首页> 美国卫生研究院文献>Journal of Bacteriology >Growth-phase-dependent immunodeterminants of Rhizobium trifolii lipopolysaccharide which bind trifoliin A a white clover lectin.
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Growth-phase-dependent immunodeterminants of Rhizobium trifolii lipopolysaccharide which bind trifoliin A a white clover lectin.

机译:三叶草根瘤菌脂多糖的生长阶段依赖性免疫决定簇与白三叶凝集素三叶草素A结合。

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摘要

The lipopolysaccharide (LPS) from Rhizobium trifolii 0403 was isolated at different stages of growth and was examined for its (i) ability to bind a white clover lectin (trifoliin A), (ii) immunochemical properties, and (iii) composition. There was significantly more binding of trifoliin A to purified LPS and cells in the early stationary phase than to cells in the exponential phase. Immunofluorescence and enzyme-linked immunosorbent assays indicated that new antigenic determinants of the LPS appeared for brief periods on cells at the end of the lag phase and again at the beginning of the stationary phase. These new antigens were not detected on cells in midexponential or late stationary phase. Monovalent fragments of immunoglobulin G antibodies raised against the unique antigenic determinants in the LPS competitively blocked the binding of trifoliin A to cells in the early stationary phase. Gas chromatographic analysis showed that the relative quantity of several glycosyl components in the LPS increased as the culture advanced from the midexponential to the early stationary phase. In addition, LPS from cells in the early stationary phase had a higher aggregate molecular weight. Quinovosamine (2-amino-2,6-dideoxyglucose) was identified by combined gas chromatography-mass spectrometry as a sugar component of the LPS which had not been previously reported. D-Quinovosamine, N-acetyl-D-quinovosamine, and its n-propyl-beta-glycoside were effective hapten sugars which inhibited the binding of trifoliin A, anti-clover root antibody, and homologous antibody to these new determinants in the LPS. White clover plants had more infected root hairs after incubation with an inoculum of cells in the early stationary phase than after incubation with cells in the midexponential phase. The profound influence of the growth phase on the composition of lectin-binding polysaccharides of Rhizobium may be a major underlying cause of conflicting data among laboratories testing the lectin-recognition hypothesis. In addition, these chemical modifications may reflect mechanisms which regulate Rhizobium-root hair recognition in this nitrogen-fixing symbiosis.
机译:在不同的生长阶段从三叶草根瘤菌0403中分离出脂多糖(LPS),并对其(i)结合白三叶草凝集素(trifoliin A)的能力,(ii)免疫化学性质和(iii)组成进行了检查。相对于指数期细胞,三叶叶绿素A与纯化的LPS和早期固定期细胞的结合明显更多。免疫荧光和酶联免疫吸附试验表明,LPS的新抗原决定簇在滞后阶段结束时和静止阶段开始时短暂出现在细胞上。在指数中期或静止后期未在细胞上检测到这些新抗原。针对LPS中独特的抗原决定簇的免疫球蛋白G抗体的单价片段竞争性地阻止了三叶草素A在早期固定期与细胞的结合。气相色谱分析表明,LPS中几种糖基成分的相对数量随着培养物从中指数期发展到固定早期阶段而增加。此外,早期固定相中来自细胞的LPS具有较高的聚集分子量。通过组合气相色谱-质谱法鉴定了喹诺酮胺(2-氨基-2,6-二脱氧葡萄糖)为LPS的糖成分,以前没有报道过。 D-Quinovosamine,N-乙酰基-D-quinovosamine及其正丙基-β-糖苷是有效的半抗原糖,可抑制三叶叶素A,抗三叶草根抗体和同源抗体与LPS中这些新决定簇的结合。在静止期早期与细胞接种物一起孵育后,白三叶草植物的根毛被感染的数量比在指数中期与细胞培养物一起孵育后的多。生长期对根瘤菌凝集素结合多糖组成的深远影响可能是测试凝集素识别假设的实验室之间数据冲突的主要原因。此外,这些化学修饰可能反映了在固氮共生中调节根瘤菌根毛识别的机制。

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