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地中海海栖菌抗微生物蛋白赖氨酸氧化酶受 L-赖氨酸和传感器组氨酸激酶 PpoS 的调控。

Regulation of the Marinomonas mediterranea antimicrobial protein lysine oxidase by L-lysine and the sensor histidine kinase PpoS.

机构信息

Department of Genetics and Microbiology, Faculty of Biology, University of Murcia, Murcia 30100, Spain.

出版信息

Appl Environ Microbiol. 2010 Sep;76(18):6141-9. doi: 10.1128/AEM.00690-10. Epub 2010 Jul 23.

Abstract

Some Gram-negative bacteria express a novel enzyme with lysine-epsilon-oxidase (LOD) activity (EC 1.4.3.20). The oxidation of l-Lys generates, among other products, hydrogen peroxide, which confers antimicrobial properties to this kind of enzyme and has been shown to be involved in cell death during biofilm development and differentiation. In addition to LOD, the melanogenic marine bacterium Marinomonas mediterranea, which forms part of the microbiota of the marine plant Posidonia oceanica, expresses two other oxidases of biotechnological interest, a multicopper oxidase, PpoA, with laccase activity and a tyrosinase named PpoB, which is responsible for melanin synthesis. By using both lacZ fusions with the lodAB promoter and quantitative reverse transcription-PCR (qRT-PCR), this study shows that the hybrid sensor histidine kinase PpoS regulates LOD activity at the transcriptional level. Although PpoS also regulates PpoA and PpoB, in this case, the regulatory effect cannot be attributed only to a transcriptional regulation. Further studies indicate that LOD activity is induced at the posttranscriptional level by l-Lys as well as by two structurally similar compounds, l-Arg and meso-2,6-diaminopimelic acid (DAP), neither of which is a substrate of the enzyme. The inducing effect of these compounds is specific for LOD activity since PpoA and PpoB are not affected by them. This study offers, for the first time, insights into the mechanisms regulating the synthesis of the antimicrobial protein lysine-epsilon-oxidase in M. mediterranea, which could be important in the microbial colonization of the seagrass P. oceanica.

摘要

一些革兰氏阴性细菌表达一种具有赖氨酸ε-氧化酶(LOD)活性(EC 1.4.3.20)的新型酶。L-赖氨酸的氧化除其他产物外,还会生成过氧化氢,这赋予了这种酶抗菌特性,并已证明其在生物膜发育和分化过程中的细胞死亡中起作用。除了 LOD 之外,形成海洋植物波西多尼亚海洋草微生物区系一部分的海洋产黑色素细菌 Marinomonas mediterranea 还表达了两种其他具有生物技术兴趣的氧化酶,一种多铜氧化酶 PpoA,具有漆酶活性,另一种称为 PpoB 的酪氨酸酶,负责黑色素合成。通过使用带有 lodAB 启动子的 lacZ 融合和定量逆转录-PCR(qRT-PCR),本研究表明杂交传感器组氨酸激酶 PpoS 在转录水平上调节 LOD 活性。尽管 PpoS 也调节 PpoA 和 PpoB,但在这种情况下,调节作用不能仅归因于转录调节。进一步的研究表明,LOD 活性通过 l-赖氨酸以及两种结构相似的化合物 l-精氨酸和内消旋-2,6-二氨基庚二酸(DAP)在转录后水平被诱导,这两种化合物都不是该酶的底物。这些化合物的诱导作用是针对 LOD 活性的,因为它们不会影响 PpoA 和 PpoB。本研究首次提供了有关 Marinomonas mediterranea 中调节抗菌蛋白赖氨酸ε-氧化酶合成的机制的见解,这对于海洋草波西多尼亚海洋草的微生物定殖可能很重要。

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本文引用的文献

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