Masters C
Faculty of Science and Technology, Griffith University, Brisbane, Australia.
Mol Cell Biochem. 1996 Dec 20;165(2):83-93. doi: 10.1007/BF00229469.
The interactions between the omega-3 unsaturated fatty acids and peroxisomal function have been reviewed, in order to update and integrate knowledge in this area. Following a brief retrospective of the major clinical involvements of these fatty acids, the participation of the peroxisome in their metabolism has been appraised-the peroxisome being shown to exert a major influence on both the synthesis and degradation of the omega-3 fatty acids, with these effects flowing on to the widespread physiological implications of the derivative eicosanoids. Interactions between the omega-3 and omega-6 families of fatty acids have been discussed, as have the interdependent phenomena of peroxisome proliferation, membrane remodelling and cellular signalling. Amongst the signalling involvements covered were those of steroid hormone receptor superfamily, the phosphatidylcholine cycle, and the regulatory influences of oxygen free radicals. Comment has also been included on the separate biological roles of the individual omega-3 fatty acids, their influence on differential gene function, and on the molecular mechanisms of their pharmacological effects. It is concluded that the peroxisome is intimately involved in directing the metabolism and physiological influence of the omega-3 unsaturated fatty acids, and that this organelle merits much greater emphasis in future research aimed at unravelling the profound biological effects of these unique and multipotent compounds.
为了更新和整合该领域的知识,已对ω-3不饱和脂肪酸与过氧化物酶体功能之间的相互作用进行了综述。在简要回顾了这些脂肪酸的主要临床应用之后,评估了过氧化物酶体在其代谢中的参与情况——结果表明过氧化物酶体对ω-3脂肪酸的合成和降解均有重大影响,这些影响进而延伸至衍生类二十烷酸广泛的生理意义。已讨论了ω-3和ω-6脂肪酸家族之间的相互作用,以及过氧化物酶体增殖、膜重塑和细胞信号传导的相互依存现象。所涵盖的信号传导参与包括类固醇激素受体超家族、磷脂酰胆碱循环以及氧自由基的调节影响。还对各个ω-3脂肪酸的单独生物学作用、它们对差异基因功能的影响以及它们药理作用的分子机制进行了评论。结论是,过氧化物酶体密切参与指导ω-3不饱和脂肪酸的代谢和生理影响,并且在未来旨在阐明这些独特且多能化合物深远生物学效应的研究中,该细胞器值得更多关注。