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植物程序性细胞死亡是由一种自身激活形式的 Prf 引起的,而这种自身激活形式的 Prf 可以被 Prf LRR 结构域的共表达所抑制。

Plant programmed cell death caused by an autoactive form of Prf is suppressed by co-expression of the Prf LRR domain.

机构信息

Department of Plant, Soil and Entomological Sciences, University of Idaho, Moscow, ID 83844, USA.

出版信息

Mol Plant. 2012 Sep;5(5):1058-67. doi: 10.1093/mp/sss014. Epub 2012 Mar 26.

Abstract

In tomato, the NBARC-LRR resistance (R) protein Prf acts in concert with the Pto or Fen kinase to determine immunity against Pseudomonas syringae pv. tomato (Pst). Prf-mediated defense signaling is initiated by the recognition of two sequence-unrelated Pst-secreted effector proteins, AvrPto and AvrPtoB, by tomato Pto or Fen. Prf detects these interactions and activates signaling leading to host defense responses including localized programmed cell death (PCD) that is associated with the arrest of Pst growth. We found that Prf variants with single amino acid substitutions at D1416 in the IHD motif (isoleucine-histidine-aspartic acid) in the NBARC domain cause effector-independent PCD when transiently expressed in leaves of Nicotiana benthamiana, suggesting D1416 plays an important role in activation of Prf. The N-terminal region of Prf (NPrf) and the LRR domain are required for this autoactive Prf cell death signaling but dispensable for accumulation of the Prf(D1416V) protein. Significantly, co-expression of the Prf LRR but not NPrf, with Prf(D1416V), AvrPto/Pto, AvrPtoB/Pto, an autoactive form of Pto (Pto(Y207D)), or Fen completely suppresses PCD. However, the Prf LRR does not interfere with PCD caused by Rpi-blb1(D475V), a distinct R protein-mediated PCD signaling event, or that caused by overexpression of MAPKKKα, a protein acting downstream of Prf. Furthermore, we found the Prf(D1416V) protein is unable to accumulate in plant cells when co-expressed with the Prf LRR domain, likely explaining the cell death suppression. The mechanism for the LRR-induced degradation of Prf(D1416V) is unknown but may involve interference in the intramolecular interactions of Prf or to binding of the unattached LRR to other host proteins that are needed for Prf stability.

摘要

在番茄中,NBARC-LRR 抗性(R)蛋白 Prf 与 Pto 或 Fen 激酶协同作用,决定对丁香假单胞菌 pv.番茄(Pst)的免疫。Prf 介导的防御信号由番茄 Pto 或 Fen 识别两个序列不相关的 Pst 分泌效应蛋白 AvrPto 和 AvrPtoB 引发。Prf 检测到这些相互作用,并激活信号转导,导致宿主防御反应,包括局部程序性细胞死亡(PCD),这与 Pst 生长的停止有关。我们发现,NBARC 结构域中 IHD 基序(异亮氨酸-组氨酸-天冬氨酸)中的 D1416 单个氨基酸替换的 Prf 变体在瞬时表达于本氏烟叶片时会引起效应物非依赖性 PCD,表明 D1416 在 Prf 的激活中起重要作用。Prf 的 N 端区域(NPrf)和 LRR 结构域是这种自身激活的 Prf 细胞死亡信号所必需的,但对于 Prf(D1416V)蛋白的积累是可有可无的。显著的是,Prf(D1416V)与 AvrPto/Pto、AvrPtoB/Pto、Pto 的自身激活形式(Pto(Y207D))或 Fen 的共表达完全抑制了 PCD。然而,Prf LRR 不会干扰由 Rpi-blb1(D475V)引起的 PCD,这是一种独特的 R 蛋白介导的 PCD 信号事件,也不会干扰由 MAPKKKα 过表达引起的 PCD,MAPKKKα 是 Prf 下游的一种蛋白。此外,我们发现当与 Prf LRR 结构域共表达时,Prf(D1416V)蛋白无法在植物细胞中积累,这可能解释了细胞死亡的抑制。LRR 诱导的 Prf(D1416V)降解的机制尚不清楚,但可能涉及对 Prf 分子内相互作用的干扰,或未结合的 LRR 与其他宿主蛋白的结合,这些宿主蛋白是 Prf 稳定性所必需的。

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