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Isolation and Characterization of Homogentisate Phytyltransferase Genes from Synechocystis sp. PCC 6803 and Arabidopsis

机译:拟南芥属植物高纯酸植酸转移酶基因的分离与鉴定。 PCC 6803和拟南芥

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摘要

Tocopherols, synthesized by photosynthetic organisms, are micronutrients with antioxidant properties that play important roles in animal and human nutrition. Because of these health benefits, there is considerable interest in identifying the genes involved in tocopherol biosynthesis to allow transgenic alteration of both tocopherol levels and composition in agricultural crops. Tocopherols are generated from the condensation of phytyldiphosphate and homogentisic acid (HGA), followed by cyclization and methylation reactions. Homogentisate phytyltransferase (HPT) performs the first committed step in this pathway, the phytylation of HGA. In this study, bioinformatics techniques were used to identify candidate genes, slr1736 and HPT1, that encode HPT from Synechocystis sp. PCC 6803 and Arabidopsis, respectively. These two genes encode putative membrane-bound proteins, and contain amino acid residues highly conserved with other prenyltransferases of the aromatic type. A Synechocystis sp. PCC 6803 slr1736 null mutant obtained by insertional inactivation did not accumulate tocopherols, and was rescued by the Arabidopsis HPT1 ortholog. The membrane fraction of wild-type Synechocystis sp. PCC 6803 was capable of catalyzing the phytylation of HGA, whereas the membrane fraction from the slr1736 null mutant was not. The microsomal membrane fraction of baculovirus-infected insect cells expressing the Synechocystis sp. PCC 6803 slr1736 were also able to perform the phytylation reaction, verifying HPT activity of the protein encoded by this gene. In addition, evidence that antisense expression of HPT1 in Arabidopsis resulted in reduced seed tocopherol levels, whereas seed-specific sense expression resulted in increased seed tocopherol levels, is presented.
机译:由光合作用生物合成的生育酚是具有抗氧化特性的微量营养素,在动物和人类营养中起重要作用。由于这些健康益处,在鉴定参与生育酚生物合成的基因以允许农作物中生育酚水平和组成的转基因改变方面引起了极大的兴趣。生育酚是由植酸二磷酸酯与高纯酸(HGA)缩合,然后进行环化和甲基化反应生成的。同质酸植酸转移酶(HPT)执行了该途径的第一个重要步骤,即HGA的植酸化。在这项研究中,使用生物信息学技术来鉴定候选基因slr1736和HPT1,它们编码Synechocystis sp。的HPT。 PCC 6803和拟南芥。这两个基因编码假定的膜结合蛋白,并含有与芳香族其他异戊二烯基转移酶高度保守的氨基酸残基。一个集胞藻通过插入失活获得的PCC 6803 slr1736空突变体没有积累生育酚,并被拟南芥HPT1直系同源物拯救。野生型集胞藻的膜部分。 PCC 6803能够催化HGA的植基化,而来自slr1736无效突变体的膜级分则不能。杆状病毒感染的昆虫细胞的微粒体膜级分表达集胞藻。 PCC 6803 slr1736也能够进行植酸反应,从而验证了该基因编码的蛋白质的HPT活性。此外,还提供了证据,证明拟南芥中HPT1的反义表达导致种子生育酚水平降低,而种子特异性有义表达导致种子生育酚水平升高。

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