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极长链脂肪酸的生物合成是通过缩合酶的表达和特异性来控制的。

Very-long-chain fatty acid biosynthesis is controlled through the expression and specificity of the condensing enzyme.

作者信息

Millar A A, Kunst L

机构信息

Department of Botany, University of British Columbia, Vancouver, Canada.

出版信息

Plant J. 1997 Jul;12(1):121-31. doi: 10.1046/j.1365-313x.1997.12010121.x.

Abstract

The Arabidopsis FATTY ACID ELONGATION1 (FAE1) gene encodes a putative seed-specific condensing enzyme. It is the first of four enzyme activities that comprise the microsomal fatty acid elongase (FAE) involved in the biosynthesis of very-long-chain fatty acids (VLCFAs). FAE1 has been expressed in yeast and in tissues of Arabidopsis and tobacco, where significant quantities of VLCFAs are not found. The introduction of FAE1 alone in these systems is sufficient for the production of VLCFAs, for wherever FAE1 was expressed, VLCFAs accumulated. These results indicate that FAE1 is the rate-limiting enzyme for VLCFA biosynthesis in Arabidopsis seed, because introduction of extra copies of FAE1 resulted in higher levels of the VLCFAs. Furthermore, the condensing enzyme is the activity of the elongase that determines the acyl chain length of the VLCFAs produced. In contrast, it appears that the other three enzyme activities of the elongase are found ubiquitously throughout the plant, are not rate-limiting and play no role in the control of VLCFA synthesis. The ability of yeast containing FAE1 to synthesize VLCFAs suggests that the expression and the acyl chain length specificity of the condensing enzyme, along with the apparent broad specificities of the other three FAE activities, may be a universal eukaryotic mechanism for regulating the amounts and acyl chain length of VLCFAs synthesized.

摘要

拟南芥脂肪酸延长酶1(FAE1)基因编码一种假定的种子特异性缩合酶。它是参与超长链脂肪酸(VLCFA)生物合成的微粒体脂肪酸延长酶(FAE)所包含的四种酶活性中的第一种。FAE1已在酵母以及拟南芥和烟草的组织中表达,而在这些组织中未发现大量的VLCFA。在这些系统中单独引入FAE1就足以产生VLCFA,因为无论FAE1在何处表达,VLCFA都会积累。这些结果表明,FAE1是拟南芥种子中VLCFA生物合成的限速酶,因为引入额外的FAE1拷贝会导致VLCFA水平升高。此外,缩合酶是延长酶的一种活性,它决定了所产生的VLCFA的酰基链长度。相比之下,延长酶的其他三种酶活性似乎在整个植物中普遍存在,不是限速酶,并且在VLCFA合成的控制中不起作用。含有FAE1的酵母合成VLCFA的能力表明,缩合酶的表达和酰基链长度特异性,以及其他三种FAE活性明显的广泛特异性,可能是调节合成的VLCFA的量和酰基链长度的一种普遍的真核机制。

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