Benzylic monooxygenation catalyzed by toluene dioxygenase from Pseudomonas putida

Biochemistry ◽  
1988 ◽  
Vol 27 (4) ◽  
pp. 1360-1367 ◽  
Author(s):  
Lawrence P. Wackett ◽  
Lawrence D. Kwart ◽  
David T. Gibson
2012 ◽  
Vol 23 (5) ◽  
pp. 683-691 ◽  
Author(s):  
Jianbo Liu ◽  
Takashi Amemiya ◽  
Qing Chang ◽  
Yi Qian ◽  
Kiminori Itoh

1987 ◽  
Vol 244 (3) ◽  
pp. 611-616 ◽  
Author(s):  
M Zamanian ◽  
J R Mason

The terminal oxygenase component of benzene dioxygenase from Pseudomonas putida strain ML2 was shown to contain two subunits, of Mr 54,500 and 23,500, by SDS/polyacrylamide-gel electrophoresis. The native Mr of the terminal oxygenase was estimated to be 168,000 +/- 4000. Polyclonal antibodies raised against each of the subunits cross-reacted with two polypeptides in cell-free extracts from toluene-grown Pseudomonas putida strain N.C.I.B. 11767. The Mr values of these polypeptides were similar to those reported for the subunits from the terminal dioxygenase component of toluene dioxygenase. These polypeptides were present only when this strain was grown on toluene. No cross-reactivity was observed with subunits of the naphthalene dioxygenase or benzoate dioxygenase systems.


1985 ◽  
Vol 260 (4) ◽  
pp. 2355-2363
Author(s):  
V Subramanian ◽  
T N Liu ◽  
W K Yeh ◽  
C M Serdar ◽  
L P Wackett ◽  
...  

2005 ◽  
Vol 71 (7) ◽  
pp. 3806-3814 ◽  
Author(s):  
R. E. Parales ◽  
R. Huang ◽  
C.-L. Yu ◽  
J. V. Parales ◽  
F. K. N. Lee ◽  
...  

ABSTRACT The protein components of the 2-nitrotoluene (2NT) and nitrobenzene dioxygenase enzyme systems from Acidovorax sp. strain JS42 and Comamonas sp. strain JS765, respectively, were purified and characterized. These enzymes catalyze the initial step in the degradation of 2-nitrotoluene and nitrobenzene. The identical shared reductase and ferredoxin components were monomers of 35 and 11.5 kDa, respectively. The reductase component contained 1.86 g-atoms iron, 2.01 g-atoms sulfur, and one molecule of flavin adenine dinucleotide per monomer. Spectral properties of the reductase indicated the presence of a plant-type [2Fe-2S] center and a flavin. The reductase catalyzed the reduction of cytochrome c, ferricyanide, and 2,6-dichlorophenol indophenol. The ferredoxin contained 2.20 g-atoms iron and 1.99 g-atoms sulfur per monomer and had spectral properties indicative of a Rieske [2Fe-2S] center. The ferredoxin component could be effectively replaced by the ferredoxin from the Pseudomonas sp. strain NCIB 9816-4 naphthalene dioxygenase system but not by that from the Burkholderia sp. strain LB400 biphenyl or Pseudomonas putida F1 toluene dioxygenase system. The oxygenases from the 2-nitrotoluene and nitrobenzene dioxygenase systems each had spectral properties indicating the presence of a Rieske [2Fe-2S] center, and the subunit composition of each oxygenase was an α3β3 hexamer. The apparent Km of 2-nitrotoluene dioxygenase for 2NT was 20 μM, and that for naphthalene was 121 μM. The specificity constants were 7.0 μM−1 min−1 for 2NT and 1.2 μM−1 min−1 for naphthalene, indicating that the enzyme is more efficient with 2NT as a substrate. Diffraction-quality crystals of the two oxygenases were obtained.


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