Cooley N A, Kulakova A N, Villarreal-Chiu J F, Gilbert J A, McGrath J W, Quinn J P
School of Biological Science, Queens University, Medical Biology Centre, 97 Lisburn Road, Belfast, BT9 7BL, Northern Ireland, UK.
Mikrobiologiia. 2011 May-Jun;80(3):329-34.
A novel phosphonoacetaldehyde-oxidizing activity was detected in cell-extracts of the marine bacterium Roseovarius nubinhibens ISM grown on 2-aminoethylphosphonic acid (2-AEP; ciliatine). Extracts also contained 2-AEP transaminase and phosphonoacetate hydrolase activities. These findings indicate the existence of a biological route from 2-AEP via phosphonoacetaldehyde for the production of phosphonoacetate, which has not previously been shown to be a natural product. The three enzymes appear to constitute a previously-unreported pathway for the mineralization of 2-AEP which is a potentially important source of phosphorus in the nutrient-stressed marine environment.
在以2-氨基乙基膦酸(2-AEP;纤毛素)为生长底物的海洋细菌玫瑰色海洋杆菌ISM的细胞提取物中,检测到一种新的膦酰乙醛氧化活性。提取物中还含有2-AEP转氨酶和膦酰乙酸水解酶活性。这些发现表明,存在一条从2-AEP经膦酰乙醛生成膦酰乙酸的生物途径,膦酰乙酸以前未被证明是一种天然产物。这三种酶似乎构成了一条以前未报道的2-AEP矿化途径,2-AEP在营养胁迫的海洋环境中是一种潜在的重要磷源。