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从根中制备的颗粒级分中化学合成的脂寡糖NodRm因子结合位点的表征。

Characterization of a binding site for chemically synthesized lipo-oligosaccharidic NodRm factors in particulate fractions prepared from roots.

作者信息

Bono J J, Riond J, Nicolaou K C, Bockovich N J, Estevez V A, Cullimore J V, Ranjeva R

机构信息

Centre de Recherches en Biologie et Physiologie Végétale, URA CNRS, Université Paul Sabatier, Toulouse, France.

出版信息

Plant J. 1995 Feb;7(2):253-60. doi: 10.1046/j.1365-313x.1995.7020253.x.

Abstract

This paper describes the characteristics of a binding site for the major, lipo-oligosaccharide Nod factor of Rhizobium meliloti in roots of the symbiotic host plant, Medicago truncatula. Chemically synthesized NodRm-IV(Ac, S, C16:2) was labelled by tritiation to a specific activity of 56 Ci mmol-1 and this ligand was shown to be biologically active in the root hair deformation assay at 10(-11) M. Binding of the ligand to a particulate fraction from roots of M. truncatula was found to be saturable and reversible with an affinity (Kd) of 86 nM and the binding characteristics were consistent with a single class of binding sites. Competition with modified Nod factors showed that the binding was independent of both the O-acetyl and the sulphyl group and did not depend on the unsaturation of the fatty acid. However, both moieties of the lipo-oligosaccharide are required for high-affinity binding since tetra-N-acetyl-chitotetraose and palmitate were found to be poor competitors of ligand binding. A binding site with analogous characteristics was also found in a similarly prepared particulate fraction of tomato roots. This binding site for Nod factors, termed NFBS1, which is present in both a leguminous and a non-leguminous plant, may have a more general role than symbiosis.

摘要

本文描述了共生宿主植物蒺藜苜蓿根中苜蓿根瘤菌主要脂寡糖结瘤因子结合位点的特征。化学合成的NodRm-IV(Ac, S, C16:2)经氚化后比活度为56 Ci mmol-1,该配体在根毛变形试验中10(-11) M浓度下具有生物活性。发现该配体与蒺藜苜蓿根的颗粒部分结合具有饱和性和可逆性,亲和力(Kd)为86 nM,结合特征与单一类别的结合位点一致。与修饰的结瘤因子竞争表明,结合既不依赖于O-乙酰基也不依赖于磺酰基,且不取决于脂肪酸的不饱和度。然而,脂寡糖的两个部分都是高亲和力结合所必需的,因为发现四-N-乙酰壳四糖和棕榈酸是配体结合的弱竞争者。在番茄根的类似制备颗粒部分中也发现了具有类似特征的结合位点。这种结瘤因子结合位点称为NFBS1,存在于豆科植物和非豆科植物中,可能比共生具有更广泛的作用。

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