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酵母磷脂分子种类在酰基链位置水平上的温度适应性

Temperature adaptation of yeast phospholipid molecular species at the acyl chain positional level.

作者信息

Kelso Celine, Maccarone Alan T, de Kroon Anton I P M, Mitchell Todd W, Renne Mike F

机构信息

School of Chemistry and Molecular Bioscience, University of Wollongong, Australia.

Molecular Horizons Institute, University of Wollongong, Australia.

出版信息

FEBS Lett. 2025 Feb;599(4):530-544. doi: 10.1002/1873-3468.15060. Epub 2024 Dec 13.

Abstract

Yeast is a poikilothermic organism and adapts its lipid composition to the environmental temperature to maintain membrane physical properties. Studies addressing temperature-dependent adaptation of the lipidome have described changes in the phospholipid composition at the level of sum composition (e.g. PC 32:1) and molecular composition (e.g. PC 16:0_16:1). However, there is little information at the level of positional isomers (e.g. PC 16:0/16:1 versus PC 16:1/16:0). Here, we used collision- and ozone-induced dissociation (CID/OzID) mass spectrometry to investigate homeoviscous adaptation of PC, PE and PS to determine the phospholipid acyl chains at the sn-1 and sn-2 position. Our data establish the sn-molecular species composition of PC, PE and PS in the lipidome of yeast cultured at different temperatures.

摘要

酵母是一种变温生物,它会根据环境温度调整其脂质组成,以维持膜的物理性质。针对脂质组的温度依赖性适应性进行的研究描述了磷脂组成在总组成水平(例如PC 32:1)和分子组成水平(例如PC 16:0_16:1)上的变化。然而,关于位置异构体水平(例如PC 16:0/16:1与PC 16:1/16:0)的信息却很少。在这里,我们使用碰撞诱导解离和臭氧诱导解离(CID/OzID)质谱法来研究PC、PE和PS的同型粘性适应,以确定sn-1和sn-2位置的磷脂酰基链。我们的数据确定了在不同温度下培养的酵母脂质组中PC、PE和PS的sn-分子种类组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4294/11848023/1020e38d176b/FEB2-599-530-g003.jpg

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