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Evidence for cell-density-dependent regulation of catalase activity in Rhizobium leguminosarum bv. phaseoli

机译:细胞密度依赖性调节rebuminosarum bv中的过氧化氢酶活性调节。 phopololi.

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Pretreatment of Rhizobium leguminosarum bv. phaseoli cultures with low, non-lethal levels of H2O2 led to them becoming more resistant to killing by higher concentrations of this oxidant. The sensitivity of R. leguminosarum to H2O2-mediated oxidative stress varied with the growth phase of the cultures. Stationary phase cells were many times more resistant to killing by 3 mM H2O2 than exponentially growing cultures. Unexpectedly, the catalase activity of cultures was found to rise to a maximum in the early-exponential growth phase and rapidly fall to a minimum during late-exponential growth. Further investigation showed that the induction and subsequent repression of catala activity in exponential cultures is a cell-density-dependent phenomenon whi appears to be controlled by the accumulation of extracellular compound(s) in the growth medium at high cell densities. In this respect, control of catalase R. leguminosarum resembles a number of other cell-density-regulated phenomena in bacteria which are controlled by the accumulation of extracellular molecules: the best studied example of this quorum sensing is the control of bacterial bioluminescence by the lux autoinducer. Preliminary data indicated that this extracellular component is a non-proteinaceous, hea stable molecule.
机译:Remuminosarum BV的预处理。通过较高浓度的这种氧化剂导致具有低的PhableOoli培养物的H2O2的低致致死水平LED,它们变得更加抗杀伤。 R.乳糜蛋白对H 2 O 2介导的氧化胁迫的敏感性随培养的生长阶段而变化。静止相细胞与3mm H 2 O 2的抗杀死比指数增长的培养物多倍。出乎意料地,发现培养物的过氧化氢酶活性在早期的增长阶段中升至最大值,并且在晚期指数增长期间迅速下降至最低限度。进一步的研究表明,在指数培养物中的诱导和随后抑制Catala活性是一种细胞密度依赖性现象,WHI似乎通过在高细胞密度下的生长培养基中的细胞外化合物的积累来控制。在这方面,对过氧化氢酶R.乳糜酶的控制类似于通过细胞外分子的积累控制的细菌中的许多其他细胞密度调节的现象:该法定感测的最佳研究实例是由勒克斯的细菌生物发光的控制自动化器。初步数据表明,该细胞外组分是非蛋白质,Hea稳定分子。

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