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在非洲爪蟾卵母细胞减数分裂成熟过程中,分泌途径在反式高尔基体和质膜之间被阻断。

The secretory pathway is blocked between the trans-Golgi and the plasma membrane during meiotic maturation in Xenopus oocytes.

作者信息

Leaf D S, Roberts S J, Gerhart J C, Moore H P

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Dev Biol. 1990 Sep;141(1):1-12. doi: 10.1016/0012-1606(90)90097-3.

Abstract

Protein secretion is blocked in Xenopus oocytes arrested at second meiotic metaphase. In this report, we show that secretion becomes blocked coincident with germinal vesicle breakdown (GVBD). Transport through the metaphase-arrested oocyte's secretory pathway continues unimpeded until proteins reach the trans-Golgi. These conclusions are drawn from experiments using exogenous prolactin and vesicular stomatitis virus G protein (VSV G) encoded by SP6 transcripts and endogenous glycosaminoglycan (GAG) chains initiated on beta-D-4-methylumbelliferyl-xyloside. From the initiation of maturation with progesterone until GVBD, secretion of prolactin synthesized before the start of maturation is comparable to secretion in immature oocytes, but after GVBD secretion of prolactin declines approximately 63% in the first hour. Not all steps in the secretory pathway are blocked when oocytes mature. Since VSV G protein acquires resistance to endo H digestion with equal efficiency in immature oocytes (arrested in first meiotic prophase) and matured oocytes (arrested in second meiotic metaphase), we conclude that transport of this protein from the ER to the Golgi is not inhibited at meiotic metaphase. Using [35S]sulfate to label xyloside-initiated GAG chains we find that transport of GAG chains from the trans-Golgi to the cell surface is 15-fold lower in matured oocytes than in immature oocytes. Examination of the size of GAG chains by SDS-PAGE and HPLC indicates that matured oocytes produce GAG chains significantly larger than GAG chains from immature oocytes. This increase in size suggests that GAG chains from matured oocytes have a longer residence time in the trans-Golgi than GAG chains from immature oocytes. Hence, part of the block to secretion in metaphase-arrested oocytes could be an inhibition of vesicle budding from the trans-Golgi.

摘要

在第二次减数分裂中期停滞的非洲爪蟾卵母细胞中,蛋白质分泌被阻断。在本报告中,我们表明分泌阻断与生发泡破裂(GVBD)同时发生。通过中期停滞的卵母细胞分泌途径的转运持续不受阻碍,直到蛋白质到达反式高尔基体。这些结论来自使用由SP6转录本编码的外源性催乳素和水泡性口炎病毒G蛋白(VSV G)以及由β-D-4-甲基伞形酮基木糖苷起始的内源性糖胺聚糖(GAG)链进行的实验。从用孕酮开始成熟到GVBD,成熟开始前合成的催乳素的分泌与未成熟卵母细胞中的分泌相当,但在GVBD后,催乳素的分泌在第一小时内下降了约63%。当卵母细胞成熟时,分泌途径中的并非所有步骤都会被阻断。由于VSV G蛋白在未成熟卵母细胞(停滞在第一次减数分裂前期)和成熟卵母细胞(停滞在第二次减数分裂中期)中获得对内切糖苷酶H消化的抗性效率相同,我们得出结论,该蛋白从内质网到高尔基体的转运在减数分裂中期不受抑制。使用[35S]硫酸盐标记木糖苷起始的GAG链,我们发现成熟卵母细胞中GAG链从反式高尔基体到细胞表面的转运比未成熟卵母细胞低15倍。通过SDS-PAGE和HPLC检查GAG链的大小表明,成熟卵母细胞产生的GAG链明显大于未成熟卵母细胞产生的GAG链。这种大小的增加表明,成熟卵母细胞的GAG链在反式高尔基体中的停留时间比未成熟卵母细胞的GAG链长。因此,中期停滞的卵母细胞分泌阻断的部分原因可能是反式高尔基体的囊泡出芽受到抑制。

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