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胺氧化酶表达在罗氏沼虾保持腐胺稳态中的作用。

Role of amine oxidase expression to maintain putrescine homeostasis in Rhodococcus opacus.

机构信息

Chemical Engineering, School of Engineering & Physical Science, Heriot-Watt University, Edinburgh, EH 14 4AS, UK.

出版信息

Enzyme Microb Technol. 2013 Apr 10;52(4-5):286-95. doi: 10.1016/j.enzmictec.2013.01.003. Epub 2013 Jan 17.

DOI:10.1016/j.enzmictec.2013.01.003
PMID:23540932
Abstract

While applications of amine oxidases are increasing, few have been characterised and our understanding of their biological role and strategies for bacteria exploitation are limited. By altering the nitrogen source (NH4Cl, putrescine and cadaverine (diamines) and butylamine (monoamine)) and concentration, we have identified a constitutive flavin dependent oxidase (EC 1.4.3.10) within Rhodococcus opacus. The activity of this oxidase can be increased by over two orders of magnitude in the presence of aliphatic diamines. In addition, the expression of a copper dependent diamine oxidase (EC 1.4.3.22) was observed at diamine concentrations>1mM or when cells were grown with butylamine, which acts to inhibit the flavin oxidase. A Michaelis-Menten kinetic treatment of the flavin oxidase delivered a Michaelis constant (KM)=190μM and maximum rate (kcat)=21.8s(-1) for the oxidative deamination of putrescine with a lower KM (=60μM) and comparable kcat (=18.2s(-1)) for the copper oxidase. MALDI-TOF and genomic analyses have indicated a metabolic clustering of functionally related genes. From a consideration of amine oxidase specificity and sequence homology, we propose a putrescine degradation pathway within Rhodococcus that utilises oxidases in tandem with subsequent dehydrogenase and transaminase enzymes. The implications of PUT homeostasis through the action of the two oxidases are discussed with respect to stressors, evolution and application in microbe-assisted phytoremediation or bio-augmentation.

摘要

虽然胺氧化酶的应用正在增加,但已鉴定出的种类很少,我们对其生物学作用和细菌利用策略的理解也很有限。通过改变氮源(NH4Cl、腐胺和尸胺(二胺)和丁胺(单胺))和浓度,我们在红球菌属(Rhodococcus opacus)中鉴定出一种组成型黄素依赖性氧化酶(EC 1.4.3.10)。在脂肪族二胺存在下,这种氧化酶的活性可以增加两个数量级以上。此外,在二胺浓度>1mM 或当细胞用丁胺生长时,观察到铜依赖性二胺氧化酶(EC 1.4.3.22)的表达,丁胺可抑制黄素氧化酶。黄素氧化酶的 Michaelis-Menten 动力学处理表明,氧化脱氨腐胺的米氏常数(KM)=190μM,最大速率(kcat)=21.8s(-1),而铜氧化酶的 KM(=60μM)较低,kcat(=18.2s(-1))相当。MALDI-TOF 和基因组分析表明,功能相关基因在代谢上聚类。从胺氧化酶特异性和序列同源性的考虑出发,我们提出了一种在红球菌中利用氧化酶与随后的脱氢酶和转氨酶酶串联的腐胺降解途径。讨论了两种氧化酶通过 PUT 稳态的影响,涉及到应激、进化以及在微生物辅助植物修复或生物增强中的应用。

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