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不饱和脂肪酸异构体:对脂肪酸缺乏型粗糙脉孢菌突变体昼夜节律的影响

Unsaturated fatty acid isomers: effects on the circadian rhythm of a fatty-acid-deficient Neurospora crassa mutant.

作者信息

Mattern D L

出版信息

Arch Biochem Biophys. 1985 Mar;237(2):402-7. doi: 10.1016/0003-9861(85)90292-9.

Abstract

The fatty acids oleic, linoleic, and linolenic, each of which has a cis double bond at the delta 9 position, are known to lengthen the circadian period of conidiation (spore formation) of strains of Neurospora crassa carrying the cel mutation. cel confers a partial fatty acid requirement on the organism and has been used to promote incorporation of exogenous fatty acids. To test whether a physical effect imparted by the cis double bonds, such as increased membrane fluidity, is critical for the perturbation of the rhythm, various isomers of these fatty acids were supplemented to the bd csp cel strain. Positional isomers of oleic acid, such as petroselinic (delta 6) and vaccenic (delta 11) acids, and longer-chain isomers, such as eicosenoic (delta 11) and erucic (delta 13) acids, did not lengthen the rhythm. The shorter-chain palmitoleic (delta 9) acid did not give a consistent lengthening of the rhythm; it may be elongated to vaccenic acid. In contrast, gamma-linolenic acid (delta 6,9,12) dramatically lengthened the period. Linoelaidic acid (the trans,trans isomer of linoleic acid) lengthened the period at 22 degrees C, but elaidic acid (the trans isomer of oleic acid) did not. Elaidic acid was shown to exert a lengthening effect, but only at lower temperatures. The data do not support a direct physical action as the source of the fatty acids' "chronobiotic" ability.

摘要

油酸、亚油酸和亚麻酸这几种脂肪酸,每一种在δ9位置都有一个顺式双键,已知它们会延长携带cel突变的粗糙脉孢菌菌株的分生孢子形成(孢子形成)的昼夜节律周期。cel使该生物体对脂肪酸有部分需求,并已被用于促进外源脂肪酸的掺入。为了测试顺式双键所赋予的物理效应,如增加膜流动性,对于节律的扰动是否至关重要,将这些脂肪酸的各种异构体添加到bd csp cel菌株中。油酸的位置异构体,如岩芹酸(δ6)和反式油酸(δ11),以及长链异构体,如二十碳烯酸(δ11)和芥酸(δ13),并没有延长节律。较短链的棕榈油酸(δ9)并没有持续一致地延长节律;它可能会被延长为反式油酸。相比之下,γ-亚麻酸(δ6,9,12)显著延长了周期。反式亚油酸(亚油酸的反式、反式异构体)在22摄氏度时延长了周期,但反油酸(油酸的反式异构体)则没有。已表明反油酸会产生延长效应,但仅在较低温度下。这些数据不支持直接物理作用是脂肪酸“生物钟调节”能力的来源。

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