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J Cell Biol. 1982 Oct;95(1):105-17. doi: 10.1083/jcb.95.1.105.
2
Relationship between the Golgi apparatus, GERL, and secretory granules in acinar cells of the rat exorbital lacrimal gland.大鼠眶外泪腺腺泡细胞中高尔基体、GERL与分泌颗粒之间的关系
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Effect of microtubule network disturbance by nocodazole and docetaxel (Taxotere) on protein secretion in rat extraorbital lacrimal and parotid glands.
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Anat Rec. 1981 Apr;199(4):459-71. doi: 10.1002/ar.1091990403.

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Effect of colchicine on the Golgi complex of rat pancreatic acinar cells.秋水仙碱对大鼠胰腺腺泡细胞高尔基体复合体的作用。
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9
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10
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本文引用的文献

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Protein measurement with the Folin phenol reagent.使用福林酚试剂进行蛋白质测定。
J Biol Chem. 1951 Nov;193(1):265-75.
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Tissue fractionation studies. 15. Intracellular distribution and properties of beta-N-acetylglucosaminidase and beta-galactosidase in rat liver.组织分级分离研究。15. 大鼠肝脏中β-N-乙酰氨基葡萄糖苷酶和β-半乳糖苷酶的细胞内分布及性质
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HISTOCHEMICAL AND ULTRASTRUCTURAL STUDIES ON HELA CELL CULTURES EXPOSED TO SPINDLE INHIBITORS WITH SPECIAL REFERENCE TO THE INTERPHASE CELL.对暴露于纺锤体抑制剂的海拉细胞培养物进行的组织化学和超微结构研究,特别关注间期细胞。
J Histochem Cytochem. 1964 Sep;12:704-11. doi: 10.1177/12.9.704.
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Effects of colchicine on endocytosis of horseradish peroxidase by rat peritoneal macrophages.秋水仙碱对大鼠腹膜巨噬细胞摄取辣根过氧化物酶的影响。
J Cell Sci. 1980 Oct;45:59-71. doi: 10.1242/jcs.45.1.59.
5
Effects of colchicine on the Golgi complex and GERL of cultured rat peritoneal macrophages and epiphyseal chondrocytes.秋水仙碱对培养的大鼠腹膜巨噬细胞和骨骺软骨细胞的高尔基体复合体及GERL的影响。
J Cell Sci. 1980 Oct;45:41-58. doi: 10.1242/jcs.45.1.41.
6
Role of microtubules in milk secretion--action of colchicine on microtubules and exocytosis of secretory vesicles in rat mammary epithelial cells.微管在乳汁分泌中的作用——秋水仙碱对大鼠乳腺上皮细胞微管及分泌小泡胞吐作用的影响
Cell Tissue Res. 1980;207(3):361-76. doi: 10.1007/BF00224613.
7
The effect of colchicine on the intracellular transport of 3H-fucose-labelled glycoproteins in the absorptive cells of cultured human small-intestinal tissue. An autoradiographical and biochemical study.秋水仙碱对培养的人小肠组织吸收细胞中3H-岩藻糖标记糖蛋白细胞内转运的影响。一项放射自显影和生化研究。
Cell Tissue Res. 1981;215(1):1-12. doi: 10.1007/BF00236244.
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Biosynthesis, segregation, and secretion of exportable proteins by the exocrine pancreas.外分泌胰腺对可输出蛋白的生物合成、分选及分泌
Am J Physiol. 1980 Jun;238(6):G467-77. doi: 10.1152/ajpgi.1980.238.6.G467.
9
parallel secretion of secretory proteins and calcium by the rat parotid gland.大鼠腮腺分泌蛋白与钙的平行分泌
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10
Intracellular transport of secretory proteins in the pancreatic exocrine cell. II. Transport to condensing vacuoles and zymogen granules.胰腺外分泌细胞中分泌蛋白的细胞内运输。II. 向浓缩泡和酶原颗粒的运输。
J Cell Biol. 1967 Aug;34(2):597-615. doi: 10.1083/jcb.34.2.597.

大鼠泪腺中的微管与蛋白质分泌:秋水仙碱对分泌过程短期效应的定位

Microtubules and protein secretion in rat lacrimal glands: localization of short-term effects of colchicine on the secretory process.

作者信息

Busson-Mabillot S, Chambaut-Guérin A M, Ovtracht L, Muller P, Rossignol B

出版信息

J Cell Biol. 1982 Oct;95(1):105-17. doi: 10.1083/jcb.95.1.105.

DOI:10.1083/jcb.95.1.105
PMID:7142282
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2112354/
Abstract

The pathway and kinetics of the secretory protein transport in rat lacrimal exorbital gland have been established by an in vitro time-course radioautographic study of pulse-labeled protein secretion. The colchicine-sensitive steps have been localized by using the drug at various times with respect to the pulse labeling of proteins. Colchicine (10 microM) does not block any step of the secretory protein transport, but when introduced before the pulse it decreases the transfer of labeled proteins from the rough endoplasmic reticulum to the Golgi area, suppressing their temporary accumulation in the Golgi area before any alteration of this organelle is detectable. Moreover, colchicine inhibits protein release only from the secretory granules formed in its presence because the peroxidase discharge is diminished 1 h after colchicine addition, and the secretion of newly synthesized proteins is strongly inhibited only when colchicine is introduced before secretory granule formation. Morphometric studies show that there is a great increase of secondary lysosomes, related to crinophagy, as early as 40-50 min after colchicine is added. However, changes in lysosomal enzymatic activities remained biochemically undetectable. We conclude that: (a) the labile microtubular system does not seem indispensable for protein transport in the rough endoplasmic reticulum-Golgi area but may facilitate this step, perhaps by maintaining the spatial organization of this area; and (b) in the lacrimal gland, colchicine inhibits protein release not by acting on the steps of secretion following the secretory granule formation, but by acting chiefly on the steps preceding secretory granule formation, perhaps by making the secretory granules formed in its presence incapable of discharging their content.

摘要

通过对脉冲标记蛋白质分泌进行体外时间进程放射自显影研究,已确定大鼠泪腺眶外腺分泌蛋白转运的途径和动力学。通过在蛋白质脉冲标记后的不同时间使用秋水仙碱,已确定了秋水仙碱敏感步骤的位置。秋水仙碱(10 microM)不会阻断分泌蛋白转运的任何步骤,但在脉冲之前引入时,它会减少标记蛋白质从粗面内质网向高尔基体区域的转运,在高尔基体区域出现任何可检测到的改变之前,抑制其在高尔基体区域的暂时积累。此外,秋水仙碱仅抑制在其存在下形成的分泌颗粒释放蛋白质,因为添加秋水仙碱1小时后过氧化物酶释放减少,并且仅在分泌颗粒形成之前引入秋水仙碱时,新合成蛋白质的分泌才会受到强烈抑制。形态计量学研究表明,早在添加秋水仙碱后40 - 50分钟,与自噬性溶酶体形成相关的次级溶酶体就有大量增加。然而,溶酶体酶活性的变化在生化上仍无法检测到。我们得出以下结论:(a)不稳定的微管系统似乎对于粗面内质网 - 高尔基体区域的蛋白质转运并非必不可少,但可能通过维持该区域的空间组织来促进这一步骤;(b)在泪腺中,秋水仙碱抑制蛋白质释放不是通过作用于分泌颗粒形成后的分泌步骤,而是主要通过作用于分泌颗粒形成之前的步骤,可能是通过使在其存在下形成的分泌颗粒无法释放其内容物。