肌动蛋白丝网络与支持细胞外质特化有关。

J. Cavicchia, M. Foscolo, J. Ibañez, C. Lillig, F. Capani
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引用次数: 2

摘要

支持细胞中的连接装置符合血睾丸屏障,在生殖细胞的成熟和分化中起关键作用。采用-肌动蛋白免疫标记、激光共聚焦和透射电镜研究了支持细胞外质特化的空间分布。在共聚焦显微镜下,研究了β -肌动蛋白免疫标记的外质特化的背景下,无论是丙肽或戊二醛还蛋白免疫标记的支持细胞质。标记在基底层附近,围绕着早期的精母细胞(可能是细粒-合子细胞),或者在精胚上皮的两个水平之一发现:(1)在精胚形成前的管状阶段,在支持细胞细胞质的深褶周围;(2)在精胚形成后或精胚形成期间的管状阶段,在精胚形成后或精胚形成期间,在精胚形成后的管状阶段,在精胚形成上皮的表层。对于透射电镜,β -肌动蛋白免疫标记的外质特化也被使用。外质特化发现在两个不同水平的精原上皮。我们还使用冷冻断裂分析了小管-球复合体的特征,这是一种已知的顶端外质特化成分。此外,这些不同的方法使我们能够研究在生精周期的不同阶段围绕生殖细胞的支持细胞分支的肌动蛋白细胞骨架的复杂排列。我们的研究结果显示-肌动蛋白在精子在管状管腔(精子)释放之前、期间和之后都有一致的标记,这表明肌动蛋白网络在精子细胞分化中起重要作用。综上所述,β -肌动蛋白网络、血睾丸屏障连接复合物和外质特化之间的显著相互关系在精子周期的不同阶段被检测到。
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The actin filament network associated to Sertoli cell ectoplasmic specializations.
Junctional devices in Sertoli cells conform the blood-testis barrier and play a key role in maturation and differentiation of germ cells. The spacial distribution of ectoplasmic specializations of Sertoli cells was studied by beta-actin immunolabelling, using laser confocal and transmission electron microscopy. For confocal microscopy, beta-actin immunolabelling of ectoplasmic specializations was studied over the background of either prosaposin or glutaredoxin immunolabelling of the Sertoli cytoplasm. Labelling was found near the basal lamina, surrounding early spermatocytes (presumably in leptotene-zygotene) or at one of two levels in the seminiferous epithelium: (1) around deep infoldings of the Sertoli cell cytoplasm, in tubular stages before spermiation, and (2) in the superficial part of the seminiferous epithelium, in tubular stages after or during spermiation. For transmission electron microscopy, beta-actin immunolabelling of ectoplasmic specializations was also used. Ectoplasmic specializations were found at two different levels of the seminiferous epithelium. We also used freeze fracture to analyze the characteristics of tubulo-bulbar complexes, a known component of apical ectoplasmic specializations. Also, these different approaches allowed us to study the complex arrangement of the actin cytoskeleton of Sertoli cells branches, which surround germ cells in different stages of the spermatogenic cycle. Our results show a consistent labelling for beta-actin before, during and after the release of spermatozoa in the tubular lumen (spermiation) suggesting a significant role of the actin network in spermatic cell differentiation. In conclusion, significant interrelations among the beta-actin network, the junctional complexes of the blood-testis barrier and the ectoplasmic specializations were detected at different stages of the seminiferous cycle.
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