Aminolipids in bacterial membranes and the natural environment

Shengwei Liu, Eleonora Silvano, Mingyu Li, Michaela Mausz, Branko Rihtman, Richard Guillonneau, Otto Geiger, David J Scanlan, Yin Chen
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Abstract

Our comprehension of membrane function has predominantly advanced through research on glycerophospholipids, also known as phosphoglycerides, which are glycerol phosphate-based lipids found across all three domains of life. However, in bacteria, a perplexing group of lipids distinct from glycerol phosphate-based ones also exists. These are amino acid-containing lipids that form an amide bond between an amino acid and a fatty acid. Subsequently, a second fatty acid becomes linked, often via the 3-hydroxy group on the first fatty acid. These amide-linked aminolipids have, as of now, been exclusively identified in bacteria. Several hydrophilic head groups have been discovered in these aminolipids including ornithine, glutamine, glycine, lysine, and more recently, a sulfur-containing non-proteinogenic amino acid cysteinolic acid. Here, we aim to review current advances in the genetics, biochemistry and function of these aminolipids as well as giving an ecological perspective. We provide evidence for their potential significance in the ecophysiology of all major microbiomes i.e. gut, soil and aquatic as well as highlighting their important roles in influencing biological interactions.
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细菌膜和自然环境中的氨基脂质
我们对膜功能的理解主要是通过对甘油磷脂(又称磷酸甘油脂)的研究取得的。然而,在细菌中,也存在一组不同于以磷酸甘油为基础的脂质,令人费解。这些脂质含有氨基酸,在氨基酸和脂肪酸之间形成酰胺键。随后,第二个脂肪酸通常通过第一个脂肪酸上的 3-羟基相连。到目前为止,这些酰胺连接的氨基脂只能在细菌中发现。在这些氨基脂中发现了几个亲水头基,包括鸟氨酸、谷氨酰胺、甘氨酸、赖氨酸以及最近发现的一种含硫非蛋白源氨基酸半胱氨醇酸。在这里,我们旨在回顾这些氨基脂质的遗传学、生物化学和功能方面的最新进展,并从生态学的角度进行分析。我们将提供证据,证明它们在所有主要微生物群(如肠道、土壤和水生微生物群)的生态生理学中的潜在意义,并强调它们在影响生物相互作用方面的重要作用。
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