Westlake K, Mackie R I, Dutton M F
Appl Environ Microbiol. 1987 Mar;53(3):587-92. doi: 10.1128/aem.53.3.587-592.1987.
The effect of T-2 toxin on the growth rates of different bacteria was used as a measure of its toxicity. Toxin levels of 10 micrograms/ml did not decrease the growth rate of Selenomonas ruminantium and Anaerovibrio lipolytica, whereas the growth rate of Butyrivibrio fibrisolvens was uninhibited at toxin levels as high as 1 mg/ml. There was, however, a noticeable increase in the growth rate of B. fibrisolvens CE46 and CE51 and S. ruminantium in the presence of low concentrations (10 micrograms/ml) of T-2 toxin, which may indicate the assimilation of the toxin as an energy source by these bacteria. Three tributyrin-hydrolyzing bacterial isolates did not grow at all in the presence of T-2 toxin (10 micrograms/ml). The growth rate of a fourth tributyrin-hydrolyzing bacterial isolate was unaffected. B. fibrisolvens CE51 degraded T-2 toxin to HT-2 toxin (22%), T-2 triol (3%), and neosolaniol (10%), whereas A. lipolytica and S. ruminantium degraded the toxin to HT-2 toxin (22 and 18%, respectively) and T-2 triol (7 and 10%, respectively) only. These results have been explained in terms of the presence of two different toxin-hydrolyzing enzyme systems. Studies with B. fibrisolvens showed the presence of a T-2 toxin-degrading enzyme fraction in a bacterial membrane preparation. This fraction had an approximate molecular weight of 65,000 and showed esterase activity (395.6 mumol of p-nitrophenol formed per min per mg of protein with p-nitrophenylacetate as the substrate.
将T-2毒素对不同细菌生长速率的影响用作其毒性的一种度量。10微克/毫升的毒素水平并未降低反刍月形单胞菌和溶脂厌氧弧菌的生长速率,而纤维溶解丁酸弧菌的生长速率在高达1毫克/毫升的毒素水平下仍未受到抑制。然而,在低浓度(10微克/毫升)的T-2毒素存在下,纤维溶解丁酸弧菌CE46和CE51以及反刍月形单胞菌的生长速率有明显增加,这可能表明这些细菌将毒素同化为能量来源。三种三丁酸甘油酯水解细菌分离株在T-2毒素(10微克/毫升)存在的情况下根本无法生长。第四种三丁酸甘油酯水解细菌分离株的生长速率未受影响。纤维溶解丁酸弧菌CE51将T-2毒素降解为HT-2毒素(22%)、T-2三醇(3%)和新茄病镰刀菌烯醇(10%),而溶脂厌氧弧菌和反刍月形单胞菌仅将毒素降解为HT-2毒素(分别为22%和18%)和T-2三醇(分别为7%和10%)。这些结果已根据两种不同的毒素水解酶系统的存在得到解释。对纤维溶解丁酸弧菌的研究表明,在细菌膜制剂中存在一种T-2毒素降解酶组分。该组分的近似分子量为65,000,具有酯酶活性(以对硝基苯乙酸为底物时,每毫克蛋白质每分钟形成395.6微摩尔对硝基苯酚)。