SUMOylation: re-wiring the plant nucleus during stress and development

被引:114
作者
Augustine, Robert C. [1 ,2 ]
Vierstra, Richard D. [1 ]
机构
[1] Washington Univ, Dept Biol, Campus Box 1137, St Louis, MO 63130 USA
[2] Vassar Coll, Dept Biol, Poughkeepsie, NY 12604 USA
基金
美国国家科学基金会;
关键词
SUMO E3 LIGASE; PROTEASES OVERLY TOLERANT; DIRECTED DNA METHYLATION; MODIFIER SUMO; SALICYLIC-ACID; HEAT TOLERANCE; ABSCISIC-ACID; DIVERSE ARRAY; ARABIDOPSIS; UBIQUITIN;
D O I
10.1016/j.pbi.2018.06.006
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Conjugation of small ubiquitin-related modifier (SUMO) to intracellular proteins provides a dynamic regulatory mechanism that enables plants to rapidly defend against environmental challenges. SUMOylation of mostly nuclear proteins is among the fastest stress responses observed but precisely how this post-translational modification provides stress resilience remains unclear. Here, we describe the plant SUMO system and its expanding target catalog, which implicates this modification in DNA repair, chromatin modification/remodeling, transcriptional activation/repression, epigenetics, and RNA metabolism, with a likely outcome being extensive nuclear re-wiring to withstand stress. In parallel, studies have linked SUMO to developmental programs such as gametogenesis and gene silencing. The accumulating data support the notion that SUMOylation substantially influences the transcriptional and epigenetic landscapes to promote stress tolerance and developmental progression.
引用
收藏
页码:143 / 154
页数:12
相关论文
共 95 条
[1]   Defining the SUMO System in Maize: SUMOylation Is Up-Regulated during Endosperm Development and Rapidly Induced by Stress [J].
Augustine, Robert C. ;
York, Samuel L. ;
Rytz, Therese C. ;
Vierstra, Richard D. .
PLANT PHYSIOLOGY, 2016, 171 (03) :2191-2210
[2]   Stability of small ubiquitin-like modifier (SUMO) proteases OVERLY TOLERANT TO SALT1 and-2 modulates salicylic acid signalling and SUMO1/2 conjugation in Arabidopsis thaliana [J].
Bailey, Mark ;
Srivastava, Anjil ;
Conti, Lucio ;
Nelis, Stuart ;
Zhang, Cunjin ;
Florance, Hannah ;
Love, Andrew ;
Milner, Joel ;
Napier, Richard ;
Grant, Murray ;
Sadanandom, Ari .
JOURNAL OF EXPERIMENTAL BOTANY, 2016, 67 (01) :353-363
[3]   SUMO proteases OTS1 and 2 control filament elongation through a DELLA-dependent mechanism [J].
Campanaro, Alberto ;
Battaglia, Raffaella ;
Galbiati, Massimo ;
Sadanandom, Ari ;
Tonelli, Chiara ;
Conti, Lucio .
Plant Reproduction, 2016, 29 (04) :287-290
[4]   SUMOylation Inhibition Mediated by Disruption of SUMO E1-E2 Interactions Confers Plant Susceptibility to Necrotrophic Fungal Pathogens [J].
Castano-Miquel, Laura ;
Mas, Abraham ;
Teixeira, Ines ;
Segui, Josep ;
Perearnau, Anna ;
Thampi, Bhagyasree N. ;
Schapire, Arnaldo L. ;
Rodrigo, Natalia ;
La Verde, Gaelle ;
Manrique, Silvia ;
Coca, Maria ;
Maria Lois, L. .
MOLECULAR PLANT, 2017, 10 (05) :709-720
[5]   SIZ1-Dependent Post-Translational Modification by SUMO Modulates Sugar Signaling and Metabolism in Arabidopsis thaliana [J].
Castro, Pedro Humberto ;
Verde, Nuno ;
Lourenco, Tiago ;
Magalhaes, Alexandre Papadopoulos ;
Tavares, Rui Manuel ;
Rodriguez Bejarano, Eduardo ;
Azevedo, Herlander .
PLANT AND CELL PHYSIOLOGY, 2015, 56 (12) :2297-2311
[6]   The Arabidopsis E3 SUMO ligase SIZ1 regulates plant growth and drought responses [J].
Catala, Rafael ;
Ouyang, Jian ;
Abreu, Isabel A. ;
Hu, Yuxin ;
Seo, Haksoo ;
Zhang, Xiuren ;
Chua, Nam-Hai .
PLANT CELL, 2007, 19 (09) :2952-2966
[7]   Arabidopsis SUMO E3 Ligase SIZ1 Is Involved in Excess Copper Tolerance [J].
Chen, Chyi-Chuann ;
Chen, Yong-Yi ;
Tang, I-Chien ;
Liang, Hong-Ming ;
Lai, Chong-Cheong ;
Chiou, Jeng-Min ;
Yeh, Kuo-Chen .
PLANT PHYSIOLOGY, 2011, 156 (04) :2225-2234
[8]   DiSUMO-LIKE Interacts with RNA-Binding Proteins and Affects Cell-Cycle Progression during Maize Embryogenesis [J].
Chen, Junyi ;
Kalinowska, Kamila ;
Mueller, Benedikt ;
Mergner, Julia ;
Deutzmann, Rainer ;
Schwechheimer, Claus ;
Hammes, Ulrich Z. ;
Dresselhaus, Thomas .
CURRENT BIOLOGY, 2018, 28 (10) :1548-+
[9]   Sumoylation of Turnip mosaic virus RNA Polymerase Promotes Viral Infection by Counteracting the Host NPR1-Mediated Immune Response [J].
Cheng, Xiaofei ;
Xiong, Ruyi ;
Li, Yinzi ;
Li, Fangfang ;
Zhou, Xueping ;
Wang, Aiming .
PLANT CELL, 2017, 29 (03) :508-525
[10]   Specific Domain Structures Control Abscisic Acid-, Salicylic Acid-, and Stress-Mediated SIZ1 Phenotypes [J].
Cheong, Mi Sun ;
Park, Hyeong Cheol ;
Hong, Mi Ju ;
Lee, Jiyoung ;
Choi, Wonkyun ;
Jin, Jing Bo ;
Bohnert, Hans J. ;
Lee, Sang Yeol ;
Bressan, Ray A. ;
Yun, Dae-Jin .
PLANT PHYSIOLOGY, 2009, 151 (04) :1930-1942