Academy of Agricultural Sciences, All-Union Research Institute of Agricultural Biotechnology, 127253, Moscow, USSR.
Planta. 1991 Feb;183(3):315-20. doi: 10.1007/BF00197727.
The concentration dependences of the binding of fusicoccins (FCs) A, B, C, D, J and H to plasma membranes isolated from maize (Zea mays L.) roots have been studied in parallel with the effects of these compounds on elongation and (86)Rb transport in detached maize roots. The dissociation constants obtained showed a good correlation between the affinity of the FCs for the plasmalemma and their biological activity. However, the range of physiologically active FC concentrations proved to be about two orders of magnitude higher than that calculated from the dissociation constants. It was also shown that Vicia faba L. mesophyll protoplasts, unlike isolated plasma membranes, have two FC-binding sites, one with a K D similar to that of the isolated plasmalemma while the other has a substantially higher K D , apparently corresponding to the physiologically active state of the FC-binding proteins.
已对来自玉米(Zea mays L.)根的质膜的 Fusicoccins (FCs) A、B、C、D、J 和 H 的结合与这些化合物对玉米离体根伸长和 (86)Rb 转运的影响进行了平行研究。获得的离解常数表明,FC 对质膜的亲和力与其生物活性之间存在良好的相关性。然而,生理活性的 FC 浓度范围被证明比从离解常数计算出的范围高出约两个数量级。还表明,与分离的质膜不同,蚕豆(Vicia faba L.)叶肉原生质体具有两个 FC 结合位点,一个具有与分离的质膜相似的 KD,而另一个具有明显更高的 KD,显然对应于 FC 结合蛋白的生理活性状态。