首页> 外文OA文献 >The Biosynthetic Pathway for Synechoxanthin, an Aromatic Carotenoid Synthesized by the Euryhaline, Unicellular Cyanobacterium Synechococcus sp. Strain PCC 7002▿ †
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The Biosynthetic Pathway for Synechoxanthin, an Aromatic Carotenoid Synthesized by the Euryhaline, Unicellular Cyanobacterium Synechococcus sp. Strain PCC 7002▿ †

机译:Synechoxanthin的生物合成途径,由Euryhaline单细胞蓝藻Synechococcus sp。合成的一种芳香类胡萝卜素。应变PCC7002▿†

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摘要

The euryhaline, unicellular cyanobacterium Synechococcus sp. strain PCC 7002 produces the dicyclic aromatic carotenoid synechoxanthin (χ,χ-caroten-18,18′-dioic acid) as a major pigment (>15% of total carotenoid) and when grown to stationary phase also accumulates small amounts of renierapurpurin (χ,χ-carotene) (J. E. Graham, J. T. J. Lecomte, and D. A. Bryant, J. Nat. Prod. 71:1647-1650, 2008). Two genes that were predicted to encode enzymes involved in the biosynthesis of synechoxanthin were identified by comparative genomics, and these genes were insertionally inactivated in Synechococcus sp. strain PCC 7002 to verify their function. The cruE gene (SYNPCC7002_A1248) encodes β-carotene desaturase/methyltransferase, which converts β-carotene to renierapurpurin. The cruH gene (SYNPCC7002_A2246) encodes an enzyme that is minimally responsible for the hydroxylation/oxidation of the C-18 and C-18′ methyl groups of renierapurpurin. Based on observed and biochemically characterized intermediates, a complete pathway for synechoxanthin biosynthesis is proposed.
机译:euryhaline,单细胞蓝藻Synechococcus sp。 PCC 7002菌株产生作为主要色素(>总类胡萝卜素的15%)的二环芳族类胡萝卜素Synechoxanthin(χ,χ-caroten-18,18'-dioicacid),并且在生长到固定相时也会积聚少量的肾上腺嘌呤(χ ,β-胡萝卜素)(JE Graham,JTJ Lecomte和DA Bryant,J.Nat.Prod.71:1647-1650,2008)。通过比较基因组学鉴定了两个基因,这些基因被预测为编码参与突触黄质生物合成的酶,并且这些基因在突触球菌中被插入失活。使PCC 7002应变以验证其功能。 cruE基因(SYNPCC7002_A1248)编码β-胡萝卜素去饱和酶/甲基转移酶,可将β-胡萝卜素转化为肾上腺嘌呤。 cruH基因(SYNPCC7002_A2246)编码的酶对肾上腺嘌呤的C-18和C-18'甲基的羟基化/氧化作用最小。基于观察到的和生化特征的中间体,提出了合成鱼黄素的完整途径。

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