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矮牵牛黄酮3β-羟化酶活性位点中严格保守的组氨酸和精氨酸残基的鉴定。

Identification of strictly conserved histidine and arginine residues as part of the active site in Petunia hybrida flavanone 3beta-hydroxylase.

作者信息

Lukacin R, Britsch L

机构信息

Institut für Pharmazeutische Biologie, Universität Marburg, Germany.

出版信息

Eur J Biochem. 1997 Nov 1;249(3):748-57. doi: 10.1111/j.1432-1033.1997.t01-2-00748.x.

Abstract

Flavanone 3beta-hydroxylase, involved in the biosynthesis of flavonoids, catechins, and anthocyanidins, is a non-heme iron enzyme, dependent on Fe2+, molecular oxygen, 2-oxoglutarate, and ascorbate, the typical cofactors of the class of 2-oxoglutarate-dependent dioxygenases. Sequence alignment analysis of various 2-oxoglutarate-dependent dioxygenases and related enzymes revealed eight amino acid residues that seem to be strictly conserved within this group of enzymes. Among these residues, two histidines (His220 and His278) and one aspartic acid (Asp222) were identified as part of the putative iron-binding site and an arginine residue (Arg288) as part of the 2-oxoglutarate binding site, by site-directed mutagenesis and functional analysis of the mutated recombinant enzyme. The mutant genes were expressed in Escherichia coli to give soluble proteins whose molecular masses were in excellent agreement with the wild-type enzyme. Four out of nine mutant enzymes, [Gln78]FHT, [Gln121]FHT, [Gln264]FHT and [Gln266]FHT, were enzymatically active with activities reduced to 26-57%, implying that the mutated amino acid residues are not essential for catalysis. Replacement of His220 by glutamine and Asp222 by asparagine remarkably reduced the catalytic activity to about 0.15% and 0.4%, respectively. The [Gln220]FHT and [Asn222]FHT enzymes showed a slightly increased Km value with respect to iron binding, as compared to the wild-type enzyme. The most drastic effect on the reaction rate of flavanone 3beta-hydroxylase was achieved by mutating His278 to glutamine. The mutant had no detectable enzyme activity, indicating that His278 was essential for the catalytic reaction. The observed protection of purified enzyme from inactivation by diethylpyrocarbonate after the addition of cofactors provided further independent confirmation for the involvement of histidine residues in the active site. The substitution of Arg288 by lysine or glutamine induced a precipitous decrease in catalytic activity and a fivefold and 160-fold increase in the Michaelis constants for 2-oxoglutarate, respectively. In addition, the enzymatic activities of the latter two mutant enzymes showed a strong pH dependence in the weakly acidic as well as in the neutral pH range, unlike the wild-type enzyme. These results clearly indicate that Arg288 probably contributes to the specific binding of 2-oxoglutarate at the active site of the enzyme, most likely by providing a positive charge, properly located in order to interact with the delta-carboxyl function of 2-oxoglutarate. Furthermore, we conclude that His220, His278 and Asp222 constitute three of the possible ligands for iron binding in the active site of flavanone 3beta-hydroxylase.

摘要

黄酮3β - 羟化酶参与类黄酮、儿茶素和花青素的生物合成,是一种非血红素铁酶,依赖于Fe2 +、分子氧、2 - 酮戊二酸和抗坏血酸,这些是2 - 酮戊二酸依赖性双加氧酶类的典型辅因子。对各种2 - 酮戊二酸依赖性双加氧酶和相关酶的序列比对分析揭示了八个氨基酸残基,这些残基在这组酶中似乎是严格保守的。在这些残基中,通过定点诱变和突变重组酶的功能分析,确定两个组氨酸(His220和His278)和一个天冬氨酸(Asp222)是假定的铁结合位点的一部分,一个精氨酸残基(Arg288)是2 - 酮戊二酸结合位点的一部分。突变基因在大肠杆菌中表达,产生的可溶性蛋白质的分子量与野生型酶高度一致。九个突变酶中的四个,[Gln78]FHT、[Gln121]FHT、[Gln264]FHT和[Gln266]FHT,具有酶活性,活性降低到26 - 57%,这意味着突变的氨基酸残基对于催化不是必需的。用谷氨酰胺取代His220和用天冬酰胺取代Asp222分别显著降低催化活性至约0.15%和0.4%。与野生型酶相比,[Gln220]FHT和[Asn222]FHT酶在铁结合方面显示出Km值略有增加。对黄酮3β - 羟化酶反应速率影响最剧烈的是将His278突变为谷氨酰胺。该突变体没有可检测到的酶活性,表明His278对于催化反应是必需的。在添加辅因子后观察到纯化的酶免受焦碳酸二乙酯失活的保护,这为活性位点中组氨酸残基的参与提供了进一步的独立证实。用赖氨酸或谷氨酰胺取代Arg288导致催化活性急剧下降,2 - 酮戊二酸的米氏常数分别增加5倍和160倍。此外,与野生型酶不同,后两种突变酶的酶活性在弱酸性以及中性pH范围内显示出强烈的pH依赖性。这些结果清楚地表明,Arg288可能通过提供一个正电荷,有助于2 - 酮戊二酸在酶活性位点的特异性结合,该正电荷的位置适当以便与2 - 酮戊二酸的δ - 羧基功能相互作用。此外,我们得出结论,His220、His278和Asp222构成黄酮3β - 羟化酶活性位点中铁结合的三个可能配体。

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