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Auxin Transport and the Interaction of Phytotropins: Probing the Properties of a Phytotropin Binding Protein

机译:生长素运输和植物生长素的相互作用:探讨植物生长素结合蛋白的性质

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摘要

We have described the inhibition of polar auxin transport by several phytotropins including 1-N-naphthylphthalamic acid (NPA) and quercetin. Semicarbazones (substituted phenylsemicarbazones of 2-acetylarylcarboxylic acids) are inhibitors consistent with previously predicted general structural requirements for auxin transport inhibitors. The best semicarbazone derivative tested to date, hereafter called SCB-I, binds to the NPA binding protein with high affinity, Kb = 4 nanomolar. Quantification of the binding of various phytotropins allows us to make some general statements concerning the structure/properties of the NPA binding protein. The data suggest that the ligand binding region of this protein is multifaceted, a conclusion supported by the chemical predictions of Katekar and Geissler ([1977] Plant Physiol 60: 826-829). Although the data do not allow us to make specific conclusions on the structure of the binding site, they do show that both NPA and SCB-I could each occupy two regions of the protein. At least one of these binding regions appears to be common for both inhibitors of auxin transport. We suggest that the diversity of the binding site structure reflects the possible existence of more than one type of natural ligand controlling the process of auxin transport.
机译:我们已经描述了几种植物生长素,包括1-N-萘基邻苯二甲酸(NPA)和槲皮素对极性生长素运输的抑制作用。半咔唑酮(2-乙酰基芳基羧酸的取代苯基半氨基咔唑酮)是与以前预测的生长素转运抑制剂的一般结构要求一致的抑制剂。迄今为止测试的最好的氨基脲衍生物,以下称为SCB-1,以高亲和力(Kb = 4纳摩尔)与NPA结合蛋白结合。各种植物营养素结合的量化使我们能够就NPA结合蛋白的结构/性质做出一些一般性陈述。数据表明该蛋白的配体结合区是多方面的,这一结论得到了Katekar和Geissler的化学预测的支持([1977] Plant Physiol 60:826-829)。尽管数据不允许我们对结合位点的结构做出具体结论,但它们确实表明NPA和SCB-1均可各自占据蛋白质的两个区域。这些结合区中的至少一个似乎对于两种生长素转运抑制剂是共有的。我们建议结合位点结构的多样性反映了控制生长素运输过程的一种以上类型的天然配体的存在。

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