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ACC合酶TOE序列是与ETO1家族蛋白相互作用以及靶蛋白去稳定化所必需的。

The ACC synthase TOE sequence is required for interaction with ETO1 family proteins and destabilization of target proteins.

作者信息

Yoshida Hitoshi, Wang Kevin L-C, Chang Chia-Man, Mori Koichi, Uchida Eiji, Ecker Joseph R

机构信息

Rice Biotechnology Research Subteam, Hokuriku Region, National Agricultural Research Center, Jo-etsu, Niigata 943-0193, Japan.

出版信息

Plant Mol Biol. 2006 Oct;62(3):427-37. doi: 10.1007/s11103-006-9029-7. Epub 2006 Aug 1.

Abstract

The Arabidopsis ETO1 protein is a negative regulator of ethylene biosynthesis. It specifically inhibits the enzyme activity of type 2 1-aminocyclopropane-1-carboxylate synthases (ACC synthases or ACS) and promotes their degradation by a proteasome-dependent pathway. To further understand the function of the ETO1 family in the plant kingdom, we cloned a cDNA of LeEOL1 (Lycopersicon esculentum ETO 1- LIKE 1), an ETO1 homolog from tomato. LeEOL1 encodes a putative protein with domain architecture conserved in the Arabidopsis ETO1/EOL1/EOL2 proteins and in the predicted rice EOL proteins. LeEOL1 is expressed in leaf, stem, root, flower, and the full ripe stage of fruit, suggesting diverse regulatory roles in the development of tomato. Yeast two-hybrid analysis revealed specific interactions between LeEOL1 and type 2 ACC synthases. When the C-terminal 14 amino acids (TOE; target of ETO1) of LE-ACS3 specific to type 2 ACC synthases were fused to a type 1 ACS, LE-ACS2, at the corresponding position, it allowed LE-ACS2 to strongly interact with LeEOL1. A GFP-TOE(LE-ACS3) fusion protein expressed in rice calli and in the roots of wild-type Arabidopsis showed reduced stability compared to native GFP. However, the fluorescence of GFP-TOE(LE-ACS3) was comparable to that of the native GFP in Arabidopsis eto1-4 mutant. Furthermore, MG132 treatment significantly enhanced the fluorescence of GFP-TOE(LE-ACS3) in the roots of wild-type Arabidopsis. These results suggest that the ETO1-family-mediated ACS protein degradation pathway is conserved in both monocots and dicots, and that TOE acts as a protein destabilization signal recognized by the ETO1 protein family.

摘要

拟南芥ETO1蛋白是乙烯生物合成的负调控因子。它特异性抑制2型1-氨基环丙烷-1-羧酸合成酶(ACC合成酶或ACS)的酶活性,并通过蛋白酶体依赖途径促进其降解。为了进一步了解ETO1家族在植物界的功能,我们克隆了番茄中ETO1同源基因LeEOL1(番茄ETO1样1)的cDNA。LeEOL1编码一种推定蛋白,其结构域结构在拟南芥ETO1/EOL1/EOL2蛋白以及预测的水稻EOL蛋白中保守。LeEOL1在叶、茎、根、花以及果实的完全成熟阶段表达,表明其在番茄发育中具有多种调控作用。酵母双杂交分析揭示了LeEOL1与2型ACC合成酶之间的特异性相互作用。当2型ACC合成酶特有的LE-ACS3的C末端14个氨基酸(TOE;ETO1的靶标)在相应位置与1型ACS即LE-ACS2融合时,它使LE-ACS2能够与LeEOL1强烈相互作用。在水稻愈伤组织和野生型拟南芥根中表达的GFP-TOE(LE-ACS3)融合蛋白与天然GFP相比稳定性降低。然而,在拟南芥eto1-4突变体中,GFP-TOE(LE-ACS3)的荧光与天然GFP相当。此外,MG132处理显著增强了野生型拟南芥根中GFP-TOE(LE-ACS3)的荧光。这些结果表明,ETO1家族介导的ACS蛋白降解途径在单子叶植物和双子叶植物中都是保守的,并且TOE作为被ETO1蛋白家族识别的蛋白不稳定信号。

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