Frederick R D, Thilmony R L, Sessa G, Martin G B
Department of Agronomy, Lilly Hall of Life Sciences, Purdue University, West Lafayette, Indiana 47907-1150, USA.
Mol Cell. 1998 Aug;2(2):241-5. doi: 10.1016/s1097-2765(00)80134-3.
The Pto kinase confers resistance in tomato to P. syringae pv. tomato strains expressing the AvrPto protein. Physical interaction of the Pto kinase and AvrPto protein in the plant cell initiates host defense responses. The recognition event between these two proteins is very specific; AvrPto does not interact with other closely related kinases, including the Fen kinase, which shares 80% amino acid identity with Pto. By using Pto-Fen chimeric proteins and site-directed mutagenesis, we found that Thr-204 is required for Pto interaction with AvrPto in a yeast two-hybrid system and for recognition specificity in a tobacco leaf transient assay. Substitution of Thr-204 into the Fen kinase allowed that kinase to interact with AvrPto and to confer an AvrPto-specific defense response in tobacco leaves. Thus, simple mutations appear capable of giving rise to new resistance gene specificities.
Pto激酶赋予番茄对表达AvrPto蛋白的丁香假单胞菌番茄致病变种菌株的抗性。植物细胞中Pto激酶与AvrPto蛋白的物理相互作用引发宿主防御反应。这两种蛋白质之间的识别事件非常特异;AvrPto不与其他密切相关的激酶相互作用,包括与Pto具有80%氨基酸同一性的Fen激酶。通过使用Pto-Fen嵌合蛋白和定点诱变,我们发现在酵母双杂交系统中,苏氨酸-204是Pto与AvrPto相互作用所必需的,在烟草叶片瞬时分析中也是识别特异性所必需的。将苏氨酸-204替换到Fen激酶中,使得该激酶能够与AvrPto相互作用,并在烟草叶片中引发AvrPto特异性防御反应。因此,简单的突变似乎能够产生新的抗性基因特异性。