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大鼠精子发生过程中精子细胞高尔基体中的糖蛋白合成。

Glycoprotein synthesis in the Golgi apparatus of spermatids during spermiogenesis of the rat.

作者信息

Clermont Y, Tang X M

出版信息

Anat Rec. 1985 Sep;213(1):33-43. doi: 10.1002/ar.1092130106.

DOI:10.1002/ar.1092130106
PMID:4073559
Abstract

During steps 1-7 of spermiogenesis the Golgi apparatus contributes to the formation of the acrosomic system which develops at the surface of the nucleus. Later, in step 8, the Golgi apparatus detaches from the acrosome and remains suspended in the elongated cytoplasm until it degenerates during step 16. Using 3H-fucose as a tracer and the radioautographic technique, we observed that the Golgi apparatus incorporates the tracer and delivers the labeled glycoproteins to the developing acrosomic system during steps 1-7 of spermiogenesis, to multivesicular bodies during steps 1-9, and to the remaining cytoplasm and plasma membrane during steps 1-15. Throughout these steps of spermiogenesis the Golgi apparatus does not show major changes in structure; it is composed of a cortex made up of connected stacks of saccules and a medulla showing a loose aggregate of vesicular profiles. Glycoprotein synthesis in this Golgi apparatus, before and after it contributes lysosomal glycoproteins to the growing acrosomic system, was quantitatively assessed in electron microscope EM radioautographs of tissue sections from animals sacrificed at 1, 4, 8, and 24 h of 3H-fucose injection. The incorporation of the labeled sugar was found to remain quantitatively similar during steps 1-15 of spermiogenesis, and therefore, no shift in glycoprotein synthesis took place following separation of the Golgi apparatus from the acrosomic system. Throughout these steps, fucose molecules are first incorporated in the cortex of the organelle and subsequently transported to the medulla, where they temporarily accumulate before being delivered, depending on the step of spermiogenesis, to the acrosomic system, to the multivesicular bodies, and also, presumably, to the plasma membrane.

摘要

在精子发生的第1 - 7步中,高尔基体有助于顶体系统的形成,该系统在细胞核表面发育。随后,在第8步中,高尔基体与顶体分离,并悬浮在伸长的细胞质中,直到在第16步中退化。使用³H - 岩藻糖作为示踪剂并采用放射自显影技术,我们观察到在精子发生的第1 - 7步中,高尔基体摄取示踪剂并将标记的糖蛋白递送至发育中的顶体系统;在第1 - 9步中递送至多囊泡体;在第1 - 15步中递送至剩余的细胞质和质膜。在精子发生的这些步骤中,高尔基体的结构没有显示出重大变化;它由由相连的扁平囊堆叠组成的皮质和显示出松散聚集的囊泡轮廓的髓质组成。在高尔基体向生长中的顶体系统贡献溶酶体糖蛋白之前和之后,对该高尔基体中的糖蛋白合成进行了定量评估,评估是在注射³H - 岩藻糖后1、4、8和24小时处死的动物组织切片的电子显微镜放射自显影片中进行的。发现在精子发生的第1 - 15步中,标记糖的掺入在数量上保持相似,因此,在高尔基体与顶体系统分离后,糖蛋白合成没有发生转变。在这些步骤中,岩藻糖分子首先掺入细胞器的皮质,随后转运至髓质,在那里它们暂时积累,然后根据精子发生的步骤,被递送至顶体系统、多囊泡体,大概还会被递送至质膜。

相似文献

1
Glycoprotein synthesis in the Golgi apparatus of spermatids during spermiogenesis of the rat.大鼠精子发生过程中精子细胞高尔基体中的糖蛋白合成。
Anat Rec. 1985 Sep;213(1):33-43. doi: 10.1002/ar.1092130106.
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A cytochemical study of the Golgi apparatus of the spermatid during spermiogenesis in the rat.大鼠精子发生过程中精子细胞高尔基体的细胞化学研究。
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Structural changes of the head components of the rat spermatid during late spermiogenesis.大鼠精子细胞晚期精子形成过程中头部成分的结构变化。
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Biogenesis of the posterior-tail plasma membrane domain of the mammalian spermatozoon: targeting and lateral redistribution of the posterior-tail domain-specific transmembrane protein CE9 during spermiogenesis.哺乳动物精子后尾质膜结构域的生物发生:精子发生过程中后尾结构域特异性跨膜蛋白CE9的靶向和侧向重新分布。
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Three-dimensional architecture of the cortical region of the Golgi apparatus in rat spermatids.大鼠精子细胞中高尔基体皮质区域的三维结构
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Contribution of the Golgi apparatus components to the formation of the acrosomic system and chromatoid body in rat spermatids.高尔基体成分对大鼠精子细胞顶体系统和拟染色体形成的贡献。
Anat Rec. 1988 Jun;221(2):591-8. doi: 10.1002/ar.1092210205.
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Formation and turnover of plasma membrane glycoproteins in kidney tubules of young rats and adult mice, as shown by radioautography after an injection of 3H-fucose.注射3H-岩藻糖后通过放射自显影显示的幼鼠和成年小鼠肾小管中质膜糖蛋白的形成与更新。
Am J Anat. 1977 Feb;148(2):241-73. doi: 10.1002/aja.1001480205.
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Synthesis of secretory and plasma membrane glycoproteins by striated duct cells of rat salivary glands as visualized by radioautography after 3H-fucose injection.注射3H-岩藻糖后通过放射自显影观察大鼠唾液腺纹状管细胞对分泌性和质膜糖蛋白的合成。
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Immunocytochemical localization of proteins utilized in the formation of outer dense fibers and fibrous sheath in rat spermatids: an electron microscope study.大鼠精子细胞中外致密纤维和纤维鞘形成过程中所利用蛋白质的免疫细胞化学定位:一项电子显微镜研究。
Anat Rec. 1990 Aug;227(4):447-57. doi: 10.1002/ar.1092270408.

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