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大鼠胰腺外分泌细胞中分泌颗粒主要膜糖蛋白的膜脱离与释放

Membrane detachment and release of the major membrane glycoprotein of secretory granules in rat pancreatic exocrine cells.

作者信息

Havinga J R, Slot J W, Strous G J

出版信息

Eur J Cell Biol. 1985 Nov;39(1):70-6.

PMID:4085502
Abstract

The major glycoprotein of pancreatic zymogen granule membranes (GP-2) was detected in the medium of acinar cell suspensions from rat pancreas. Its release from the cells was studied in pulse-chase metabolic labeling experiments with radioactive methionine. GP-2 (apparent Mr = 80 000) was found to be processed to a form of slightly lower apparent Mr (75 000) after about 4 h chase. At about the same time this smaller form of GP-2 appeared in the medium. These results are in accordance with earlier findings in vivo. At different chase times acinar cells were extracted with Triton X-114 to separate water-soluble proteins from membrane-associated (hydrophobic) proteins. This experiment showed that GP-2 is slowly converted from a membrane-bound glycoprotein to a soluble glycoprotein after its reduction in apparent molecular mass, causing its detachment from the membrane. Further analysis indicated that the detachment process may occur at the zymogen granule membrane as well as the plasma membrane. Immunocytochemistry on ultrathin cryosections of pancreatic tissue showed that GP-2 is localized on zymogen granule membranes, plasma membranes and in the acinar lumen. Although in much smaller quantities, GP-2 is also present in the granule content. Thus, in summary, GP-2 is synthesized as a true membrane glycoprotein which is gradually processed to a soluble species and is found in the secretion.

摘要

在大鼠胰腺腺泡细胞悬液的培养基中检测到了胰腺酶原颗粒膜的主要糖蛋白(GP-2)。利用放射性甲硫氨酸在脉冲追踪代谢标记实验中研究了其从细胞中的释放情况。发现GP-2(表观分子量Mr = 80000)在追踪约4小时后被加工成一种表观分子量略低(75000)的形式。大约在同一时间,这种较小形式的GP-2出现在培养基中。这些结果与早期体内研究结果一致。在不同的追踪时间,用Triton X-114提取腺泡细胞,以将水溶性蛋白质与膜相关(疏水)蛋白质分离。该实验表明,GP-2在其表观分子量降低后,从膜结合糖蛋白缓慢转变为可溶性糖蛋白,导致其从膜上脱离。进一步分析表明,脱离过程可能发生在酶原颗粒膜以及质膜上。胰腺组织超薄冷冻切片的免疫细胞化学显示,GP-2定位于酶原颗粒膜、质膜和腺泡腔内。虽然含量少得多,但GP-2也存在于颗粒内容物中。因此,总之,GP-2作为一种真正的膜糖蛋白被合成,它逐渐被加工成可溶性形式,并存在于分泌物中。

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