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Enzymatic radiolabelling to a high specific activity of legume lipo-oligosaccharidic nodulation factors from Rhizobium meliloti.

机译:酶放射标记法对来自根瘤菌的豆类脂寡糖类结瘤因子具有高比活性。

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摘要

In this paper we describe the two-step coupled 35S-radiolabelling of the lipo-oligosaccharidic nodulation (Nod) factors of the bacterium Rhizobium meliloti to a specific radioactivity of 800 Ci/mmol. These radiolabelled Nod factors bind to a particulate fraction from roots of the bacterium's symbiotic host, Medicago truncatula, with an equilibrium dissociation constant (KD) of 117 nM, similar to that observed with a synthetic tritiated ligand. The first step of the 35S-labelling involves the synthesis of 3'-phosphoadenosine 5'-phospho[35S]sulphate ([35S]PAPS) from ATP and [35S]sulphate using yeast enzymes. The second step exploits the sulphotransferase activity of the R. meliloti NodH protein, which has been expressed in Escherichia coli, to transfer the labelled sulphate group from PAPS to non-sulphated Nod factors. This enzyme was found to be active in E. coli cultured at 18 degrees C but not 37 degrees C. NodH could also transfer the sulphate group from PAPS to a model substrate, tetra-N-acetyl chitotetraose, with apparent Km values of 56 and 70 microM respectively, and exhibited an apparent Km value for non-sulphated Nod factors of 28 microM. Coupling the two steps of the radiolabelling resulted in an efficiency of 35S incorporation from inorganic sulphate to the Nod factors of approximately 10%. These labelled factors will be a valuable tool in the search for high-affinity receptors for the lipo-oligosaccharidic nodulation factors.
机译:在本文中,我们描述了细菌根瘤菌的脂-寡糖结节(Nod)因子与800 Ci / mmol特定放射性的两步偶联35S-放射振铃。这些放射性标记的Nod因子与细菌共生寄主苜蓿(Medicago truncatula)的根部的微粒级分结合,平衡解离常数(KD)为117 nM,与合成tri化配体所观察到的相似。 35S标记的第一步涉及使用酵母酶从ATP和[35S]硫酸盐合成3'-磷酸腺苷5'-磷酸[35S]硫酸盐([35S] PAPS)。第二步利用已在大肠杆菌中表达的苜蓿根瘤菌NodH蛋白的磺基转移酶活性,将标记的硫酸根基团从PAPS转移到非硫酸化Nod因子。发现该酶在18摄氏度而不是37摄氏度的大肠杆菌中具有活性。NodH还可以将硫酸基团从PAPS转移到模型底物四-N-乙酰基壳四糖上,表观Km值为56,分别为70 microM,并显示28 microM的非硫酸化Nod因子的表观Km值。将放射标记的两个步骤耦合在一起,可以使无机硫酸盐与Nod因子的掺入率达到35S,约为10%。这些标记的因子将是寻找脂寡糖结节因子的高亲和力受体的有价值的工具。

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