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2,3-Dihydroxybiphenyl dioxygenase gene was first discovered in Arthrobacter sp. strain PJ3
作者姓名:YANG  MeiYing  MA  PengDa  LI  WenMing  LIU  JinYing  LI  Liang  ZHU  XiaoJuan  WANG  XingZhi
作者单位:[1]Institute of Genetics and Cytology, Northeast Normal University, Changchun 130024, China [2]College of Life Sciences, Jilin Agricultural University, Changchun 130118, China
基金项目:Supported by the China-Sweden Cooperation Project (Grant No. AM15B12), the Program for Changjiang Scholars and Innovative Research Team (PCSIRT) in University (Grant No. IRT0519), the Program of Introducing Talents of Discipline to Universities Project (Grant No. B07017), and the Chinese National Plant Transformation Center (Grant No. JY03 -B- 17)
摘    要:Bacterium strain PJ3,isolated from wastewater and identified as Arthrobacter sp. bacterium based on its 16S rDNA gene,could use carbazole as the sole carbon,nitrogen and energy source. The genomic library of strain PJ3 was constructed and a positive clone JM109(pUCW402) was screened out for the expression of dioxygenase by the ability to form yellow ring-fission product. A 2,3-dihydroxybiphenyl dioxygenase(23DHBD) gene of 933 bp was found in the 3360 bp exogenous fragment of pUCW402 by GenSCAN software and BLAST analysis. The phylogenetic analysis showed that 23DHBD from strain PJ3 formed a deep branch separate from a cluster containing most known 23DHBD in GenBank. Southern hybridization confirmed for the first time that the 23DHBD gene was from the genomic DNA of Arthrobacter sp. PJ3. In order to test the gene function,recombinant bacterium BL21(pETW-8) was constructed to express 23DHBD. The expression level in BL21(pETW-8) was highest compared with the recombinant bacteria JM109(pUCW402) and strain PJ3. We observed that 23DHBD was not absolute specific. The enzyme activity was higher with 2,3-dihydroxybiphenyl as a substrate than with catechol. The substrate specificity assay suggested that 23DHBD was essential for cleavage of bi-cyclic aromatic compounds during the course of aromatic compound biodegradation in Arthrobacter sp. strain PJ3.

关 键 词:2  3-二羟联苯加双氧酶  基因定位  酶活性  节杆菌属
收稿时间:28 November 2006
修稿时间:2006-11-28

2,3-Dihydroxybiphenyl dioxygenase gene was first discovered in <Emphasis Type="Italic">Arthrobacter</Emphasis> sp. strain PJ3
YANG MeiYing MA PengDa LI WenMing LIU JinYing LI Liang ZHU XiaoJuan WANG XingZhi.2,3-Dihydroxybiphenyl dioxygenase gene was first discovered in Arthrobacter sp. strain PJ3[J].Chinese Science Bulletin,2007,52(9):1205-1211.
Authors:Yang MeiYing  Ma PengDa  Li WenMing  Liu JinYing  Li Liang  Zhu XiaoJuan  Wang XingZhi
Institution:(1) Institute of Genetics and Cytology, Northeast Normal University, Changchun, 130024, China;(2) College of Life Sciences, Jilin Agricultural University, Changchun, 130118, China
Abstract:Bacterium strain PJ3,isolated from wastewater and identified as Arthrobacter sp. bacterium based on its 16S rDNA gene,could use carbazole as the sole carbon,nitrogen and energy source. The genomic library of strain PJ3 was constructed and a positive clone JM109(pUCW402) was screened out for the expression of dioxygenase by the ability to form yellow ring-fission product. A 2,3-dihydroxybiphenyl dioxygenase(23DHBD) gene of 933 bp was found in the 3360 bp exogenous fragment of pUCW402 by GenSCAN software and BLAST analysis. The phylogenetic analysis showed that 23DHBD from strain PJ3 formed a deep branch separate from a cluster containing most known 23DHBD in GenBank. Southern hybridization confirmed for the first time that the 23DHBD gene was from the genomic DNA of Arthrobacter sp. PJ3. In order to test the gene function,recombinant bacterium BL21(pETW-8) was constructed to express 23DHBD. The expression level in BL21(pETW-8) was highest compared with the recombinant bacteria JM109(pUCW402) and strain PJ3. We observed that 23DHBD was not absolute specific. The enzyme activity was higher with 2,3-dihydroxybiphenyl as a substrate than with catechol. The substrate specificity assay suggested that 23DHBD was essential for cleavage of bi-cyclic aromatic compounds during the course of aromatic compound biodegradation in Arthrobacter sp. strain PJ3.
Keywords:2  3-dihydroxybiphenyl dioxygenase gene  Arthrobacter sp    phylogenetic tree  gene location  enzyme activity
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