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根瘤菌NGR234的结瘤蛋白NoeE的体外磺基转移酶活性

In vitro sulfotransferase activity of NoeE, a nodulation protein of Rhizobium sp. NGR234.

作者信息

Quesada-Vincens D, Hanin M, Broughton W J, Jabbouri S

机构信息

Laboratoire de Biologie Moléculaire des Plantes Supérieures, Université de Genève, Switzerland.

出版信息

Mol Plant Microbe Interact. 1998 Jul;11(7):592-600. doi: 10.1094/MPMI.1998.11.7.592.

Abstract

Soil bacteria of the genera Azorhizobium, Bradyrhizobium, and Rhizobium liberate morphogenetic lipochitin-oligosaccharides (Nod factors) into legume rhizospheres. Nod factors, which are synthesized by the products of rhizobial nodulation (nod) genes, vary in core length as well as in the number and type of substitutions. In Rhizobium sp. NGR234, the N-acylated pentamers of N-acetyl-D-glucosamine carry an O-methylfucose group on the reducing terminus that is substituted, on a mutually exclusive basis, with either an acetyl or a sulfuryl group. A sulfotransferase encoded by noeE is required for adjunction of activated sulfate donated by 3'-phosphoadenosine 5'-phosphosulfate (PAPS). Here we show that when expressed in NGR234 cured of its symbiotic plasmid (= ANU265) or when purified as a fusion protein (MBP-NoeE), NoeE transfers sulfate from PAPS to fucosylated lipochitin-oligosaccharides. Enzyme assays showed that sulfotransferase activity is dependent on the presence of an acyl group (stearic and vaccenic acids were tested) since no activity was detected when fucosylated oligochitins (oligomers of two to six N-acetyl-D-glucosamine units) were used as substrates. Thus, NoeE is unique in that it is the only characterized sulfotransferase that is specific for fucosylated Nod factors. It probably acts after NodA, which acylates the amino-sugar backbone.

摘要

固氮根瘤菌属、慢生根瘤菌属和根瘤菌属的土壤细菌会将形态发生性脂壳寡糖(结瘤因子)释放到豆科植物的根际。结瘤因子由根瘤菌结瘤(nod)基因的产物合成,其核心长度以及取代基的数量和类型各不相同。在根瘤菌NGR234中,N-乙酰-D-葡萄糖胺的N-酰化五聚体在还原端带有一个O-甲基岩藻糖基团,该基团在互斥的基础上被乙酰基或磺酰基取代。由noeE编码的磺基转移酶是将3'-磷酸腺苷5'-磷酸硫酸酯(PAPS)提供的活化硫酸盐连接上去所必需的。在此我们表明,当在其共生质粒被清除的NGR234(=ANU265)中表达时,或者当作为融合蛋白(MBP-NoeE)纯化时,NoeE会将硫酸盐从PAPS转移到岩藻糖基化的脂壳寡糖上。酶活性测定表明,磺基转移酶活性依赖于酰基的存在(测试了硬脂酸和vaccenic酸),因为当使用岩藻糖基化的寡壳聚糖(两到六个N-乙酰-D-葡萄糖胺单元的寡聚物)作为底物时未检测到活性。因此,NoeE的独特之处在于它是唯一一种对岩藻糖基化结瘤因子具有特异性的已表征磺基转移酶。它可能在NodA之后起作用,NodA会使氨基糖主链酰化。

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