Meindl T, Boller T, Felix G
Friedrich Miescher-Institute, P.O. Box 2543, CH-4002 Basel, Switzerland.
Plant Cell. 2000 Sep;12(9):1783-94. doi: 10.1105/tpc.12.9.1783.
flg22, a peptide corresponding to the most conserved domain of bacterial flagellin, acts as a potent elicitor in plants. Here, we have used an iodinated derivative of flg22 ((125)I-labeled Tyr-flg22) as a molecular probe for the flagellin receptor in tomato cells. This radioligand showed rapid binding to a single class of specific, saturable, high-affinity receptor sites in intact cells and membrane preparations. Binding, although essentially nonreversible under physiological conditions, was not covalent, and chemical cross-linking was required to specifically label a single polypeptide of 115 kD. Intact flagellin and elicitor-active flagellin peptides but not biologically inactive analogs efficiently competed for binding of radioligand. Peptides lacking the C terminus of the conserved domain, previously found to act as competitive antagonists of elicitor action in tomato cells, also competed for binding of radioligand. Thus, this novel, high-affinity binding site exhibited all the characteristics expected of a functional receptor of bacterial flagellin. For a model of receptor activation, we propose a two-step mechanism according to the address-message concept, in which binding of the N terminus (address) is the first step and activation of responses with the C terminus (message) is the second step.
flg22是一种与细菌鞭毛蛋白最保守结构域相对应的肽,在植物中作为一种有效的激发子。在此,我们使用flg22的碘化衍生物((125)I标记的Tyr-flg22)作为番茄细胞中鞭毛蛋白受体的分子探针。这种放射性配体在完整细胞和膜制剂中显示出与一类单一的特异性、可饱和、高亲和力受体位点的快速结合。结合在生理条件下虽然基本上是不可逆的,但不是共价的,需要化学交联来特异性标记一条115 kD的单一多肽。完整的鞭毛蛋白和具有激发子活性的鞭毛蛋白肽,但不是无生物学活性的类似物,能有效地竞争放射性配体的结合。缺乏保守结构域C末端的肽,先前被发现可作为番茄细胞中激发子作用的竞争性拮抗剂,也能竞争放射性配体的结合。因此,这个新的高亲和力结合位点表现出细菌鞭毛蛋白功能受体预期的所有特征。对于受体激活模型,我们根据地址-信息概念提出了一个两步机制,其中N末端(地址)的结合是第一步,C末端(信息)的反应激活是第二步。