Cell type-specific proteomics uncovers a RAF15-SnRK2.6/OST1 kinase cascade in guard cells

IF 9.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Hongliang Wang, Yubei Wang, Tian Sang, Zhen Lin, Rongxia Li, Weiwei Ren, Xin Shen, Bing Zhao, Xiao Wang, Xuebin Zhang, Shaoqun Zhou, Shaojun Dai, Honghong Hu, Chun-Peng Song, Pengcheng Wang
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引用次数: 0

Abstract

Multicellular organisms such as plants contain various cell types with specialized functions. Analyzing the characteristics of each cell type reveals specific cell functions and enhances our understanding of organization and function at the organismal level. Guard cells (GCs) are specialized epidermal cells that regulate the movement of the stomata and gaseous exchange, and provide a model genetic system for analyzing cell fate, signaling, and function. Several proteomics analyses of GC are available, but these are limited in depth. Here we used enzymatic isolation and flow cytometry to enrich GC and mesophyll cell protoplasts and perform in-depth proteomics in these two major cell types in Arabidopsis leaves. We identified approximately 3,000 proteins not previously found in the GC proteome and more than 600 proteins that may be specific to GC. The depth of our proteomics enabled us to uncover a guard cell-specific kinase cascade whereby Raf15 and Snf1-related kinase2.6 (SnRK2.6)/OST1(open stomata 1) mediate abscisic acid (ABA)-induced stomatal closure. RAF15 directly phosphorylated SnRK2.6/OST1 at the conserved Ser175 residue in its activation loop and was sufficient to reactivate the inactive form of SnRK2.6/OST1. ABA-triggered SnRK2.6/OST1 activation and stomatal closure was impaired in raf15 mutants. We also showed enrichment of enzymes and flavone metabolism in GC, and consistent, dramatic accumulation of flavone metabolites. Our study answers the long-standing question of how ABA activates SnRK2.6/OST1 in GCs and represents a resource potentially providing further insights into the molecular basis of GC and mesophyll cell development, metabolism, structure, and function.

Abstract Image

细胞类型特异性蛋白质组学揭示了保护细胞中的RAF15-SnRK2.6/OST1激酶级联
多细胞生物,如植物,包含各种具有特殊功能的细胞类型。分析每种细胞类型的特征揭示了特定的细胞功能,增强了我们对组织和功能在有机体水平上的理解。保护细胞(GCs)是调节气孔运动和气体交换的特化表皮细胞,为分析细胞命运、信号传导和功能提供了一个模型遗传系统。一些GC的蛋白质组学分析是可用的,但这些都是有限的深度。本研究利用酶分离和流式细胞术对拟南芥叶片的GC和叶肉细胞原生质体进行富集,并对这两种主要细胞类型进行深入的蛋白质组学研究。我们发现了大约3000个以前未在GC蛋白质组中发现的蛋白质和600多个可能是GC特异性的蛋白质。我们的蛋白质组学的深度使我们发现了一个保护细胞特异性激酶级联,其中Raf15和snf1相关的kinase2.6 (SnRK2.6)/OST1(开放气孔1)介导脱落酸(ABA)诱导的气孔关闭。RAF15直接磷酸化SnRK2.6/OST1在其激活环中保守的Ser175残基,足以重新激活SnRK2.6/OST1的失活形式。aba触发的SnRK2.6/OST1激活和气孔关闭在raf15突变体中受损。我们还发现了GC中酶和黄酮类代谢的富集,以及黄酮类代谢产物的持续积累。我们的研究回答了长期存在的问题,即ABA如何激活GCs中的SnRK2.6/OST1,并代表了潜在的资源,为GC和叶肉细胞发育,代谢,结构和功能的分子基础提供了进一步的见解。
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来源期刊
Journal of Integrative Plant Biology
Journal of Integrative Plant Biology 生物-生化与分子生物学
CiteScore
18.00
自引率
5.30%
发文量
220
审稿时长
3 months
期刊介绍: Journal of Integrative Plant Biology is a leading academic journal reporting on the latest discoveries in plant biology.Enjoy the latest news and developments in the field, understand new and improved methods and research tools, and explore basic biological questions through reproducible experimental design, using genetic, biochemical, cell and molecular biological methods, and statistical analyses.
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