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植物信号传导中活化C激酶的受体:一个“滥交”小分子的故事

The Receptor for Activated C Kinase in Plant Signaling: Tale of a Promiscuous Little Molecule.

作者信息

Islas-Flores Tania, Rahman Ahasanur, Ullah Hemayet, Villanueva Marco A

机构信息

Unidad Académica de Sistemas Arrecifales, Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México Puerto Morelos, México.

Department of Biology, Howard University Washington, DC, USA.

出版信息

Front Plant Sci. 2015 Dec 8;6:1090. doi: 10.3389/fpls.2015.01090. eCollection 2015.

Abstract

Two decades after the first report of the plant homolog of the Receptor for Activated C Kinase 1 (RACK1) in cultured tobacco BY2 cells, a significant advancement has been made in the elucidation of its cellular and molecular role. The protein is now implicated in many biological functions including protein translation, multiple hormonal responses, developmental processes, pathogen infection resistance, environmental stress responses, and miRNA production. Such multiple functional roles are consistent with the scaffolding nature of the plant RACK1 protein. A significant advance was achieved when the β-propeller structure of the Arabidopsis RACK1A isoform was elucidated, thus revealing that its conserved seven WD repeats also assembled into this typical topology. From its crystal structure, it became apparent that it shares the structural platform for the interaction with ligands identified in other systems such as mammals. Although RACK1 proteins maintain conserved Protein Kinase C binding sites, the lack of a bona fide PKC adds complexity and enigma to the nature of the ligand partners with which RACK1 interacts in plants. Nevertheless, ligands recently identified using the split-ubiquitin based and conventional yeast two-hybrid assays, have revealed that plant RACK1 is involved in several processes that include defense response, drought and salt stress, ribosomal function, cell wall biogenesis, and photosynthesis. The information acquired indicates that, in spite of the high degree of conservation of its structure, the functions of the plant RACK1 homolog appear to be distinct and diverse from those in yeast, mammals, insects, etc. In this review, we take a critical look at the novel information regarding the many functions in which plant RACK1 has been reported to participate, with a special emphasis on the information on its currently identified and missing ligand partners.

摘要

在培养的烟草BY2细胞中首次报道活化C激酶1受体(RACK1)的植物同源物二十年后,在阐明其细胞和分子作用方面取得了重大进展。现在已知该蛋白参与许多生物学功能,包括蛋白质翻译、多种激素反应、发育过程、病原体感染抗性、环境应激反应和miRNA产生。这种多功能作用与植物RACK1蛋白的支架性质一致。当拟南芥RACK1A亚型的β-螺旋桨结构被阐明时,取得了重大进展,从而揭示其保守的七个WD重复序列也组装成这种典型拓扑结构。从其晶体结构可以明显看出,它与其他系统(如哺乳动物)中鉴定出的与配体相互作用的结构平台相同。尽管RACK1蛋白保留了保守的蛋白激酶C结合位点,但缺乏真正的PKC增加了RACK1在植物中与之相互作用的配体伙伴性质的复杂性和谜团。然而,最近使用基于分裂泛素和传统酵母双杂交试验鉴定的配体表明,植物RACK1参与了多个过程,包括防御反应、干旱和盐胁迫、核糖体功能、细胞壁生物合成和光合作用。获得的信息表明,尽管其结构高度保守,但植物RACK1同源物的功能似乎与酵母、哺乳动物、昆虫等中的功能不同且多样。在这篇综述中,我们批判性地审视了有关植物RACK1已报道参与的许多功能的新信息,特别强调了有关其目前已鉴定和缺失的配体伙伴的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c007/4672068/8ed78e6854cd/fpls-06-01090-g0001.jpg

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