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血管加压素原激素的激素结构域是前激素通过分泌途径正确运输所必需的。

The Hormone Domain of the Vasopressin Prohormone is Required for the Correct Prohormone Trafficking Through the Secretory Pathway.

作者信息

De Bree F M, Van Der Kleij A A M, Nijenhuis M, Zalm R, Murphy D, Burbach J P H

机构信息

Rudolf Magnus Institute of Neuroscience, Department of Pharmacology and Anatomy, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

J Neuroendocrinol. 2003 Dec;15(12):1156-63. doi: 10.1111/j.1365-2826.2003.01114.x.

Abstract

It has long been known that under intracellular conditions vasopressin associates tightly to neurophysin, which is present in the same prohormone. As the association has been suggested to play a role during hormone biosynthesis, its role was studied in a cellular context by expressing mutant vasopressin precursors in Neuro2A cells. Mutant vasopressin precursors, in which the association between the vasopressin and neurophysin domains was prevented either by deleting the vasopressin domain from the precursor or by substitution of the essential Tyr2 residue in vasopressin for Gly, were neither processed nor targeted into secretory granules. Rather, both provasopressin mutants were retained in the endoplasmic reticulum. Our results demonstrate that the vasopressin domain is crucial for correct trafficking of the prohormone through the secretory pathway, and suggest that vasopressin-neurophysin association provides correct prohormone folding in the endoplasmic reticulum.

摘要

长期以来,人们一直知道在细胞内环境下,血管加压素与同一前体激素中存在的神经垂体素紧密结合。由于这种结合被认为在激素生物合成过程中发挥作用,因此通过在Neuro2A细胞中表达突变的血管加压素前体,在细胞环境中研究了其作用。通过从前体中删除血管加压素结构域或用甘氨酸取代血管加压素中必需的酪氨酸2残基来阻止血管加压素和神经垂体素结构域之间的结合的突变血管加压素前体,既没有被加工也没有被靶向到分泌颗粒中。相反,两种血管加压素原突变体都保留在内质网中。我们的结果表明,血管加压素结构域对于前体激素通过分泌途径的正确运输至关重要,并表明血管加压素-神经垂体素的结合在内质网中提供了正确的前体激素折叠。

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