Mol Plant Microbe Interact. 2013 Nov;26(11):1302-11. doi: 10.1094/MPMI-06-13-0163-R.
Syringolin A (SylA), a virulence factor secreted by certain strains of the plant pathogen Pseudomonas syringae pv. syringae, is an irreversible proteasome inhibitor imported by plant cells by an unknown transport process. Here, we report that functional expression in yeast of all 17 members of the Arabidopsis oligopeptide transporter family revealed that OLIGOPEPTIDE TRANSPORTER1 (OPT1), OPT2, YELLOW STRIPE-LIKE3 (YSL3), YSL7, and YSL8 rendered yeast cells sensitive to growth inhibition by SylA to different degrees, strongly indicating that these proteins mediated SylA uptake into yeast cells. The greatest SylA sensitivity was conferred by YSL7 and YSL8 expression. An Arabidopsis ysl7 mutant exhibited strongly reduced SylA sensitivity in a root growth inhibition assay and in leaves of ysl7 and ysl8 mutants, SylA-mediated quenching of salicylic-acid-triggered PATHOGENESIS-RELATED GENE1 transcript accumulation was greatly reduced compared with the wild type. These results suggest that YSL7 and YSL8 are major SylA uptake transporters in Arabidopsis. Expression of a YSL homolog of bean, the host of the SylA-producing P. syringae pv. syringae B728a, in yeast also conferred strong SylA sensitivity. Thus, YSL transporters, which are thought to be involved in metal homeostasis, have been hijacked by bacterial pathogens for SylA uptake into host cells.
Syringolin A (SylA),一种由植物病原体丁香假单胞菌 pv. syringae 的某些菌株分泌的毒力因子,是一种被植物细胞通过未知的转运过程导入的不可逆蛋白酶体抑制剂。在这里,我们报告说,拟南芥 17 种寡肽转运体家族成员的酵母功能表达表明,OLIGOPEPTIDE TRANSPORTER1 (OPT1)、OPT2、YELLOW STRIPE-LIKE3 (YSL3)、YSL7 和 YSL8 使酵母细胞对 SylA 的生长抑制表现出不同程度的敏感性,这强烈表明这些蛋白介导了 SylA 进入酵母细胞的摄取。YSL7 和 YSL8 的表达赋予了 SylA 最大的敏感性。拟南芥 ysl7 突变体在根生长抑制测定和 ysl7 和 ysl8 突变体叶片中表现出强烈降低的 SylA 敏感性,与野生型相比,SylA 介导的水杨酸触发 PATHOGENESIS-RELATED GENE1 转录物积累的猝灭大大降低。这些结果表明,YSL7 和 YSL8 是拟南芥中 SylA 的主要摄取转运体。在酵母中表达大豆的 YSL 同源物,即产生 SylA 的丁香假单胞菌 pv. syringae B728a 的宿主,也赋予了强烈的 SylA 敏感性。因此,被细菌病原体劫持用于 SylA 进入宿主细胞的 YSL 转运体,被认为参与了金属稳态。