Shibuya N, Kaku H, Kuchitsu K, Maliarik M J
Department of Cell Biology, National Institute of Agrobiological Resources, Ibaraki, Japan.
FEBS Lett. 1993 Aug 23;329(1-2):75-8. doi: 10.1016/0014-5793(93)80197-3.
Binding experiments using a 125I-labeled tyramine conjugate of N-acetylchitooctaose, a highly potent elicitor for the induction of phytoalexin production in rice cells, and a microsomal membrane preparation from suspension-cultured rice cells showed the presence of a novel high-affinity binding site for this oligosaccharide. The binding of the ligand was saturable and the Scatchard plot analysis of the results indicated the presence of a single class of binding site with a Kd of 5.4 nM which is comparable with that reported for the binding of the hepta-beta-glucoside elicitor in soybean membrane. The ligand binding was inhibited by unlabeled N-acetylchitoheptaose but not by its deacetylated form. These characteristics of this binding site coincide well with the specificity and sensitivity for the elicitor in several assay systems, suggesting the possible involvement of this binding site in the recognition of the elicitor in vivo.
使用N - 乙酰壳八糖的125I标记酪胺缀合物(一种在水稻细胞中诱导植物抗毒素产生的高效诱导剂)和悬浮培养水稻细胞的微粒体膜制剂进行的结合实验表明,存在一种针对这种寡糖的新型高亲和力结合位点。配体的结合是可饱和的,对结果的Scatchard图分析表明存在一类单一的结合位点,其解离常数(Kd)为5.4 nM,这与报道的大豆膜中七 - β - 葡萄糖苷诱导剂的结合情况相当。未标记的N - 乙酰壳七糖可抑制配体结合,但其脱乙酰化形式则无此作用。该结合位点的这些特性与几种检测系统中诱导剂的特异性和敏感性非常吻合,表明该结合位点可能参与体内诱导剂的识别。