Institute of Biochemistry and Biophysics PAS, Pawinskiego 5a, 02-106, Warsaw, Poland.
Biology Department, Institute of Genetics and Biotechnology, Warsaw University, Pawinskiego 5a, 02-106, Warsaw, Poland.
New Phytol. 2013 Oct;200(1):158-171. doi: 10.1111/nph.12347. Epub 2013 Jun 3.
SGT1 (Suppressor of G2 allele of SKP1) is required to maintain plant disease Resistance (R) proteins with Nucleotide-Binding (NB) and Leucine-Rich Repeat (LRR) domains in an inactive but signaling-competent state. SGT1 is an integral component of a multi-protein network that includes RACK1, Rac1, RAR1, Rboh, HSP90 and HSP70, and in rice the Mitogen-Activated Protein Kinase (MAPK), OsMAPK6. Tobacco (Nicotiana tabacum) N protein, which belongs to the Toll-Interleukin Receptor (TIR)-NB-LRR class of R proteins, confers resistance to Tobacco Mosaic Virus (TMV). Following transient expression in planta, we analyzed the functional relationship between SGT1, SIPK - a tobacco MAPK6 ortholog - and N, using mass spectrometry, confocal microscopy and pathogen assays. Here, we show that tobacco SGT1 undergoes specific phosphorylation in a canonical MAPK target-motif by SIPK. Mutation of this motif to mimic SIPK phosphorylation leads to an increased proportion of cells displaying SGT1 nuclear accumulation and impairs N-mediated resistance to TMV, as does phospho-null substitution at the same residue. Forced nuclear localization of SGT1 causes N to be confined to nuclei. Our data suggest that one mode of regulating nucleocytoplasmic partitioning of R proteins is by maintaining appropriate levels of SGT1 phosphorylation catalyzed by plant MAPK.
SGT1(SKP1 的 G2 等位基因抑制因子)对于维持具有核苷酸结合(NB)和亮氨酸丰富重复(LRR)结构域的植物疾病抗性(R)蛋白处于非活性但具有信号转导能力的状态是必需的。SGT1 是一个多蛋白网络的组成部分,该网络包括 RACK1、Rac1、RAR1、Rboh、HSP90 和 HSP70,并且在水稻中,还包括丝裂原激活蛋白激酶(MAPK)OsMAPK6。烟草(Nicotiana tabacum)N 蛋白属于 Toll-白细胞介素受体(TIR)-NB-LRR 类 R 蛋白,赋予烟草花叶病毒(TMV)抗性。在体内瞬时表达后,我们使用质谱、共聚焦显微镜和病原体测定分析了 SGT1、SIPK(烟草 MAPK6 同源物)和 N 之间的功能关系。在这里,我们表明烟草 SGT1 通过 SIPK 在一个典型的 MAPK 靶标基序中经历特异性磷酸化。该基序突变为模拟 SIPK 磷酸化的突变会导致更多比例的细胞显示 SGT1 核积累,并损害 N 介导的对 TMV 的抗性,同一残基的磷酸化缺失取代也是如此。SGT1 的强制核定位导致 N 局限于核内。我们的数据表明,调节 R 蛋白核质分配的一种模式是通过维持植物 MAPK 催化的适当水平的 SGT1 磷酸化来实现的。