Chen C M, Tomasek P H
Department of Food Science, Cook College, New Jersey Agricultural Experiment Station, Rutgers University, New Brunswick 08903.
Appl Environ Microbiol. 1991 Aug;57(8):2217-22. doi: 10.1128/aem.57.8.2217-2222.1991.
Bacterial extradiol ring-fission dioxygenases play a critical role in the transformation of multiring aromatic compounds to more readily biodegradable aromatic or aliphatic intermediates. Arthrobacter sp. strain GFB100 utilizes an extradiol meta-fission dioxygenase, 3,4-dihydroxyxanthone dioxygenase (DHXD), in the catabolism of the three-ring oxygen heterocyclic compound xanthone. In this paper, we show that DHXD is a cytosolic enzyme, induced by growth on xanthone and maximally expressed during the stationary phase of growth. In addition, we characterize the DHXD activity in terms of its basic enzymological properties. 1,10-Phenanthroline and H2O2 treatments eliminated DHXD activity, indicating that the enzyme required Fe2+ ions for activity. Other divalent cations were either inhibitory or had no effect on activity. DHXD had a temperature optimum of 30 degrees C and a pH optimum of 7.0. DHXD followed typical saturation kinetics and had an apparent Km of 10 microM for 3,4-dihydroxyxanthone. The dye celestine blue served as a noncompetitive DHXD inhibitor (Ki, 5 microM). Several other structural analogs served neither as substrates nor inhibitors. DHXD was thermally labile at temperatures above 40 degrees C. The half-life for thermal DHXD inactivation was 5 min at 40 degrees C. DHXD activity was completely stable through one freeze-thaw cycle, and about 80% of the DHXD activity remained after 2 days of incubation at 0 degree C. The apparent tight binding of the Fe2+ cofactor to DHXD may be a factor contributing to the stability of this extradiol dioxygenase when it is stored.
细菌双加氧酶在多环芳香化合物转化为更易生物降解的芳香或脂肪族中间体的过程中起着关键作用。节杆菌属菌株GFB100在三环含氧杂环化合物呫吨的分解代谢中利用一种双加氧间位裂解酶——3,4 - 二羟基呫吨双加氧酶(DHXD)。在本文中,我们表明DHXD是一种胞质酶,由在呫吨上生长诱导产生,并在生长稳定期达到最大表达。此外,我们根据其基本酶学性质对DHXD活性进行了表征。1,10 - 菲咯啉和过氧化氢处理消除了DHXD活性,表明该酶活性需要Fe2 +离子。其他二价阳离子要么具有抑制作用,要么对活性无影响。DHXD的最适温度为30℃,最适pH为7.0。DHXD遵循典型的饱和动力学,对3,4 - 二羟基呫吨的表观Km为10μM。染料天青石蓝作为非竞争性DHXD抑制剂(Ki,5μM)。其他几种结构类似物既不是底物也不是抑制剂。DHXD在40℃以上温度下热不稳定。在40℃时,DHXD热失活的半衰期为5分钟。DHXD活性在一次冻融循环中完全稳定,在0℃孵育2天后仍保留约80%的DHXD活性。Fe2 +辅因子与DHXD的明显紧密结合可能是该双加氧酶储存时稳定性的一个影响因素。