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转运蛋白介导的茉莉酸酯在代谢和信号传导中的亚细胞分布

Transporter-Mediated Subcellular Distribution in the Metabolism and Signaling of Jasmonates.

作者信息

Wang Feifei, Yu Guanghui, Liu Pei

机构信息

Department of Ecology, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China.

出版信息

Front Plant Sci. 2019 Apr 2;10:390. doi: 10.3389/fpls.2019.00390. eCollection 2019.

Abstract

Jasmonates (jasmonic acid and its relatives) are a group of oxylipin phytohormones that are implicated in the regulation of a range of developmental processes and responses to environmental stimuli in plants. The biosynthesis of JAs occur sequentially in various subcellular compartments including the chloroplasts, peroxisomes and the cytoplasm. The biologically active jasmonoyl-isoleucine (JA-Ile) activates the core JA signaling in the nucleus by binding with its coreceptor, SCF-JAZ. Five members of a clade of ATP-binding cassette G (ABCG) transporters of were identified as the candidates of jasmonate transporters (JATs) in yeast cells. Among these JATs, AtJAT1/AtABCG16, has a dual localization in the plasma membrane and nuclear envelop and mediates the efflux of jasmonic acid (JA) across the plasma membrane and influx of JA-Ile into the nucleus. Genetic, cellular and biochemical analyses have demonstrated that AtJAT1/AtABCG16 is crucial for modulating JA-Ile concentration in the nucleus to orchestrate JA signaling. AtJAT1 could also be involved in modulating the biosynthesis of JA-Ile by regulating the distribution of JA and JA-Ile in the cytoplasm and nucleus, which would contribute to the highly dynamic JA signaling. Furthermore, other JAT members are localized in the plasma membrane and possibly in peroxisomes. Characterization of these JATs will provide further insights into a crucial role of transporter-mediated subcellular distribution in the metabolism and signaling of plant hormones, an emerging theme supported by the identification of increasing number of endomembrane-localized transporters.

摘要

茉莉酸类物质(茉莉酸及其相关物)是一类氧化脂质植物激素,参与调节植物一系列发育过程以及对环境刺激的反应。茉莉酸类物质的生物合成在包括叶绿体、过氧化物酶体和细胞质在内的各种亚细胞区室中依次进行。具有生物活性的茉莉酰异亮氨酸(JA-Ile)通过与其共受体SCF-JAZ结合,激活细胞核中的核心茉莉酸信号。在酵母细胞中,已鉴定出ATP结合盒G(ABCG)转运蛋白家族的五个成员为茉莉酸转运蛋白(JATs)的候选者。在这些JATs中,AtJAT1/AtABCG16在质膜和核膜上具有双重定位,并介导茉莉酸(JA)跨质膜的外排以及JA-Ile进入细胞核。遗传、细胞和生化分析表明,AtJAT1/AtABCG16对于调节细胞核中JA-Ile的浓度以协调茉莉酸信号至关重要。AtJAT1还可能通过调节JA和JA-Ile在细胞质和细胞核中的分布来参与调节JA-Ile的生物合成,这将有助于高度动态的茉莉酸信号传导。此外,其他JAT成员定位于质膜,也可能定位于过氧化物酶体。对这些JATs的表征将进一步深入了解转运蛋白介导的亚细胞分布在植物激素代谢和信号传导中的关键作用,这是一个由越来越多的内膜定位转运蛋白的鉴定所支持的新兴主题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8834/6454866/3b8b5191db68/fpls-10-00390-g001.jpg

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