Biochemical and morphological study of molecules localized in the distinct acrosomal microdomains
Biochemical and morphological study of molecules localized in the distinct acrosomal microdomains
批准号:
10670022
负责人:
TANII Ichiro
金额:
$0.77万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1998
资助国家:
日本
项目状态:
已结题
起止时间:
1998 至 1999
中文摘要
(L)顶体内抗原在受精中的作用:为了了解顶体内分子MN7、MC41、MC101和MN9在受精中的作用,在体外受精液中分别加入特异性抗体mMN7、mMC41、mMC101和mMN9,检测抗体对受精率的影响。MMN7抑制顶体反应的完成,mMC41抑制精子与透明带紧密结合的保留(Saxena等人,J Reprod Fertil,1999)。MMC101抑制精子穿透透明带,并可能影响顶体反应过程中精子质膜的修饰,从而抑制精子与卵母细胞的质膜融合(提交)。MMN9抑制精子和卵母细胞的膜融合过程(Toshimori et al,Biol Reprod,1998)。(2)顶体内抗原与带状蛋白和顶体蛋白酶的相互作用:用Far-Western blotting技术检测顶体内分子是否与带状蛋白相互作用,MN7显示结合活性…更多的ZP3表明,该分子通过与透明带的相互作用而在受精过程中发挥作用。我们通过酶谱进一步研究了顶体内分子与顶体蛋白水解酶的相互作用。与MC41共沉淀的蛋白质中含有丝氨酸蛋白酶。MC41本身没有蛋白分解活性,在中性条件下孵育时被加工成较小的尺寸,这可能是由于与MC41结合的丝氨酸蛋白酶的蛋白分解作用(论文正在准备中)。(3)顶体形成的形态学研究:在生精小管的器官培养中加入有效的膜运输抑制剂布雷菲尔丁A,导致精子细胞的高尔基体退化,mMN7免疫阳性反应从早期圆形精子细胞的顶体消失。此外,顶体细胞膜碎裂。从结果来看,囊泡通过涂层囊泡运输可能是顶体的主要途径(Tanii等人,J Electron Microsc,1998),在精子发生的最后阶段,顶体缩小其体积,我们证明了小管球复合体参与了顶体过量内容的消除(Tanii等人,Anat Rec,1999)。由于豚鼠精子具有非常大的顶体,我们研究了豚鼠顶体微域的形成。MN7被整合到早期的顶体颗粒中,随着顶体形成的进行,MN7的定位发生了变化,最终限制在顶段的背侧基质区域(Yoshinaga等人,Anat Rec,2000)。MN7通过附睾体后,局限于两个区域:背侧的电子通透性基质和背侧的顶体外膜/基质相关物质。后者是一个新定义的顶体微域(Yoshinaga等人,细胞组织Res,1998)。较少
英文摘要
(l) Role of intra-acrosomal antigen in fertilization: To know the role of intra-acrosomal molecules, MN7, MC41, MC101 and MN9, on fertilization, specific antibodies, mMN7, mMC41, mMC101, mMN9, respectively, were added to the IVF medium and determined the effect of antibodies on the rate of fertilization. mMN7 inhibited completion of acrosome reaction and mMC41 inhibited retention of tight-binding of sperm with zona (Saxena et al, J Reprod Fertil, 1999). mMC101 inhibited sperm penetration to zona, in addition, possibly affected sperm plasma membrane modification during acrosome reaction, causing inhibition of plasma membrane fusion of sperm and oocyte (submitted). mMN9 inhibited membrane fusion process of sperm and oocyte (Toshimori et al, Biol Reprod, 1998).(2) Interaction of intra-acrosomal antigen with zona proteins and acrosomal proteinases: Far-Western blotting technique was used to determine whether intra-acrosomal molecules interact with zona proteins, MN7 showed binding activity … More with ZP3 suggesting that the molecule has a role in fertilization by way of the interaction with zona. We further examined the interaction of intra-acrosomal molecules with acrosomal proteinases by zymography. Proteins coprecipitated with MC41 contained a serine proteinase. MC41 by itself showed no proteolytic activity and was undergone processing to smaller size when incubated in the neutral condition, This could be due to the proteolysis by the serine proteinase bound to MC41 (paper in preparation).(3) Morphological study of acrosome formation: Addition of brefeldin A, a potent inhibitor of membrane traffic, to the organ culture of seminiferous tubules caused degeneration of the Golgi apparatus in spermatids and disappearance of mMN7-immunoreactivity from the acrosome of early round spermatids. In addition, acrosomal membrane was fragmented. From the results, vesicular transport via coatmer-coated vesicles is presumably main pathway to the acrosome (Tanii et al, J Electron Microsc, 1998), During final steps of spermiogenesis, the acrosome reduces its volume, We demonstrated the involvement of tubulobulbar complexes in the elimination of excess acrosomal contents (Tanii et al, Anat Rec, 1999). Since guinea pig sperm has a markedly large acrosome, we studied acrosomal microdomain formation in the guinea pig. MN7 was incorporated in the early acrosomic granules and changed in localization as acrosome formation proceeded, and finally confined to the dorsal matrix region of the apical segment (Yoshinaga et al, Anat Rec, 2000). After epididymal transit, MN7 restricted in two regions: at the electron-lucent dorsal matrix and on the outer acrosome membrane/matrix associated materials at the dorsal region. The latter is a newly defined acrosomal microdomain (Yoshinaga et al, Cell Tissue Res, 1998). Less
期刊论文(2)
专著(0)
科研奖励(0)
会议论文
Yoshinaga K, Tanii I, Saxena DK and Toshimori K: "Immunocytochemical alterationsin the intra-acrosomal antigen MN7 during epididymal maturatior of guinea pig sepmatozoa"Cell & Tissue Research. 292. 427-433 (1998)
Yoshinaga K、Tanii I、Saxena DK 和 Toshimori K:“豚鼠脓毒症附睾成熟过程中顶体内抗原 MN7 的免疫细胞化学变化”细胞
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通讯作者:
Tanii,I.,Yoshinaga,K.and Toshimori,K.: "The effects of brefeldin A on acrosome formation and protein transport to the acrosome in organ cultures of rat seminiferous tubules." J.Electron Microsc.47. 161-167 (1998)
Tanii,I.、Yoshinaga,K. 和 Toshimori,K.:“布雷菲德菌素 A 对大鼠曲细精管器官培养物中顶体形成和蛋白质转运至顶体的影响”。
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The role of PACAP-mediated sperm-cumulus cell interaction in fertilization
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批准号:22590170
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项目类别:Grant-in-Aid for Scientific Research (C)
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资助金额:$2.33万
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财政年份:2010
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负责人:TANII Ichiro
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依托单位:
海外基金