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首页> 外文期刊>Molecular Microbiology >Hydroxylated ornithine lipids increase stress tolerance in Rhizobium tropici CIAT899.
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Hydroxylated ornithine lipids increase stress tolerance in Rhizobium tropici CIAT899.

机译:羟基化的鸟氨酸脂可增加热带根瘤菌CIAT899的抗逆性。

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Ornithine lipids (OLs) are widespread among Gram-negative bacteria. Their basic structure consists of a 3-hydroxy fatty acyl group attached in amide linkage to the alpha-amino group of ornithine and a second fatty acyl group ester-linked to the 3-hydroxy position of the first fatty acid. OLs can be hydroxylated within the secondary fatty acyl moiety and this modification has been related to increased stress tolerance. Rhizobium tropici, a nodule-forming alpha-proteobacterium known for its stress tolerance, forms four different OLs. Studies of the function of these OLs have been hampered due to lack of knowledge about their biosynthesis. Here we describe that OL biosynthesis increases under acid stress and that OLs are enriched in the outer membrane. Using a functional expression screen, the OL hydroxylase OlsE was identified, which in combination with the OL hydroxylase OlsC is responsible for the synthesis of modified OLs in R. tropici. Unlike described OL hydroxylations, the OlsE-catalysed hydroxylation occurs within the ornithine moiety. Mutants deficient in OlsE or OlsC and double mutants deficient in OlsC/OlsE were characterized. R. tropici mutants deficient in OlsC-mediated OL hydroxylation are more susceptible to acid and temperature stress. All three mutants lacking OL hydroxylases are affected during symbiosis.
机译:鸟氨酸脂(OLs)在革兰氏阴性细菌中广泛分布。它们的基本结构由酰胺键连接至鸟氨酸的α-氨基的3-羟基脂肪酰基和与第一脂肪酸的3-羟基位置连接的第二脂肪酰基酯组成。 OLs可以在仲脂肪酰基部分内被羟基化,这种修饰与提高的耐应力性有关。热带根瘤菌是一种形成结节的α-变形杆菌,以其耐压力性着称,可形成四种不同的OL。由于缺乏有关其生物合成的知识,对这些OL的功能的研究受到阻碍。在这里,我们描述了在酸性胁迫下OL的生物合成增加,并且OLs在外膜中富集。使用功能性表达筛选,鉴定了OL羟化酶OlsE,其与OL羟化酶OlsC结合在一起,负责合成热带果蝇中修饰的OL。与描述的OL羟基化不同,OlsE催化的羟基化发生在鸟氨酸部分内。表征了OlsE或OlsC缺陷的突变体和OlsC / OlsE缺陷的双重突变体。缺乏OlsC介导的OL羟基化的R.tropici突变体更容易受到酸和温度的影响。缺少OL羟化酶的所有三个突变体在共生过程中均受到影响。

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