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羟基化鸟氨酸脂类提高了里氏木霉 CIAT899 的应激耐受性。

Hydroxylated ornithine lipids increase stress tolerance in Rhizobium tropici CIAT899.

机构信息

Centro de Ciencias Genómicas, Universidad Nacional Autónoma de México, Av. Universidad s/n, Apdo. Postal 565-A, Cuernavaca, Morelos, CP62210, Mexico.

出版信息

Mol Microbiol. 2011 Mar;79(6):1496-514. doi: 10.1111/j.1365-2958.2011.07535.x. Epub 2011 Jan 23.

Abstract

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 α-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 α-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.

摘要

鸟氨酸脂(OLs)广泛存在于革兰氏阴性菌中。它们的基本结构由 3-羟基脂肪酸酰基以酰胺键连接到鸟氨酸的α-氨基上,以及第二个脂肪酸酰基以酯键连接到第一个脂肪酸的 3-羟基位置上。OLs 可以在二级脂肪酸部分中被羟化,这种修饰与增加的应激耐受性有关。根瘤菌 tropici 是一种形成豆科植物根瘤的α-变形菌,以其应激耐受性而闻名,它形成四种不同的 OLs。由于缺乏对其生物合成的了解,这些 OLs 的功能研究受到了阻碍。在这里,我们描述了 OL 生物合成在酸胁迫下增加,并且 OLs 在外膜中富集。通过功能表达筛选,鉴定了 OL 羟化酶 OlsE,它与 OL 羟化酶 OlsC 一起负责在 R. tropici 中合成修饰的 OLs。与描述的 OL 羟化作用不同,OlsE 催化的羟化作用发生在鸟氨酸部分内。对 OlsE 或 OlsC 缺陷突变体和 OlsC/OlsE 双缺陷突变体进行了表征。缺乏 OlsC 介导的 OL 羟化的 R. tropici 突变体对酸和温度应激更敏感。缺乏 OL 羟化酶的三个突变体在共生过程中都受到影响。

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