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毕赤酵母 Acb1 的非常规分泌依赖于 GRASP 蛋白、过氧化物酶体功能和自噬体的形成。

Unconventional secretion of Pichia pastoris Acb1 is dependent on GRASP protein, peroxisomal functions, and autophagosome formation.

机构信息

Section of Molecular Biology, Division of Biological Sciences, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

J Cell Biol. 2010 Feb 22;188(4):537-46. doi: 10.1083/jcb.200911149. Epub 2010 Feb 15.

Abstract

In contrast to the enormous advances made regarding mechanisms of conventional protein secretion, mechanistic insights into the unconventional secretion of proteins are lacking. Acyl coenzyme A (CoA)-binding protein (ACBP; AcbA in Dictyostelium discoideum), an unconventionally secreted protein, is dependent on Golgi reassembly and stacking protein (GRASP) for its secretion. We discovered, surprisingly, that the secretion, processing, and function of an AcbA-derived peptide, SDF-2, are conserved between the yeast Pichia pastoris and D. discoideum. We show that in yeast, the secretion of SDF-2-like activity is GRASP dependent, triggered by nitrogen starvation, and requires autophagy proteins as well as medium-chain fatty acyl CoA generated by peroxisomes. Additionally, a phospholipase D implicated in soluble N-ethyl-maleimide sensitive fusion protein attachment protein receptor-mediated vesicle fusion at the plasma membrane is necessary, but neither peroxisome turnover nor fusion between autophagosomes and the vacuole is essential. Moreover, yeast Acb1 and several proteins required for its secretion are necessary for sporulation in P. pastoris. Our findings implicate currently unknown, evolutionarily conserved pathways in unconventional secretion.

摘要

与传统蛋白质分泌机制取得的巨大进展形成鲜明对比的是,蛋白质非常规分泌的机制仍不清楚。酰基辅酶 A(CoA)结合蛋白(ACBP;在盘基网柄菌中称为 AcbA)是一种非常规分泌的蛋白质,其分泌依赖于高尔基复合体重排堆叠蛋白(GRASP)。令人惊讶的是,我们发现酵母毕赤酵母和盘基网柄菌之间 AcbA 衍生肽 SDF-2 的分泌、加工和功能是保守的。我们表明,在酵母中,SDF-2 样活性的分泌依赖于 GRASP,由氮饥饿触发,并且需要自噬蛋白以及由过氧化物体生成的中链脂肪酸 CoA。此外,一种参与质膜上可溶性 N-乙基马来酰亚胺敏感融合蛋白附着蛋白受体介导的囊泡融合的磷脂酶 D 是必需的,但过氧化物体周转或自噬体与液泡之间的融合不是必需的。此外,酵母 Acb1 和其分泌所需的几种蛋白对于毕赤酵母的孢子形成是必需的。我们的研究结果表明,非常规分泌中存在目前未知的、进化上保守的途径。

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