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Protein sorting among two distinct export pathways occurs from the content of maturing exocrine storage granules

机译:两种不同的出口途径之间的蛋白质分选来自成熟的外分泌存储颗粒的含量

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摘要

We have developed a method for separating purified parotid secretory granules according to their degree of maturation, and we have used this method to examine the relationship between granule formation and stimulus-independent (constitutive) protein secretion. Constitutive export of pulse-labeled secretory proteins occurs almost entirely after their appearance in newly formed granules, and this secretion can be resolved kinetically into two distinct components. Later-phase secretion is the more prominent component and, according to kinetic and compositional criteria, appears to result from basal exocytosis of mature granules. In contrast, early-phase secretion (1.5-15% of constitutive protein output) appears to originate from maturing granules but differs significantly from granule content in composition; that is, the early component exports individual protein species in different relative amounts. Maturing granules, which are labeled most highly before and during the appearance of early-phase secretion, possess numerous coated membrane evaginations suggestive of vesicular traffic. We propose that, in addition to basal exocytosis of relatively mature granules, constitutive exocrine secretion results from limited, selective removal of content proteins from forming and maturing granules. Thus protein sorting and packaging occur together in granule compartments. Exocrine secretory granules constitute an extension of the post-Golgi sorting system and are not merely terminal depots for proximally targeted polypeptides.
机译:我们已经开发了根据其成熟程度分离腮腺分泌性颗粒的方法,并且我们已经使用这种方法来检查颗粒形成与刺激无关的(组成性)蛋白分泌之间的关系。脉冲标记的分泌蛋白的组成性输出几乎完全在它们出现在新形成的颗粒中之后发生,并且该分泌可以在动力学上分解为两个不同的成分。后期分泌是最主要的成分,根据动力学和组成标准,它似乎是由成熟颗粒的基础胞吐作用导致的。相比之下,早期分泌(占组成蛋白产量的1.5-15%)似乎源自成熟的颗粒,但与组成中的颗粒含量有明显差异。也就是说,早期成分以不同的相对量输出单个蛋白质种类。在早期分泌物出现之前和出现过程中被标记最高的成熟颗粒,具有许多包被的膜外腔,提示水泡运输。我们建议,除了相对成熟的颗粒的基础胞吐作用外,本构外分泌的分泌还来自形成和成熟的颗粒中有限,选择性地去除内容蛋白的结果。因此,蛋白质分选和包装一起在颗粒室中发生。外分泌分泌颗粒构成了高尔基后分选系统的延伸,而不仅仅是近端靶向多肽的末端贮库。

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