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参与苜蓿中华根瘤菌 - 苜蓿共生关系的细菌结瘤因子的结构测定。

Structural determination of bacterial nodulation factors involved in the Rhizobium meliloti-alfalfa symbiosis.

作者信息

Roche P, Lerouge P, Ponthus C, Promé J C

机构信息

Centre de Recherche de Biochimie et Génétique Cellulaires du Centre National de la Recherche Scientifique, Toulouse, France.

出版信息

J Biol Chem. 1991 Jun 15;266(17):10933-40.

PMID:2040610
Abstract

Extracellular signals produced by Rhizobium meliloti are able to induce root hair deformations and nodule organogenesis on alfalfa. The production of these signals is controlled by bacterial nod genes. To enable their isolation in significant amounts, an overproducting strain was constructed. These Nod factors were first extracted by butanol from the culture medium and further purified by reverse-phase high performance liquid chromatography, ion-exchange, and Sephadex LH-20 chromatographies. The structure of the major signal, called NodRm-1, was determined by mass spectrometry, nuclear magnetic resonance, 35S labeling, chemical analysis, and enzymatic degradation, and was shown to be a sulfated and acylated tetramer of glucosamine namely, beta-D-GlcpN(2,9-hexadecadie-noyl) - (1----4) - beta - D - Glc p Nac - (1----4) - beta - D - Glc p NAc - (1----4) - D - GlcpNAc-6-SO3H. Another Nod factor (called Ac-NodRm-1) was co-purified and identified as NodRm-1 acetylated on the C-6 of the nonreducing end sugar. NodRm-1 elicits root hair deformation specifically on alfalfa at a concentration less than 10(-10) M but has no effect on vetch (a heterologous host plant).

摘要

苜蓿中华根瘤菌产生的胞外信号能够诱导紫花苜蓿根毛变形和根瘤器官发生。这些信号的产生受细菌结瘤基因控制。为了能够大量分离这些信号,构建了一个过量产生菌株。这些结瘤因子首先用丁醇从培养基中提取,然后通过反相高效液相色谱、离子交换和葡聚糖凝胶LH - 20色谱进一步纯化。主要信号NodRm - 1的结构通过质谱、核磁共振、35S标记、化学分析和酶解确定,结果表明它是一种硫酸化和酰化的葡糖胺四聚体,即β - D - GlcpN(2,9 - 十六碳二烯酰)-(1→4)-β - D - Glc p Nac-(1→4)-β - D - Glc p NAc-(1→4)-D - GlcpNAc - 6 - SO3H。另一种结瘤因子(称为Ac - NodRm - 1)经共纯化后被鉴定为在非还原端糖的C - 6位乙酰化的NodRm - 1。NodRm - 1在浓度小于10(-10) M时能特异性地诱导紫花苜蓿根毛变形,但对巢菜(一种异源宿主植物)没有影响。

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