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Isolation and sequence of a cDNA encoding the Jerusalem artichoke cinnamate 4-hydroxylase, a major plant cytochrome P450 involved in the general phenylpropanoid pathway.

机译:编码菊芋肉桂酸4-羟化酶的cDNA的分离和序列,该酶是参与一般苯丙烷途径的主要植物细胞色素P450。

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摘要

Cinnamate 4-hydroxylase [CA4H; trans-cinnamate,NADPH:oxygen oxidoreductase (4-hydroxylating), EC 1.14.13.11] is a cytochrome P450 that catalyzes the first oxygenation step of the general phenylpropanoid metabolism in higher plants. The compounds formed are essential for lignification and defense against predators and pathogens. We recently reported the purification of this enzyme from Mn(2+)-induced Jerusalem artichoke (Helianthus tuberosus L.) tuber tissues. Highly selective polyclonal antibodies raised against the purified protein were used to screen a lambda gt11 cDNA expression library from wound-induced Jerusalem artichoke, allowing isolation of a 1130-base-pair insert. Typical P450 domains were identified in this incomplete sequence, which was used as a probe for the isolation of a 1.7-kilobase clone in a lambda gt10 library. A full-length open reading frame of 1515 base pairs, encoding a P450 protein of 505 residues (M(r) = 57,927), was sequenced. The N terminus, essentially composed of hydrophobic residues, matches perfectly the microsequenced N terminus of the purified protein. The calculated pI is 9.78, in agreement with the chromatographic behavior and two-dimensional electrophoretic analysis of CA4H. Synthesis of the corresponding mRNA is induced in wounded plant tissues, in correlation with CA4H enzymatic activity. This P450 protein exhibits the most similarity (28% amino acid identity) with avocado CYP71, but also good similarity with CYP17 and CYP21, or with CYP1 and CYP2 families. According to current criteria, it qualifies as a member of a new P450 family.
机译:肉桂酸4-羟化酶[CA4H;反式肉桂酸酯,NADPH:氧氧化还原酶(4-羟基化),EC 1.14.13.11]是一种细胞色素P450,可催化高等植物中一般苯丙烷代谢的第一步氧合步骤。形成的化合物对于木质化和抵抗天敌和病原体至关重要。我们最近报道了该酶从Mn(2+)诱导的菊芋(Helianthus tuberosus L.)块茎组织中的纯化。使用针对纯化蛋白的高选择性多克隆抗体,从伤口诱导的菊芋中筛选出gt11 cDNA表达文库,从而分离出1130个碱基对的插入片段。在此不完整序列中鉴定出典型的P450结构域,将其用作在gt10λ文库中分离1.7碱基碱基克隆的探针。对1515个碱基对的全长开放阅读框进行了编码,编码505个残基的P450蛋白(M(r)= 57,927)。 N末端基本上由疏水残基组成,与纯化蛋白的微测序N末端完全匹配。计算得出的pI为9.78,与CA4H的色谱行为和二维电泳分析一致。在受伤的植物组织中,与CA4H酶促活性相关,诱导了相应mRNA的合成。该P450蛋白与鳄梨CYP71表现出最大的相似性(28%氨基酸同一性),但与CYP17和CYP21或CYP1和CYP2家族也具有相似性。根据当前标准,它有资格成为新的P450系列的成员。

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