Department of Biological Sciences, Stanford University, Stanford, California 94305.
Plant Physiol. 1977 Oct;60(4):585-91. doi: 10.1104/pp.60.4.585.
Dissociation coefficients of auxin-binding sites on maize (Zea mays L.) coleoptile membranes were measured, for 48 auxins and related ring compounds, by competitive displacement of (14)C-naphthaleneacetic acid from the binding sites. The sites bind with high affinity several ring compounds with acidic side chains 2 to 4 carbons long, and much more weakly bind neutral ring compounds and phenols related to these active acids, most phenoxyalkylcarboxylic acids, and arylcarboxylic acids except benzoic acid, which scarcely binds, and triiodobenzoic acids, which bind strongly. Specificity of the binding is narrowed in the presence of a low molecular weight "supernatant factor" that occurs in maize and other tissues. Activity of many of the analogs as auxin agonists or antagonists in the cell elongation response was determined with maize coleoptiles. These activities on the whole roughly parallel the affinities of the binding sites for the same compounds, especially affinities measured in the presence of supernatant factor, but there are some quantitative discrepancies, especially among phenoxyalkylcarboxylic acids. In view of several factors that can cause receptor affinity and biological activity values to diverge quantitatively among analogs, the findings appear to support the presumption that the auxin-binding sites may be receptors for auxin action.
玉米(Zea mays L.)胚芽鞘膜上的生长素结合位点的离解系数通过(14)C-萘乙酸从结合位点的竞争置换来测量,用于 48 种生长素和相关的环状化合物。这些位点与具有 2 到 4 个碳原子长的酸性侧链的几种环状化合物具有高亲和力,并且与中性环状化合物和与这些活性酸相关的酚类、大多数苯氧烷羧酸和除苯甲酸以外的芳基羧酸的结合力较弱,而苯甲酸几乎不结合,三碘苯甲酸则强烈结合。在存在低分子量“上清液因子”的情况下,结合的特异性会受到限制,该因子存在于玉米和其他组织中。用玉米胚芽鞘测定了许多类似物作为细胞伸长反应中生长素激动剂或拮抗剂的活性。这些活性总体上与结合位点对相同化合物的亲和力大致平行,特别是在存在上清液因子的情况下测量的亲和力,但存在一些定量差异,特别是在苯氧烷羧酸之间。鉴于几种因素可能导致受体亲和力和生物活性值在类似物之间发生定量差异,这些发现似乎支持这样的假设,即生长素结合位点可能是生长素作用的受体。