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鉴定可能参与胭脂树素生物合成的新型类胡萝卜素裂解双加氧酶1和4。

Identifying L. New Carotenoid Cleavage Dioxygenases 1 and 4 Potentially Involved in Bixin Biosynthesis.

作者信息

Us-Camas Rosa, Aguilar-Espinosa Margarita, Rodríguez-Campos Jacobo, Vallejo-Cardona Alba Adriana, Carballo-Uicab Víctor Manuel, Serrano-Posada Hugo, Rivera-Madrid Renata

机构信息

Unidad de Bioquímica y Biología Molecular de Plantas, Centro de Investigación Científica de Yucatán A.C., Mérida, Mexico.

Unidad de Servicios Analíticos y Metrológicos, Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco, Guadalajara, Mexico.

出版信息

Front Plant Sci. 2022 Feb 11;13:829089. doi: 10.3389/fpls.2022.829089. eCollection 2022.

Abstract

Carotene cleavage dioxygenases (CCDs) are a large family of Fe dependent enzymes responsible for the production of a wide variety of apocarotenoids, such as bixin. Among the natural apocarotenoids, bixin is second in economic importance. It has a red-orange color and is produced mainly in the seeds of . The biosynthesis of bixin aldehyde from the oxidative cleavage of lycopene at 5,6/5',6' bonds by a CCD is considered the first step of bixin biosynthesis. Eight ( and ) genes potentially involved in the first step of bixin biosynthesis have been identified. However, the cleavage activity upon lycopene to produce bixin aldehyde has only been demonstrated for BoCCD1-1 and BoCCD4-3. Using () and approaches, we determined that the other identified BoCCDs enzymes (BoCCD1-3, BoCCD1-4, BoCCD4-1, BoCCD4-2, and BoCCD4-4) also participate in the biosynthesis of bixin aldehyde from lycopene. The LC-ESI-QTOF-MS/MS analysis showed a peak corresponding to bixin aldehyde ( 349.1) in pACCRT-EIB cells that express the BoCCD1 and BoCCD4 proteins, which was confirmed by enzymatic assay. Interestingly, in the assay of BoCCD1-4, BoCCD4-1, BoCCD4-2, and BoCCD4-4, bixin aldehyde was oxidized to norbixin ( 380.2), the second product of the bixin biosynthesis pathway. analysis also showed that BoCCD1 and BoCCD4 proteins encode functional dioxygenases that can use lycopene as substrate. The production of bixin aldehyde and norbixin was corroborated based on their ion fragmentation pattern, as well as by Fourier transform infrared (FTIR) spectroscopy. This work made it possible to clarify at the same time the first and second steps of the bixin biosynthesis pathway that had not been evaluated for a long time.

摘要

胡萝卜素裂解双加氧酶(CCDs)是一类庞大的铁依赖性酶家族,负责产生多种类胡萝卜素衍生物,如胭脂树素。在天然类胡萝卜素衍生物中,胭脂树素在经济重要性方面位居第二。它呈红橙色,主要在……的种子中产生。由CCDs通过在5,6/5',6'键处对番茄红素进行氧化裂解生成胭脂树素醛,被认为是胭脂树素生物合成的第一步。已鉴定出八个可能参与胭脂树素生物合成第一步的(和)基因。然而,仅BoCCD1 - 1和BoCCD4 - 3被证明具有对番茄红素进行裂解以产生胭脂树素醛的活性。通过()和方法,我们确定其他已鉴定的BoCCDs酶(BoCCD1 - 3、BoCCD1 - 4、BoCCD4 - 1、BoCCD4 - 2和BoCCD4 - 4)也参与从番茄红素生物合成胭脂树素醛的过程。LC - ESI - QTOF - MS/MS分析显示,在表达BoCCD1和BoCCD4蛋白的pACCRT - EIB细胞中出现了一个对应于胭脂树素醛(349.1)的峰,这通过酶促测定得到了证实。有趣的是,在对BoCCD1 - 4、BoCCD4 - 1、BoCCD4 - 2和BoCCD4 - 4的测定中,胭脂树素醛被氧化为降胭脂树素(380.2),这是胭脂树素生物合成途径的第二个产物。分析还表明,BoCCD1和BoCCD4蛋白编码能够以番茄红素为底物的功能性双加氧酶。基于它们的离子碎片模式以及傅里叶变换红外(FTIR)光谱,证实了胭脂树素醛和降胭脂树素的产生。这项工作使得能够同时阐明长期以来未被评估的胭脂树素生物合成途径的第一步和第二步。

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