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A Cell-Specific Transgenic Approach in Xenopus Reveals the Importance of a Functional p24 System for a Secretory Cell

机译:在非洲爪蟾中的一种特定于细胞的转基因方法揭示了分泌性细胞功能性p24系统的重要性

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摘要

The p24α, -β, -γ, and -δ proteins are major multimeric constituents of cycling endoplasmic reticulum-Golgi transport vesicles and are thought to be involved in protein transport through the early secretory pathway. In this study, we targeted transgene overexpression of p24δ2 specifically to the Xenopus intermediate pituitary melanotrope cell that is involved in background adaptation of the animal and produces high levels of its major secretory cargo proopiomelanocortin (POMC). The transgene product effectively displaced the endogenous p24 proteins, resulting in a melanotrope cell p24 system that consisted predominantly of the transgene p24δ2 protein. Despite the severely distorted p24 machinery, the subcellular structures as well as the level of POMC synthesis were normal in these cells. However, the number and pigment content of skin melanophores were reduced, impairing the ability of the transgenic animal to fully adapt to a black background. This physiological effect was likely caused by the affected profile of POMC-derived peptides observed in the transgenic melanotrope cells. Together, our results suggest that in the early secretory pathway an intact p24 system is essential for efficient secretory cargo transport or for supplying cargo carriers with the correct protein machinery to allow proper secretory protein processing.
机译:p24α,-β,-γ和-δ蛋白是循环内质网-高尔基体运输小泡的主要多聚体成分,被认为参与了早期分泌途径的蛋白运输。在这项研究中,我们将p24δ2的转基因过表达特异地定位于非洲爪蟾垂体中间黑素体细胞,该细胞参与动物的背景适应并产生高水平的其主要分泌性货物proopiomelanocortin(POMC)。转基因产物有效地取代了内源性p24蛋白,形成了黑素体细胞p24系统,该系统主要由转基因p24δ2蛋白组成。尽管p24机制严重变形,但这些细胞中的亚细胞结构以及POMC合成水平还是正常的。但是,皮肤黑素细胞的数量和色素含量减少,从而削弱了转基因动物完全适应黑色背景的能力。这种生理效应很可能是由于在转基因黑素体细胞中观察到的POMC衍生肽的影响所致。总之,我们的结果表明,在早期分泌途径中,完整的p24系统对于有效的分泌货物运输或为载货船提供正确的蛋白质机制以允许适当的分泌蛋白质加工至关重要。

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