Department of Pharmacological Sciences, Stony Brook University, Stony Brook, NY, 11794, USA.
Department of Pharmacological Sciences, Stony Brook University, Stony Brook, NY, 11794, USA.
Curr Opin Chem Biol. 2021 Dec;65:145-153. doi: 10.1016/j.cbpa.2021.08.003. Epub 2021 Sep 29.
Exploring the lipids of bacteria presents a predicament that may not be broadly recognized in a field dominated by the biology and biochemistry of eukaryotic - and especially, mammalian - lipids. Bacteria make multifarious metabolites that contain fatty acyl chains of unusual length and unsaturation attached to assorted headgroups, including sugars and fatty alcohols. Lipid profiling approaches developed for eukaryotic lipids often fail to detect, resolve, or identify bacterial lipids due to their wide range of polarities (including very hydrophobic species) and diverse positional and stereochemical variations. Global lipid profiling, or lipidomics, of bacteria has thus developed as a separate mission with methodological and scientific considerations tailored to the biology of these organisms. In this review, we summarize findings primarily from the last three years that exemplify recent advances and continuing challenges to learning about bacterial lipids.
探索细菌的脂质提出了一个困境,在以真核生物和特别是哺乳动物脂质的生物学和生物化学为主导的领域中,可能没有得到广泛的认识。细菌产生多种代谢物,其中含有不同长度和不饱和度的脂肪酸链,连接着各种头基,包括糖和脂肪醇。由于极性范围很广(包括非常疏水的物种)以及位置和立体化学变化的多样性,为真核脂质开发的脂质分析方法往往无法检测、解析或鉴定细菌脂质。因此,细菌的全局脂质分析(或脂质组学)已经发展成为一个独立的任务,其方法学和科学考虑因素都针对这些生物体的生物学特性进行了调整。在这篇综述中,我们总结了主要来自过去三年的发现,这些发现例证了关于细菌脂质的最新进展和持续挑战。