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首页> 外文期刊>Veterinary Research Communications >Hydrogen Peroxide Production by Mycoplasma bovis and Mycoplasma agalactiae and Effect of In Vitro Passage on a Mycoplasma bovis Strain Producing High Levels of H2O2
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Hydrogen Peroxide Production by Mycoplasma bovis and Mycoplasma agalactiae and Effect of In Vitro Passage on a Mycoplasma bovis Strain Producing High Levels of H2O2

机译:牛支原体和无乳支原体产生的过氧化氢以及体外传代对牛支原体产生高水平H2O2 菌株的影响

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摘要

Hydrogen peroxide (H2O2) production and oxygen uptake during the oxidation of NADH and L-α-glycerophosphate (GP) by lysed cells was determined for the type and field strains ofMycoplasma bovis andM. agalactiae. NADH oxidation by all the strains showed variable production of H2O2 ranging from 0 to 1.21 mol/mol O2 taken up. All strains were unable to oxidize GP, showing absence of GP oxidase activity. Some strains were identified that produced relatively high levels of H2O2 (>1.0 mol/mol O2 taken up).In vitro passage ofM. bovis strain 119B96 showed reduced H2O2 production: 0.52, 0.16, and 0.07 mol/mol O2 taken up after the 50th, 100th and 200th passages, respectively. SDS-PAGE analysis showed the loss of a protein band of 32 kDa after 50 passages. These preliminary studies show that not only does H2O2 production by potentially pathogenicMycoplasma spp. vary in the field but also that similar alterations can be induced by passage in culture. In the latter case, at least in oneM. bovis strain, this alteration has been shown by SDS-PAGE to be associated with a loss of specific protein production. Further study of these phenomena is essential background for the production of more efficient vaccines for mycoplasmas.
机译:确定了NADH和L-α-甘油磷酸(GP)被裂解细胞氧化过程中过氧化氢(H2O2)的产生和氧的吸收,用于牛型支原体和M型菌株的研究。无乳。所有菌株的NADH氧化显示产生的H2 O2 的变化范围为0至1.21 mol / mol O2 。所有菌株均不能氧化GP,显示不存在GP氧化酶活性。鉴定出一些产生相对较高水平的H2O 2 sub> sub> sub> sub> O 1.0 mol / mol O2 )。 Bovis菌株119B96显示出减少的H2O2 产生:分别在第50、100和200次传代后吸收了0.52、0.16和0.07 mol / mol O2 。 SDS-PAGE分析显示50传代后32kDa蛋白带的丢失。这些初步研究表明,潜在致病性支原体物种不仅产生H2 O2 。领域的变化,但是通过传代培养也可以引起类似的改变。在后一种情况下,至少一个。牛型,这种改变已通过SDS-PAGE显示与特定蛋白质产量的减少有关。对这些现象的进一步研究是生产更有效的支原体疫苗的必要背景。

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