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Properties of a Solubilized Microsomal Auxin-binding Protein from Coleoptiles and Primary Leaves of Zea mays

机译:玉米芽鞘胚芽鞘和初生叶的增溶微粒体生长素结合蛋白的性质

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摘要

An auxin-binding protein can be solubilized from microsomal membranes of Zea mays using either Triton X-100 extraction of the membranes or buffer extraction of the acetone-precipitated membranes. This paper describes the properties of the binding protein solubilized by these two methods. The binding is assayed by gel filtration chromatography in the presence of naphthalene [2-14C]acetic acid. Binding is rapid and reversible with an optimum at pH 5. Both preparations show similar molecular weights by gel filtration (80,000 daltons) at pH 7.6 and 0.1 molar NaCl, and both aggregate at low ionic strength. They appear to be the same active molecular species. The binding activity is destroyed by trypsin, pronase or para-chloromercuribenzoic acid, but not significantly reduced by phospholipase C, DNase, RNase, or dithioerythritol. Since saturating amounts of naphthalene acetic acid protect the molecule from inhibition by para-chloromercuribenzoic acid, it is concluded that the binding protein has a sulfhydryl group at the binding site, or protects such a group in its binding conformation. The dissociation constant of the protein for naphthalene acetic acid is 4.6 × 10−8 molar with 30 picomoles of sites per gram of tissue fresh weight. Binding constants were estimated for 13 other natural and synthetic auxins by competition with naphthalene[2-14C]acetic acid. Their dissociation constants are in general agreement with published values for their binding to intact membranes and their biological activity, although several exceptions were noted. A supernatant factor from the same tissue changes the apparent affinity of the protein for naphthalene acetic acid. This factor may be the same one as has been previously reported to alter the affinity of intact microsomes for auxin.
机译:可以使用玉米蛋白膜的Triton X-100提取或丙酮沉淀膜的缓冲液提取,从玉米的微粒体膜中溶解生长素结合蛋白。本文描述了通过这两种方法溶解的结合蛋白的性质。在萘[2- 14 C]乙酸存在下,通过凝胶过滤色谱法测定结合。结合快速且可逆,在pH 5时达到最佳。在pH 7.6和0.1摩尔的NaCl下,两种制备方法均显示出相似的分子量(通过80,000道尔顿的凝胶过滤),并且在低离子强度下聚集。它们似乎是相同的活性分子种类。胰蛋白酶,链霉蛋白酶或对氯汞苯甲酸破坏了结合活性,但磷脂酶C,DNase,RNase或二硫赤藓糖醇并未显着降低其结合活性。由于饱和量的萘乙酸可以保护分子不受对氯汞苯甲酸的抑制,因此可以得出结论,结合蛋白在结合位点具有巯基,或在其结合构象中保护该基团。该蛋白质对萘乙酸的解离常数为4.6×10 -8 摩尔,每克组织鲜重有30皮摩尔的位点。通过与萘[2- 14 C]乙酸竞争,估计了其他13种天然和合成植物生长素的结合常数。它们的解离常数与它们与完整膜的结合及其生物活性的公开值总体上是一致的,尽管注意到了一些例外。来自相同组织的上清液因子改变了蛋白质对萘乙酸的表观亲和力。该因素可能与先前报道的改变完整微粒体对生长素亲和力的因素相同。

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