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Functional Identification of Rubber Oxygenase (RoxA) in Soil and Marine Myxobacteria

机译:橡胶加氧酶(RoxA)在土壤和海洋粘菌中的功能鉴定

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The rubber oxygenase (RoxA) of Xanthomonas sp. strain 35Y (RoxAXsp) is so far the only known extracellular c-type diheme cytochrome that is able to cleave poly(cis-1,4-isoprene). All other rubber-degrading bacteria described are Gram positive and employ a nonheme protein (latex-clearing protein [Lcp]) for the postulated primary attack of polyisoprene. Here, we identified RoxA orthologs in the genomes of Haliangium ochraceum, Myxococcus fulvus, Corallococcus coralloides, and Chondromyces apiculatus. The roxA orthologs of H. ochraceum (RoxAHoc), C. coralloides BO35 (RoxACco), and M. fulvus (RoxAMfu) were functionally expressed in a ΔroxA Xanthomonas sp. 35Y background. All RoxA orthologs oxidatively cleaved polyisoprene, as revealed by restoration of clearing-zone formation and detection of 12-oxo-4,8-dimethyltrideca-4,8-diene-1-al (ODTD) as a cleavage product. RoxAXsp, RoxAMfu, and RoxACco were purified and biochemically characterized. The optimal temperature of RoxACco and RoxAMfu was between 22 and 30°C. All RoxA orthologs as isolated showed an oxidized UV-visible spectrum. Chemical reduction of RoxACco and RoxAMfu indicated the presence of two slightly different heme centers with absorption maxima between 549 and 553 nm, similar to RoxAXsp. Sequence analysis and modeling of the three-dimensional structures of the RoxA orthologs revealed a high degree of similarity to the recently solved RoxAXsp structure and included several conserved residues, notably, W302, F317, and a MauG motif at about H517. Lcp-like sequences were not detected in the genomes of the Xanthomonas sp. 35Y, H. ochraceum, M. fulvus, and C. coralloides. No RoxA orthologs were found in Gram-positive bacteria, and this first description of functional RoxA in Gram-negative bacteria other than Xanthomonas proves that RoxA is more common among rubber degraders than was previously assumed.
机译:Xanthomonas sp。的橡胶加氧酶(RoxA)。迄今为止,菌株35Y(RoxAXsp)是唯一已知的能够裂解聚顺(1,4-异戊二烯)的细胞外c型二血红素细胞色素。所述的所有其他降解橡胶的细菌均为革兰氏阳性,并假定非血红素蛋白(胶乳清除蛋白[Lcp])用于假定的聚异戊二烯初发攻击。在这里,我们在Ha草,黄霉菌,Corocococcuscoraloides和软骨软骨细胞的基因组中鉴定了RoxA直系同源物。在ΔroxAXanthomonas sp。中功能性地表达och草(RoxAHoc),C.coraloides BO35(RoxACco)和黄花苜蓿(RoxAMfu)的roxA直系同源物。 35Y背景。所有RoxA直系同源物均氧化裂解聚异戊二烯,如通过清除区域的恢复和检测裂解产物12-氧代-4,8-​​二甲基三苯甲-4,8-​​二烯-1-α(ODTD)所揭示的那样。 RoxAXsp,RoxAMfu和RoxACco进行了纯化和生化表征。 RoxACco和RoxAMfu的最佳温度为22至30°C。分离出的所有RoxA直系同源物均显示了氧化的紫外可见光谱。 RoxACco和RoxAMfu的化学还原表明存在两个略有不同的血红素中心,其最大吸收在549和553 nm之间,与RoxAXsp类似。 RoxA直系同源物的三维结构的序列分析和建模显示与最近解决的RoxAXsp结构高度相似,并且包括几个保守残基,尤其是W302,F317和大约​​H517的MauG基序。 Xanthomonas sp。的基因组中未检测到类似Lcp的序列。 35Y,H草H.,fulfulus和C.coraloides。在革兰氏阳性细菌中未发现RoxA直系同源物,而对除Xanthomonas以外的革兰氏阴性细菌中功能性RoxA的第一个描述证明,RoxA在橡胶降解剂中比以前假定的更为普遍。

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