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拟南芥ETO1特异性地与2型1-氨基环丙烷-1-羧酸合酶相互作用并对其进行负调控。

Arabidopsis ETO1 specifically interacts with and negatively regulates type 2 1-aminocyclopropane-1-carboxylate synthases.

作者信息

Yoshida Hitoshi, Nagata Masayasu, Saito Koji, Wang Kevin L C, Ecker Joseph R

机构信息

Department of Rice Research, National Agricultural Research Center, Jo-etsu, Niigata 943-0193, Japan.

出版信息

BMC Plant Biol. 2005 Aug 10;5:14. doi: 10.1186/1471-2229-5-14.

Abstract

BACKGROUND

In Arabidopsis, ETO1 (ETHYLENE-OVERPRODUCER1) is a negative regulator of ethylene evolution by interacting with AtACS5, an isoform of the rate-limiting enzyme, 1-aminocyclopropane-1-carboxylate synthases (ACC synthase or ACS), in ethylene biosynthetic pathway. ETO1 directly inhibits the enzymatic activity of AtACS5. In addition, a specific interaction between ETO1 and AtCUL3, a constituent of a new type of E3 ubiquitin ligase complex, suggests the molecular mechanism in promoting AtACS5 degradation by the proteasome-dependent pathway. Because orthologous sequences to ETO1 are found in many plant species including tomato, we transformed tomato with Arabidopsis ETO1 to evaluate its ability to suppress ethylene production in tomato fruits.

RESULTS

Transgenic tomato lines that overexpress Arabidopsis ETO1 (ETO1-OE) did not show a significant delay of fruit ripening. So, we performed yeast two-hybrid assays to investigate potential heterologous interaction between ETO1 and three isozymes of ACC synthases from tomato. In the yeast two-hybrid system, ETO1 interacts with LE-ACS3 as well as AtACS5 but not with LE-ACS2 or LE-ACS4, two major isozymes whose gene expression is induced markedly in ripening fruits. According to the classification of ACC synthases, which is based on the C-terminal amino acid sequences, both LE-ACS3 and AtACS5 are categorized as type 2 isozymes and possess a consensus C-terminal sequence. In contrast, LE-ACS2 and LE-ACS4 are type 1 and type 3 isozymes, respectively, both of which do not possess this specific C-terminal sequence. Yeast two-hybrid analysis using chimeric constructs between LE-ACS2 and LE-ACS3 revealed that the type-2-ACS-specific C-terminal tail is required for interaction with ETO1. When treated with auxin to induce LE-ACS3, seedlings of ETO1-OE produced less ethylene than the wild type, despite comparable expression of the LE-ACS3 gene in the wild type.

CONCLUSION

These results suggest that ETO1 family proteins specifically interact with and negatively regulate type 2 ACC synthases. Our data also show that Arabidopsis ETO1 can regulate type 2 ACS in a heterologous plant, tomato.

摘要

背景

在拟南芥中,ETO1(乙烯过量产生1)通过与乙烯生物合成途径中限速酶1-氨基环丙烷-1-羧酸合酶(ACC合酶或ACS)的一种同工型AtACS5相互作用,成为乙烯生成的负调控因子。ETO1直接抑制AtACS5的酶活性。此外,ETO1与新型E3泛素连接酶复合物的一个组成部分AtCUL3之间的特异性相互作用,揭示了通过蛋白酶体依赖性途径促进AtACS5降解的分子机制。由于在包括番茄在内的许多植物物种中都发现了与ETO1同源的序列,我们用拟南芥ETO1转化番茄,以评估其抑制番茄果实乙烯产生的能力。

结果

过表达拟南芥ETO1(ETO1-OE)的转基因番茄品系未表现出果实成熟的显著延迟。因此,我们进行了酵母双杂交试验,以研究ETO1与番茄ACC合酶的三种同工型之间潜在的异源相互作用。在酵母双杂交系统中,ETO1与LE-ACS3以及AtACS5相互作用,但不与LE-ACS2或LE-ACS4相互作用,这两种主要同工型在成熟果实中的基因表达明显被诱导。根据基于C末端氨基酸序列的ACC合酶分类,LE-ACS3和AtACS5都被归类为2型同工型,并具有一致的C末端序列。相比之下,LE-ACS2和LE-ACS4分别是1型和3型同工型,两者都不具有这种特定的C末端序列。使用LE-ACS2和LE-ACS3之间的嵌合构建体进行的酵母双杂交分析表明,2型ACS特异性C末端尾巴是与ETO1相互作用所必需的。用生长素处理以诱导LE-ACS3时,尽管野生型中LE-ACS3基因的表达相当,但ETO1-OE幼苗产生的乙烯比野生型少。

结论

这些结果表明,ETO1家族蛋白与2型ACC合酶特异性相互作用并对其进行负调控。我们的数据还表明,拟南芥ETO1可以在异源植物番茄中调节2型ACS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e21c/1199607/4f4823dcb281/1471-2229-5-14-1.jpg

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