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Sortin2增强酿酒酵母中向液泡的内吞运输。

Sortin2 enhances endocytic trafficking towards the vacuole in Saccharomyces cerevisiae.

作者信息

Vásquez-Soto Beatriz, Manríquez Nicolás, Cruz-Amaya Mirna, Zouhar Jan, Raikhel Natasha V, Norambuena Lorena

机构信息

Plant Molecular Biology Centre, Department of Biology, Faculty of Sciences, University of Chile, Las Palmeras 3425 Ñuñoa, Santiago, Chile.

Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid, Madrid, Spain.

出版信息

Biol Res. 2015 Jul 25;48(1):39. doi: 10.1186/s40659-015-0032-9.

Abstract

BACKGROUND

A highly regulated trafficking of cargo vesicles in eukaryotes performs protein delivery to a variety of cellular compartments of endomembrane system. The two main routes, the secretory and the endocytic pathways have pivotal functions in uni- and multi-cellular organisms. Protein delivery and targeting includes cargo recognition, vesicle formation and fusion. Developing new tools to modulate protein trafficking allows better understanding the endomembrane system mechanisms and their regulation. The compound Sortin2 has been described as a protein trafficking modulator affecting targeting of the vacuolar protein carboxypeptidase Y (CPY), triggering its secretion in Saccharomyces cerevisiae.

RESULTS

A reverse chemical-genetics approach was used to identify key proteins for Sortin2 bioactivity. A genome-wide Sortin2 resistance screen revealed six yeast deletion mutants that do not secrete CPY when grown at Sortin2 condition where the parental strain does: met18, sla1, clc1, dfg10, dpl1 and yjl175w. Integrating mutant phenotype and gene ontology annotation of the corresponding genes and their interactome pointed towards a high representation of genes involved in the endocytic process. In wild type yeast endocytosis towards the vacuole was faster in presence of Sortin2, which further validates the data of the genome-wide screen. This effect of Sortin2 depends on structural features of the molecule, suggesting compound specificity. Sortin2 did not affect endocytic trafficking in Sortin2-resistant mutants, strongly suggesting that the Sortin2 effects on the secretory and endocytic pathways are linked.

CONCLUSIONS

Overall, the results reveal that Sortin2 enhances the endocytic transport pathway in Saccharomyces cerevisiae. This cellular effect is most likely at the level where secretory and endocytic pathways are merged. Them Sortin2 specificity over the endomembrane system places it as a powerful biological modulator for cell biology.

摘要

背景

在真核生物中,货物囊泡的高度调控运输将蛋白质递送至内膜系统的各种细胞区室。两条主要途径,即分泌途径和内吞途径,在单细胞和多细胞生物中具有关键作用。蛋白质递送和靶向包括货物识别、囊泡形成和融合。开发调节蛋白质运输的新工具有助于更好地理解内膜系统机制及其调控。化合物Sortin2已被描述为一种蛋白质运输调节剂,可影响液泡蛋白羧肽酶Y(CPY)的靶向,从而在酿酒酵母中触发其分泌。

结果

采用反向化学遗传学方法鉴定Sortin2生物活性的关键蛋白。全基因组的Sortin2抗性筛选揭示了六个酵母缺失突变体,当在Sortin2条件下生长时,它们不会分泌CPY,而亲本菌株会分泌:met18、sla1、clc1、dfg10、dpl1和yjl175w。整合相应基因及其相互作用组的突变体表型和基因本体注释表明,参与内吞过程的基因高度富集。在野生型酵母中,Sortin2存在时向液泡的内吞作用更快,这进一步验证了全基因组筛选的数据。Sortin2的这种作用取决于分子的结构特征,表明化合物具有特异性。Sortin2对Sortin2抗性突变体的内吞运输没有影响,强烈表明Sortin2对分泌途径和内吞途径的作用是相关的。

结论

总体而言,结果表明Sortin2增强了酿酒酵母中的内吞运输途径。这种细胞效应很可能发生在分泌途径和内吞途径合并之处。Sortin2在内膜系统上的特异性使其成为细胞生物学中一种强大的生物调节剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ee5/4515019/c5f797c05313/40659_2015_32_Fig1_HTML.jpg

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