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突变型ELH前体激素在AtT-20细胞中的表达:前体激素加工与分选之间的关系

Expression of mutant ELH prohormones in AtT-20 cells: the relationship between prohormone processing and sorting.

作者信息

Jung L J, Kreiner T, Scheller R H

机构信息

Howard Hughes Medical Institute, Department of Molecular and Cellular Physiology, Stanford University, California 94305.

出版信息

J Cell Biol. 1993 Apr;121(1):11-21. doi: 10.1083/jcb.121.1.11.

Abstract

Posttranslational processing of many proteins is essential to the synthesis of fully functional molecules. The ELH (egg-laying hormone) prohormone is cleaved by endoproteases in a specific order at a variety of basic residue processing sites to produce mature peptides. The prohormone is first cleaved at a unique tetrabasic site liberating two intermediates (amino and carboxy) which are sorted to different classes of dense core vesicles in the bag cell neurons of Aplysia. When expressed in AtT-20 cells, the ELH prohormone is also first cleaved at the tetrabasic site. The amino-terminal intermediate is then sorted to the constitutive pathway, and a portion of the carboxy-terminal intermediate is sorted to the regulated pathway. Here, we use mutant constructs of the ELH prohormone expressed in AtT-20 cells to examine the relationship between prohormone processing and consequent sorting. Prohormone which has a dibasic site in place of the tetrabasic site is processed and sorted similarly to wild type. Furthermore, mutant prohormone which lacks the tetrabasic site is processed at an alternative site comprising three basic residues. In these mutant prohormones, mature ELH is still produced and stored in dense core vesicles while amino-terminal products are constitutively secreted. However, deletion of the tetrabasic and tribasic sites results in the rerouting of the amino-terminal intermediate products from the constitutive pathway to the regulated secretory pathway. Thus, in the ELH prohormone, the location of the proteolytic processing events within the secretory pathway and the order of cleavages regulate the sorting of peptide products.

摘要

许多蛋白质的翻译后加工对于合成功能完整的分子至关重要。产卵激素(ELH)前体激素在多种碱性残基加工位点被内切蛋白酶按特定顺序切割,以产生成熟肽段。前体激素首先在一个独特的四碱性位点被切割,释放出两个中间体(氨基端和羧基端),它们在海兔的袋状细胞神经元中被分选到不同类别的致密核心囊泡中。当在AtT-20细胞中表达时,ELH前体激素同样首先在四碱性位点被切割。氨基端中间体随后被分选到组成型途径,而一部分羧基端中间体被分选到调节型途径。在这里,我们使用在AtT-20细胞中表达的ELH前体激素突变体构建体来研究前体激素加工与后续分选之间的关系。具有双碱性位点代替四碱性位点的前体激素的加工和分选与野生型相似。此外,缺乏四碱性位点的突变前体激素在一个包含三个碱性残基的替代位点被加工。在这些突变前体激素中,仍能产生成熟的ELH并储存在致密核心囊泡中,而氨基端产物则组成型分泌。然而,删除四碱性和三碱性位点会导致氨基端中间产物从组成型途径重新路由到调节型分泌途径。因此,在ELH前体激素中,分泌途径内蛋白水解加工事件的位置和切割顺序调节肽产物的分选。

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Protein translocation across the endoplasmic reticulum.蛋白质在内质网上的转运
Cell. 1984 Aug;38(1):5-8. doi: 10.1016/0092-8674(84)90520-8.

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