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首页> 外文期刊>Plant Physiology and Biochemistry >Arabidopsis LONG-CHAIN ACYL-COA SYNTHETASE 1 (LACS1), LACS2, and LACS3 facilitate fatty acid uptake in yeast
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Arabidopsis LONG-CHAIN ACYL-COA SYNTHETASE 1 (LACS1), LACS2, and LACS3 facilitate fatty acid uptake in yeast

机译:拟南芥长链酰基可可合成酶1(LACS1),LACS2和LACS3促进酵母中的脂肪酸摄取

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摘要

The plant cuticle is a lipid-based barrier on the aerial surfaces of plants that plays a variety of protective roles. The cuticle is comprised largely of long-chain and very-long-chain fatty acids and their derivatives. In Arabidopsis, LONG-CHAIN ACYL-COA SYNTHETASE1 (LACS1), LACS2, and LACS3 are known or suspected cuticle biosynthetic genes. Very-long-chain acyl-coenzyme A (CoA) synthetase activity has been demonstrated for LACS1 and LACS2, although the role for such an activity in cuticle biosynthesis is currently unclear. In yeast and mammalian systems, some very-long-chain acyl-CoA synthetases are also called fatty acid transport proteins (FATPs) due to a second function of mediating transmembrane movement of fatty acids. We sought to determine if LACS1-3 also have this dual functionality. A yeast fat1Δ mutant is deficient in both very-long-chain acyl-CoA synthetase activity and exogenous fatty acid uptake. We demonstrate that heterologous expression of LACS1, 2, or 3 is able to complement both of these deficiencies. Furthermore, expression of each LACS enzyme in yeast resulted in uptake of the long-chain fatty acid analogue, C _1-BODIPY-C _(12). Only expression of LACS1 resulted in uptake of the very-long-chain fatty acid analogue, BODIPY-C _(16). These results demonstrate that LACS1, LACS2, and LACS3 have the dual functionality of yeast and mammalian FATP enzymes. These findings have implications in the transmembrane transport and intracellular trafficking of plant lipids destined for export to the cuticle.
机译:植物表皮是植物空中表面上基于脂质的屏障,起着多种保护作用。角质层主要由长链和超长链脂肪酸及其衍生物组成。在拟南芥中,长链酰基-COA合成酶1(LACS1),LACS2和LACS3是已知或怀疑的表皮生物合成基因。 LACS1和LACS2的超长链酰基辅酶A(CoA)合成酶活性已得到证实,尽管目前尚不清楚这种活性在角质层生物合成中的作用。在酵母和哺乳动物系统中,由于介导脂肪酸跨膜运动的第二种功能,一些超长链酰基辅酶A合成酶也称为脂肪酸转运蛋白(FATP)。我们试图确定LACS1-3是否也具有此双重功能。酵母fat1Δ突变体在超长链酰基辅酶A合成酶活性和外源脂肪酸摄取方面均不足。我们证明LACS1,2或3的异源表达能够弥补这两个缺陷。此外,每种LACS酶在酵母中的表达导致长链脂肪酸类似物C _1-BODIPY-C _(12)的摄取。仅LACS1的表达导致摄取超长链脂肪酸类似物BODIPY-C_(16)。这些结果表明,LACS1,LACS2和LACS3具有酵母和哺乳动物FATP酶的双重功能。这些发现对旨在输出至表皮的植物脂质的跨膜运输和细胞内运输具有影响。

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