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首页> 外文期刊>The Plant Cell >Structural Studies of Cinnamoyl-CoA Reductase and Cinnamyl-Alcohol Dehydrogenase, Key Enzymes of Monolignol Biosynthesis
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Structural Studies of Cinnamoyl-CoA Reductase and Cinnamyl-Alcohol Dehydrogenase, Key Enzymes of Monolignol Biosynthesis

机译:肉桂酰辅酶A还原酶和肉桂醇脱氢酶的结构研究,单宁醇生物合成的关键酶

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摘要

The enzymes cinnamoyl-CoA reductase (CCR) and cinnamyl alcohol dehydrogenase (CAD) catalyze the two key reduction reactions in the conversion of cinnamic acid derivatives into monolignol building blocks for lignin polymers in plant cell walls. Here, we describe detailed functional and structural analyses of CCRs from Medicago truncatula and Petunia hybrida and of an atypical CAD (CAD2) from M. truncatula. These enzymes are closely related members of the short-chain dehydrogenase/ reductase (SDR) superfamily. Our structural studies support a reaction mechanism involving a canonical SDR catalytic triad in both CCR and CAD2 and an important role for an auxiliary cysteine unique to CCR. Site-directed mutants of CAD2 (Phe226Ala and Tyr136Phe) that enlarge the phenolic binding site result in a 4- to 10-fold increase in activity with sinapaldehyde, which in comparison to the smaller coumaraldehyde and coniferaldehyde substrates is disfavored by wild-type CAD2. This finding demonstrates the potential exploitation of rationally engineered forms of CCR and CAD2 for the targeted modification of monolignol composition in transgenic plants. Thermal denaturation measurements and structural comparisons of various liganded and unliganded forms of CCR and CAD2 highlight substantial conformational flexibility of these SDR enzymes, which plays an important role in the establishment of catalytically productive complexes of the enzymes with their NADPH and phenolic substrates.
机译:肉桂酸辅酶A还原酶(CCR)和肉桂醇脱氢酶(CAD)催化了肉桂酸衍生物向植物细胞壁中木质素聚合物转化为单木质素结构单元的两个关键还原反应。在这里,我们描述了详细的功能和结构分析,从梅花苜蓿和矮牵牛杂种和非典型的CAD(CAD2)的truncatula。这些酶是短链脱氢酶/还原酶(SDR)超家族的密切相关成员。我们的结构研究支持在CCR和CAD2中涉及规范SDR催化三联体的反应机理,并且对于CCR特有的辅助半胱氨酸起重要作用。扩大酚结合位点的CAD2的定点突变体(Phe226Ala和Tyr136Phe)导致与五聚甲醛的活性增加4至10倍,与较小的香豆醛和松柏醛底物相比,野生型CAD2对其不利。该发现证明了CCR和CAD2的合理设计形式的潜在开发,用于在转基因植物中针对单木酚组成的靶向修饰。 CCR和CAD2各种配体和非配体形式的热变性测量和结构比较突出表明了这些SDR酶的构象灵活性,这在酶与NADPH和酚类底物的催化生产性复合物的建立中起着重要作用。

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