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胰腺外分泌细胞中的蛋白质合成、储存与释放。一项放射自显影研究。

PROTEIN SYNTHESIS, STORAGE, AND DISCHARGE IN THE PANCREATIC EXOCRINE CELL. AN AUTORADIOGRAPHIC STUDY.

作者信息

CARO L G, PALADE G E

出版信息

J Cell Biol. 1964 Mar;20(3):473-95. doi: 10.1083/jcb.20.3.473.

Abstract

The synthesis, intracellular transport, storage, and discharge of secretory proteins in and from the pancreatic exocrine cell of the guinea pig were studied by light- and electron microscopical autoradiography using DL-leucine-4,5-H(3) as label. Control experiments were carried out to determine: (a) the length of the label pulse in the blood and tissue after intravenous injections of leucine-H(3); (b) the amount and nature of label lost during tissue fixation, dehydration, and embedding. The results indicate that leucine-H(3) can be used as a label for newly synthesized secretory proteins and as a tracer for their intracellular movements. The autoradiographic observations show that, at approximately 5 minutes after injection, the label is localized mostly in cell regions occupied by rough surfaced elements of the endoplasmic reticulum; at approximately 20 minutes, it appears in elements of the Golgi complex; and after 1 hour, in zymogen granules. The evidence conclusively shows that the zymogen granules are formed in the Golgi region by a progressive concentration of secretory products within large condensing vacuoles. The findings are compatible with an early transfer of label from the rough surfaced endoplasmic reticulum to the Golgi complex, and suggest the existence of two distinct steps in the transit of secretory proteins through the latter. The first is connected with small, smooth surfaced vesicles situated at the periphery of the complex, and the second with centrally located condensing vacuoles.

摘要

以DL-亮氨酸-4,5-H(3)为标记,采用光镜和电镜放射自显影技术,研究了豚鼠胰腺外分泌细胞中分泌蛋白的合成、细胞内运输、储存及分泌情况。进行了对照实验以确定:(a)静脉注射亮氨酸-H(3)后,血液和组织中标记脉冲的时长;(b)组织固定、脱水和包埋过程中损失的标记量及性质。结果表明,亮氨酸-H(3)可作为新合成分泌蛋白的标记物及其细胞内运动的示踪剂。放射自显影观察显示,注射后约5分钟,标记主要定位于内质网糙面成分所在的细胞区域;约20分钟时,出现在高尔基体成分中;1小时后,出现在酶原颗粒中。证据确凿地表明,酶原颗粒是在高尔基体区域通过分泌产物在大浓缩泡内逐渐浓缩而形成的。这些发现与标记从糙面内质网早期转移至高尔基体复合体相符,并提示分泌蛋白通过后者转运存在两个不同步骤。第一步与位于复合体周边的小的光面小泡有关,第二步与位于中央的浓缩泡有关。

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