Suenaga H, Nishi A, Watanabe T, Sakai M, Furukawa K
Department of Agricultural Chemistry, Kyushu University, Fukuoka 812-8581, Japan.
J Biosci Bioeng. 1999;87(4):430-5. doi: 10.1016/s1389-1723(99)80090-5.
We constructed a hybrid strain that acquired 3,4-dioxygenase activity for polychlorinated biphenyls (PCBs). This strain, KF707-D34, possessed a chimeric biphenyl dioxygenase gene, of which a portion of bphA1 (coding for a large subunit of biphenyl dioxygenase) of Pseudomonas pseudoalcaligenes KF707 was replaced with that of a PCB-degrader, Burkholderia cepacia LB400 by homologous recombination. KF707-D34 retained the ability to degrade 4,4'-dichlorobiphenyl via 2,3-dioxygenation in a fashion identical to that of KF707 and gained novel capability to degrade 2,5,4'-trichlorobiphenyl and 2,5,2',5'-tetrachlorobiphenyl via 3,4-dioxygenation in a fashion identical to that of LB400. Sequence analysis of bphA1 from KF707-D34 revealed that three nucleotides in the 3'-terminal region of KF707 bphA1 were changed to correspond to those in LB400 bphA1. The resulting BphA1 protein in KF707-D34 was changed at position 376 from threonine (Thr) to asparagine (Asn). The results demonstrate that a minor alteration of the amino acid sequence in BphA1 improved the PCB degradation capability in biphenyl-utilizing bacteria.
我们构建了一种对多氯联苯(PCBs)具有3,4 - 双加氧酶活性的杂交菌株。该菌株KF707 - D34拥有一个嵌合的联苯双加氧酶基因,通过同源重组,将假产碱假单胞菌KF707的bphA1(编码联苯双加氧酶的大亚基)的一部分替换为PCB降解菌洋葱伯克霍尔德菌LB400的相应部分。KF707 - D34保留了通过2,3 - 双加氧作用降解4,4'-二氯联苯的能力,其方式与KF707相同,并且获得了通过3,4 - 双加氧作用降解2,5,4'-三氯联苯和2,5,2',5'-四氯联苯的新能力,其方式与LB400相同。对KF707 - D34的bphA1进行序列分析表明,KF707 bphA1 3'末端区域的三个核苷酸发生了改变,以对应LB400 bphA1中的核苷酸。KF707 - D34中产生的BphA1蛋白在第376位从苏氨酸(Thr)变为天冬酰胺(Asn)。结果表明,BphA1中氨基酸序列的微小改变提高了利用联苯的细菌对PCB的降解能力。