Dai Wei-Jun, Zeng Yong, Xie Zhi-Ping, Staehelin Christian
State Key Laboratory of Biocontrol, School of Life Sciences, SunYat-Sen (Zhongshan) University, East Campus, Bei San Road, Guangzhou 510006, China.
J Bacteriol. 2008 Jul;190(14):5101-10. doi: 10.1128/JB.00306-08. Epub 2008 May 16.
Establishment of symbiosis between certain host plants and nitrogen-fixing bacteria ("rhizobia") depends on type 3 effector proteins secreted via the bacterial type 3 secretion system (T3SS). Here, we report that the open reading frame y4zC of strain NGR234 encodes a novel rhizobial type 3 effector, termed NopT (for nodulation outer protein T). Analysis of secreted proteins from NGR234 and T3SS mutants revealed that NopT is secreted via the T3SS. NopT possessed autoproteolytic activity when expressed in Escherichia coli or human HEK 293T cells. The processed NopT exposed a glycine (G50) to the N terminus, which is predicted to be myristoylated in eukaryotic cells. NopT with a point mutation at position C93, H205, or D220 (catalytic triad) showed strongly reduced autoproteolytic activity, indicating that NopT is a functional protease of the YopT-AvrPphB effector family. When transiently expressed in tobacco plants, proteolytically active NopT elicited a rapid hypersensitive reaction. Arabidopsis plants transformed with nopT showed chlorotic and necrotic symptoms, indicating a cytotoxic effect. Inoculation experiments with mutant derivatives of NGR234 indicated that NopT affected nodulation either positively (Phaseolus vulgaris cv. Yudou No. 1; Tephrosia vogelii) or negatively (Crotalaria juncea). We suggest that NopT-related polymorphism may be involved in evolutionary adaptation of NGR234 to particular host legumes.
某些宿主植物与固氮细菌(“根瘤菌”)之间共生关系的建立取决于通过细菌III型分泌系统(T3SS)分泌的III型效应蛋白。在此,我们报道菌株NGR234的开放阅读框y4zC编码一种新型根瘤菌III型效应蛋白,称为NopT(结瘤外蛋白T)。对NGR234和T3SS突变体分泌蛋白的分析表明,NopT是通过T3SS分泌的。当在大肠杆菌或人HEK 293T细胞中表达时,NopT具有自蛋白水解活性。加工后的NopT在N端暴露一个甘氨酸(G50),预计该甘氨酸在真核细胞中会被豆蔻酰化。在位置C93、H205或D220(催化三联体)处有单点突变的NopT显示出自蛋白水解活性大幅降低,表明NopT是YopT-AvrPphB效应蛋白家族的功能性蛋白酶。当在烟草植物中瞬时表达时,具有蛋白水解活性的NopT引发快速过敏反应。用nopT转化的拟南芥植物表现出黄化和坏死症状,表明具有细胞毒性作用。用NGR234突变衍生物进行的接种实验表明,NopT对结瘤的影响既有正向的(普通菜豆品种榆豆1号;非洲山毛豆)也有负向的(猪屎豆)。我们认为,与NopT相关的多态性可能参与了NGR234对特定宿主豆科植物的进化适应。