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根瘤菌壳寡糖与根瘤菌一般膜磷脂和糖脂成分在结构及细胞定位上的共同联系。

Common links in the structure and cellular localization of Rhizobium chitolipooligosaccharides and general Rhizobium membrane phospholipid and glycolipid components.

作者信息

Cedergren R A, Lee J, Ross K L, Hollingsworth R I

机构信息

Department of Biochemistry, Michigan State University, East Lansing 48824-1319, USA.

出版信息

Biochemistry. 1995 Apr 4;34(13):4467-77. doi: 10.1021/bi00013a040.

Abstract

Several common links between the structural chemistry of the chitolipooligosaccharides of Rhizobium and the general rhizobial membrane lipid and lipopolysaccharide chemistry of these bacteria have been uncovered. Aspects of common chemistry include sulfation, methylation, and the position and extent of fatty acyl chain unsaturation. We find that bacteria which are known to synthesize sulfated chitolipooligosaccharides (such as Rhizobium meliloti strains and the broad-host-range Rhizobium species strain NGR234) also have sulfated lipopolysaccharides. Their common origins of sulfation have been demonstrated by using mutants which are known to be impaired in sulfating their chitolipooligosaccharides. In such cases, there is a corresponding diminution or complete lack of sulfation of the lipopolysaccharides. The structural diversity of the fatty acids observed in the chitolipooligosaccharides is also observed in the other membrane lipids. For instance, the doubly unsaturated fatty acids which are known to be predominant components of R. meliloti chitolipooligosaccharides were also found in the usual phospholipids and glycolipids. Also, the known functionalization of the chitolipooligosaccharides of R. sp. NGR234 by O- and N-methylation was also reflected in the lipopolysaccharide of this organism. The common structural features of chitolipooligosaccharides and membrane components are consistent with a substantial degree of biosynthetic overlap and a large degree of cellular, spatial overlap between these molecules. The latter aspect is clearly demonstrated here since we show that the chitolipooligosaccharides are, in fact, normal membrane components of Rhizobium. This increases the importance of understanding the role of the bacterial cell surface chemistry in the Rhizobium/legume symbiosis and developing a comprehensive understanding of the highly integrated membrane lipid and glycolipid chemistry of Rhizobium.

摘要

根瘤菌的壳寡糖脂结构化学与这些细菌的一般根瘤菌膜脂和脂多糖化学之间的几个常见联系已被发现。共同化学特征包括硫酸化、甲基化以及脂肪酰链不饱和度的位置和程度。我们发现,已知能合成硫酸化壳寡糖脂的细菌(如苜蓿根瘤菌菌株和广宿主范围的根瘤菌物种菌株NGR234)也有硫酸化的脂多糖。通过使用已知在硫酸化其壳寡糖脂方面受损的突变体,已证明了它们硫酸化的共同起源。在这种情况下,脂多糖的硫酸化会相应减少或完全缺失。在壳寡糖脂中观察到的脂肪酸结构多样性也在其他膜脂中观察到。例如,已知是苜蓿根瘤菌壳寡糖脂主要成分的双不饱和脂肪酸也存在于常见的磷脂和糖脂中。此外,NGR234菌株壳寡糖脂通过O - 和N - 甲基化的已知功能化也反映在该生物体的脂多糖中。壳寡糖脂和膜成分的共同结构特征与这些分子之间相当程度的生物合成重叠以及细胞和空间上的大量重叠是一致的。后一个方面在此处得到了明确证明,因为我们表明壳寡糖脂实际上是根瘤菌的正常膜成分。这增加了理解细菌细胞表面化学在根瘤菌/豆科植物共生中的作用以及全面了解根瘤菌高度整合的膜脂和糖脂化学的重要性。

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