Choi Hyong Woo, Manohar Murli, Manosalva Patricia, Tian Miaoying, Moreau Magali, Klessig Daniel F
Boyce Thompson Institute for Plant Research, Ithaca, New York, United States of America.
PLoS Pathog. 2016 Mar 23;12(3):e1005518. doi: 10.1371/journal.ppat.1005518. eCollection 2016 Mar.
Damage-associated molecular pattern molecules (DAMPs) signal the presence of tissue damage to induce immune responses in plants and animals. Here, we report that High Mobility Group Box 3 (HMGB3) is a novel plant DAMP. Extracellular HMGB3, through receptor-like kinases BAK1 and BKK1, induced hallmark innate immune responses, including i) MAPK activation, ii) defense-related gene expression, iii) callose deposition, and iv) enhanced resistance to Botrytis cinerea. Infection by necrotrophic B. cinerea released HMGB3 into the extracellular space (apoplast). Silencing HMGBs enhanced susceptibility to B. cinerea, while HMGB3 injection into apoplast restored resistance. Like its human counterpart, HMGB3 binds salicylic acid (SA), which results in inhibition of its DAMP activity. An SA-binding site mutant of HMGB3 retained its DAMP activity, which was no longer inhibited by SA, consistent with its reduced SA-binding activity. These results provide cross-kingdom evidence that HMGB proteins function as DAMPs and that SA is their conserved inhibitor.
损伤相关分子模式分子(DAMPs)可发出组织损伤信号,从而在植物和动物中诱导免疫反应。在此,我们报告高迁移率族蛋白盒3(HMGB3)是一种新型植物DAMP。细胞外HMGB3通过类受体激酶BAK1和BKK1诱导典型的固有免疫反应,包括:i)丝裂原活化蛋白激酶(MAPK)激活;ii)防御相关基因表达;iii)胼胝质沉积;iv)增强对灰葡萄孢的抗性。坏死营养型灰葡萄孢感染会将HMGB3释放到细胞外空间(质外体)。沉默HMGBs会增强对灰葡萄孢的易感性,而向质外体注射HMGB3可恢复抗性。与人类同源物一样,HMGB3结合水杨酸(SA),这会导致其DAMP活性受到抑制。HMGB3的SA结合位点突变体保留了其DAMP活性,且不再受SA抑制,这与其降低的SA结合活性一致。这些结果提供了跨物种证据,表明HMGB蛋白作为DAMPs发挥作用,且SA是它们的保守抑制剂。