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Preliminary Study towards Enhanced Crude Oil Biodegradation Reveals Congeneric Total Peroxidases with Striking Distinctions

机译:增强原油生物降解的初步研究揭示了具有明显区别的同类总过氧化物酶

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Peroxidases (POXs) are the key extracellular enzymes produced by crude oil degrading microbes. Knowledge of optimum conditions for POXs activity is crucial for providing effective environment for bioremediation. In this study, physicochemical properties of POXs produced by Actinomyces israelii and Actinomyces viscosus during growth on crude oil were studied. The POXs exhibited similarities in activity and stability with striking differences in response to two divalent metal ions. The POXs from both species had optimum pH of 7.0 and were very stable over a narrow pH range (6.0 - 8.0). The POXs demonstrated similar thermostability exhibiting relative residual activity of 62% at 50°C after 30 min incubation and 45% residual activity at the same temperature after 60 min despite the fact that POXs from A. viscosus and A. israelii had optimum temperatures of 50°C and 40°C, respectively. The POXs from A. viscosus and A. israelii were greatly activated by Fe2+ at 5.0 and 10.0 mM. The enzymes were both strongly inhibited by Cu2+, Mg2+ and Hg2+. Surprisingly, these congeneric POXs demonstrated striking differences in their response to Ca2+ and Mn2+. POX from A. viscosus was activated by Ca2+ and Mn2+ exhibiting relative activity of 136% and 106% at 5 mM, respectively. In contrast, POX from A. israelii was strongly inhibited by Ca2+ and Mn2+ exhibiting 62.5% relative activity in the presence of 5 mM of each metal ion. Increasing the concentration of Ca2+ and Mn2+ led to further activation of POX from A. viscosus and inhibition of POX from A. israelii. Results provide deeper insights into functional properties of studied POXs from closely related microbes. The physicochemical properties are very similar; however, notable differences provide a strong basis for structural characterization of these congeneric enzymes.
机译:过氧化物酶(POXs)是原油降解微生物产生的关键细胞外酶。了解POX活性的最佳条件对于提供有效的生物修复环境至关重要。在这项研究中,研究了以色列放线菌和粘性放线菌在原油上生长过程中产生的POX的理化特性。 POX表现出相似的活性和稳定性,但对两种二价金属离子的反应却存在显着差异。两种物种的POX的最佳pH均为7.0,并且在狭窄的pH范围(6.0-8.0)内非常稳定。 POX表现出相似的热稳定性,在孵育30分钟后在50°C时表现出62%的相对残留活性,而在60分钟后在相同温度下表现出45%的相对活性,尽管来自粘链霉菌和以色列A.分别为50°C和40°C。 Fe 2+在5.0和10.0 mM时能极大地激活粘液曲霉和以色列曲霉的POX。这些酶均受到Cu2 +,Mg2 +和Hg2 +的强烈抑制。出乎意料的是,这些同类POX表现出对Ca2 +和Mn2 +的显着差异。 Ca. +和Mn2 +激活了粘链曲霉的POX,在5 mM时的相对活性分别为136%和106%。相比之下,在5 mM的每种金属离子存在下,来自Ca. +和Mn2 +的相对活性均受到62.5%的Ca2 +和Mn2 +的强烈抑制。 Ca2 +和Mn2 +浓度的增加导致粘胶曲霉POX的进一步活化和以色列曲霉的POX抑制。结果为来自密切相关的微生物的研究POX的功能特性提供了更深刻的见解。理化性质非常相似。然而,显着的差异为这些同类酶的结构表征提供了坚实的基础。

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