sustain the eccentrically located germinal vesicle through arms radiating from the cortex to the germinal vesicle, a unique organization not to be found in other Amphibians. In this report, we summarized and analysed steps of cytoskeletal proteins and related mRNAs organization and function throughout diplotene stage, highlighting our studies in this animal model. The cytoskeletal proteins appear to exploit their activity with respect to ribosomal 60S subunit maturation and during translation. Most importantly, the polarity of the oocyte is achieved through a sophisticated and highly organized localization of mRNAs and cytoskeletal proteins in one side of the cell. This asymmetry will start the construction of the oocyte polarity that is instrumental for determining the characteristic of this cell, which will become an embryo. Moreover, in the same time membrane composition, conditioned by the underlying cytoskeletal organization, will acquire the prerequisites for sperm binding and fusion.  相似文献   

14.
Oocyte maturation is an important process required to achieve optimal oocyte quality, and later affects fertilization potential and subsequent embryo development. The maturation process includes synchronized nuclear and cytoplasmic remodeling, in which cytoskeletal and centrosome dynamics play an important role and significantly participate in cellular signaling. Centrosome remodeling within the maturing oocyte is essential for accurate meioisis I and II spindle formation, specifically to separate chromosomes accurately during the two successive, highly asymmetric meiotic cell divisions. Centrosomal abnormalities result in inaccurate microtubule organization and inaccurate chromosome alignment, with failures in chromosome segregation leading to aneuploidy and chromosomal abnormalities. The present review is focused on cytoskeletal and centrosome remodeling during oocyte maturation, with specific attention to γ-tubulin, pericentrin, the Nuclear Mitotic Apparatus (NuMA) protein, and microtubule organization. Species-specific differences will be discussed for rodent (mouse) and non-rodent (bovine, porcine) species, and for human oocytes.  相似文献   

15.
The role of mitochondria as a nexus of developmental regulation in mammalian oogenesis and early embryogenesis is emerging from basic research in model species and from clinical studies in infertility treatments that require in vitro fertilization and embryo culture. Here, mitochondrial bioenergetic activities and roles in calcium homeostasis, regulation of cytoplasmic redox state, and signal transduction are discussed with respect to outcome in general, and as possible etiologies of chromosomal defects, maturation and fertilization failure in human oocytes, and as causative factors in early human embryo demise. At present, the ability of mitochondria to balance ATP supply and demand is considered the most critical factor with respect to fertilization competence for the oocyte and developmental competence for the embryo. mtDNA copy number, the timing of mtDNA replication during oocyte maturation, and the numerical size of the mitochondrial complement in the oocyte are evaluated with respect to their relative contribution to the establishment of developmental competence. Rather than net cytoplasmic bioenergetic capacity, the notion of functional compartmentalization of mitochondria is presented as a means by which ATP may be differentially supplied and localized within the cytoplasm by virtue of stage-specific changes in mitochondrial density and potential (ΔΨm). Abnormal patterns of calcium release and sequestration detected at fertilization in the human appear to have coincident effects on levels of mitochondrial ATP generation. These aberrations are not uncommon in oocytes obtained after ovarian hyperstimulation for in vitro fertilization. The possibility that defects in mitochondrial calcium regulation or bioenergetic homeostasis could have negative downstream development consequences, including imprinting disorders, is discussed in the context of signaling pathways and cytoplasmic redox state.  相似文献   

16.
The inhibitor Y-27632 is a specific selective inhibitor of Rho-associated protein kinases (ROCKs), which are downstream effectors of Rho guanosine triphosphatease (GTPases) and regulate Rho-associated cellular functions, including actin cytoskeletal organization. Little is known regarding the effects of Y-27632 on mammalian oocyte maturation. In the present study, we investigated the effects of Y-27632 on porcine oocyte meiosis and possible regulatory mechanisms of ROCK during porcine oocyte maturation. We found that ROCK accumulated not only at spindles, but also at the cortex in porcine oocytes. Y-27632 treatment reduced ROCK expression, and inhibited porcine oocyte meiotic maturation, which might be because of the impairment of actin expression and actin-related spindle positioning. Y-27632 treatment also disrupted the formation of actin cap and cortical granule-free domain, which further confirmed a spindle positioning failure. Thus, Y-27632 has significant effects on the meiotic competence of mammalian oocytes by reducing ROCK expression, and the regulation is related to its effects on actin-mediated spindle positioning.  相似文献   

17.
钙调蛋白依赖的蛋白激酶 (CaMK)是一类分布广泛的丝 /苏氨酸蛋白激酶家族 ,在钙离子和钙调蛋白存在的条件下发生自磷酸化而被激活 ,在细胞内对于钙信号的传递具有重要的介导作用 .近年来的研究表明CaMKⅡ是参与调节卵母细胞减数分裂的重要分子 ,在卵母细胞成熟、极体排放、受精和活化等过程中发挥作用 .CaMKⅡ作为Ca2 的下游信号分子 ,在受精后促进成熟促进因子 (MPF)和细胞静止因子 (CSF)的失活 ,并调节纺锤体微管的组装和中心体的复制过程 .虽然CaMKⅡ在减数分裂中的作用广泛而关键 ,但目前的研究主要集中于低等动物和小鼠 ,今后有待进一步阐明该蛋白激酶在其他哺乳动物中的作用和调节机制  相似文献   

18.
Aurora-A is a serine/threonine protein kinase that plays a role in cell-cycle regulation. The activity of this kinase has been shown to be required for regulating multiple stages of mitotic progression in somatic cells. In this study, the changes in aurora-;A expression were revealed in mouse oocytes using Western blotting. The subcellular localization of aurora-A during oocyte meiotic maturation, fertilization, and early cleavages as well as after antibody microinjection or microtubule assembly perturbance was studied with confocal microscopy. The quantity of aurora-A protein was high in the germinal vesicle (GV) and metaphase II (MII) oocytes and remained stable during other meiotic maturation stages. Aurora-A concentrated in the GV before meiosis resumption, in the pronuclei of fertilized eggs, and in the nuclei of early embryo blastomeres. Aurora-A was localized to the spindle poles of the meiotic spindle from the metaphase I (MI) stage to metaphase II stage. During early embryo development, aurora-A was found in association with the mitotic spindle poles. Aurora-A was not found in the spindle region when colchicine or staurosporine was used to inhibit microtubule organization, while it accumulated as several dots in the cytoplasm after taxol treatment. Aurora-A antibody microinjection decreased the rate of germinal vesicle breakdown (GVBD) and distorted MI spindle organization. Our results indicate that aurora-A is a critical regulator of cell-cycle progression and microtubule organization during mouse oocyte meiotic maturation, fertilization, and early embryo cleavage.  相似文献   

19.
Cell surface antigenic changes associated with differentiation of the rat oocyte and early embryo have been demonstrated with a monoclonal antibody (anti-OA-1). Antigen is first detectable coincident with initiation of oocyte growth, is a constant feature of all growing oocytes and displays a redistribution during meiotic maturation. Following fertilization, antigen is detectable on the surface of the embryo through the four-cell stage. This first monospecific marker for the rat oocyte and embryo should prove useful in probing structure/function relationships in oocyte growth, meiotic maturation fertilization, and/or early embryonic development.  相似文献   

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