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泛素介导的油质蛋白蛋白酶体降解参与拟南芥种子萌发后幼苗生长过程中的油体动员。

Ubiquitin-Mediated Proteasomal Degradation of Oleosins is Involved in Oil Body Mobilization During Post-Germinative Seedling Growth in Arabidopsis.

作者信息

Deruyffelaere Carine, Bouchez Isabelle, Morin Halima, Guillot Alain, Miquel Martine, Froissard Marine, Chardot Thierry, D'Andrea Sabine

机构信息

INRA, Institut Jean-Pierre Bourgin, UMR 1318, ERL CNRS 3559, Saclay Plant Sciences, RD10, F-78026 Versailles, France AgroParisTech, Institut Jean-Pierre Bourgin, UMR 1318, ERL CNRS 3559, Saclay Plant Sciences, RD10, F-78026 Versailles, France.

INRA, UMR 1319, PAPPSO, F-78350 Jouy-en-Josas, France.

出版信息

Plant Cell Physiol. 2015 Jul;56(7):1374-87. doi: 10.1093/pcp/pcv056. Epub 2015 Apr 22.

Abstract

In oleaginous seeds, lipids--stored in organelles called oil bodies (OBs)--are degraded post-germinatively to provide carbon and energy for seedling growth. To date, little is known about how OB coat proteins, known as oleosins, control OB dynamics during seed germination. Here, we demonstrated that the sequential proteolysis of the five Arabidopsis thaliana oleosins OLE1-OLE5 begins just prior to lipid degradation. Several post-translational modifications (e.g. phosphorylation and ubiquination) of oleosins were concomitant with oleosin degradation. Phosphorylation occurred only on the minor OLE5 and on an 8 kDa proteolytic fragment of OLE2. A combination of immunochemical and proteomic approaches revealed ubiquitination of the four oleosins OLE1-OLE4 at the onset of OB mobilization. Ubiquitination topology was surprisingly complex. OLE1 and OLE2 were modified by three distinct and predominantly exclusive motifs: monoubiquitin, K48-linked diubiquitin (K48Ub(2)) and K63-linked diubiquitin. Ubiquitinated oleosins may be channeled towards specific degradation pathways according to ubiquitination type. One of these pathways was identified as the ubiquitin-proteasome pathway. A proteasome inhibitor (MG132) reduced oleosin degradation and induced cytosolic accumulation of K48Ub(2)-oleosin aggregates. These results indicate that K48Ub(2)-modified oleosins are selectively extracted from OB coat and degraded by the proteasome. Proteasome inhibition also reduced lipid hydrolysis, providing in vivo evidence that oleosin degradation is required for lipid mobilization.

摘要

在含油种子中,储存于称为油体(OBs)的细胞器中的脂质在种子萌发后被降解,为幼苗生长提供碳源和能量。迄今为止,关于油体表面蛋白(油质蛋白)如何在种子萌发过程中控制油体动态变化,人们了解甚少。在此,我们证明了拟南芥五种油质蛋白OLE1 - OLE5的顺序蛋白水解恰好在脂质降解之前开始。油质蛋白的几种翻译后修饰(如磷酸化和泛素化)与油质蛋白降解同时发生。磷酸化仅发生在次要的OLE5以及OLE2的一个8 kDa蛋白水解片段上。免疫化学和蛋白质组学方法相结合揭示了在油体动员开始时,四种油质蛋白OLE1 - OLE4发生了泛素化。泛素化拓扑结构惊人地复杂。OLE1和OLE2被三种不同且主要互斥的基序修饰:单泛素、K48连接的双泛素(K48Ub(2))和K63连接的双泛素。根据泛素化类型,泛素化的油质蛋白可能被导向特定的降解途径。其中一条途径被确定为泛素 - 蛋白酶体途径。蛋白酶体抑制剂(MG132)减少了油质蛋白的降解,并诱导了K48Ub(2) - 油质蛋白聚集体的胞质积累。这些结果表明,K48Ub(2)修饰的油质蛋白被选择性地从油体表面提取并被蛋白酶体降解。蛋白酶体抑制也减少了脂质水解,提供了体内证据表明油质蛋白降解是脂质动员所必需的。

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