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Phe317 Is Essential for Rubber Oxygenase RoxA Activity

机译:Phe317对橡胶加氧酶RoxA活性至关重要

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RoxA is an extracellular c -type diheme cytochrome secreted by Xanthomonas sp. strain 35Y during growth on rubber. RoxA cleaves poly( cis -1,4-isoprene) to 12-oxo-4,8-dimethyltrideca-4,8-diene-1-al (ODTD). Analysis of the RoxA structure revealed that Phe317 is located in close proximity (≈5 ?) to the N-terminal heme that presumably represents the active site. To find evidence of whether Phe317 is important for catalysis, we changed it to tyrosine, tryptophan, leucine, histidine, or alanine. All five RoxA muteins were expressed after integration of the respective gene into the chromosome of a Xanthomonas sp. ΔroxA strain. Residual clearing zone formation on opaque latex agar was found for Xanthomonas sp. strains expressing the Phe317Leu, Phe317Ala, or Phe317His variant (wild type > Leu > Ala > His). Strains in which Phe317 was changed to tyrosine or tryptophan were inactive. Phe317Ala and Phe312Leu RoxA muteins were purified, and polyisoprene cleavage activities were reduced to ≈3% and 10%, respectively. UV-visible spectroscopy of RoxA muteins confirmed that both heme groups were present in an oxidized form, but spectral responses to the addition of low-molecular-weight (inhibitory) ligand molecules such as imidazole and pyridine were different from those of wild-type RoxA. Our results show that residue 317 is involved in interaction with substrates. This is the first report on structure-function analysis of a polyisoprene-cleaving enzyme and on the identification of an amino acid that is essential for polyisoprene cleavage activity.
机译:RoxA是黄单胞菌(Xanthomonas sp。)分泌的细胞外c型双血红素细胞色素。在橡胶上生长期间的应变为35Y。 RoxA裂解聚顺式-1,4-异戊二烯成12-氧代-4,8-​​二甲基三苯胺-4,8-​​二烯-1-α1(ODTD)。对RoxA结构的分析表明,Phe317位于可能代表活性位点的N端血红素附近(≈5Ω)。为了找到Phe317是否对催化重要的证据,我们将其更改为酪氨酸,色氨酸,亮氨酸,组氨酸或丙氨酸。所有五个RoxA突变蛋白在各自的基因整合到Xanthomonas sp的染色体后表达。 ΔroxA应变。 Xanthomonas sp。发现不透明乳胶琼脂上有残留的清除区。表达Phe317Leu,Phe317Ala或Phe317His变体的菌株(野生型> Leu> Ala> His)。 Phe317变为酪氨酸或色氨酸的菌株没有活性。纯化了Phe317Ala和Phe312Leu RoxA突变蛋白,并将聚异戊二烯的裂解活性分别降低至≈3%和10%。 RoxA突变蛋白的紫外可见光谱证实,两个血红素基团均以氧化形式存在,但添加低分子量(抑制性)配体分子(如咪唑和吡啶)的光谱响应与野生型RoxA的光谱响应不同。我们的结果表明,残基317参与了与底物的相互作用。这是有关聚异戊二烯裂解酶的结构功能分析和鉴定对聚异戊二烯裂解活性必不可少的氨基酸的第一份报告。

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