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Synergistic interactions between carotene ring hydroxylases drive lutein formation in plant carotenoid biosynthesis

机译:胡萝卜素环羟化酶之间的协同相互作用驱动植物类胡萝卜素生物合成中的叶黄素形成

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Plant carotenoids play essential roles in photosynthesis, photoprotection, and as precursors to apocarotenoids. The plastidlocalized carotenoid biosynthetic pathway is mediated by well-defined nucleus-encoded enzymes. However, there is a major gap in understanding the nature of protein interactions and pathway complexes needed to mediate carotenogenesis. In this study, we focused on carotene ring hydroxylation, which is performed by two structurally distinct classes of enzymes, the P450 CYP97A and CYP97C hydroxylases and the nonheme diiron HYD enzymes. The CYP97A and HYD enzymes both function in the hydroxylation of β-rings in carotenes, but we show that they are not functionally interchangeable. The formation of lutein, which involves hydroxylation of both β-and ε -rings, was shown to require the coexpression of CYP97A and CYP97C enzymes. These enzymes were also demonstrated to interact in vivo and in vitro, as determined using bimolecular fluorescence complementation and a pull-down assay, respectively. We discuss the role of specific hydroxylase enzyme interactions in promoting pathway flux and preventing the formation of pathway dead ends. These findings will facilitate efforts to manipulate carotenoid content and composition for improving plant adaptation to climate change and/or for enhancing nutritionally important carotenoids in food crops.
机译:植物类胡萝卜素在光合作用,光保护和作为类胡萝卜素的前体中起着至关重要的作用。质体定位的类胡萝卜素生物合成途径是由明确定义的核编码酶介导的。但是,在理解介导类胡萝卜素生成所需的蛋白质相互作用和途径复合物的性质方面存在很大差距。在这项研究中,我们集中于胡萝卜素环羟基化,这是通过两种结构上不同的酶类别进行的,即P450 CYP97A和CYP97C羟化酶以及非血红素二铁HYD酶。 CYP97A和HYD酶均在胡萝卜素中β环的羟基化中起作用,但我们证明它们在功能上不可互换。叶黄素的形成涉及β-环和ε-环的羟基化,显示其需要CYP97A和CYP97C酶的共表达。如分别使用双分子荧光互补法和下拉法测定的,还证明这些酶在体内和体外相互作用。我们讨论了特定的羟化酶相互作用在促进通路通量和防止通路死角形成中的作用。这些发现将有助于努力控制类胡萝卜素的含量和组成,以改善植物对气候变化的适应性和/或增强粮食作物中营养重要的类胡萝卜素。

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