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Factors affecting the production of pyrroloquinoline quinone by the methylotrophic bacterium W3A1.

机译:影响甲基营养型细菌W3A1产生吡咯并喹啉醌的因素。

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Two variants of the methylotrophic bacterium W3A1, designated W3A1-S (slimy) and W3A1-NS (nonslimy), were compared with respect to their ability to grow in batch culture on the C1 substrates methylamine, methanol, and trimethylamine. Substrate utilization, cell density, pH, cellular and soluble polysaccharide production, and concentrations of the enzymes methylamine dehydrogenase, trimethylamine dehydrogenase, and methanol dehydrogenase produced were measured as a function of growth. The ability of the two bacterial variants to excrete the redox cofactor pyrroloquinoline quinone into the growth medium was also investigated. The two variants were similar with respect to all properties measured, except that W3A1-S produced significantly more capsular polysaccharides than variant W3A1-NS. Pyrroloquinoline quinone was excreted when either variant was grown on any of the C1 substrates investigated but was maximally produced when the methylamine concentration was 0.45% (wt/vol). This cofactor is excreted only as bacterial growth enters the stationary phase, a time when the levels of trimethylamine dehydrogenase and the quinoproteins methanol dehydrogenase and methylamine dehydrogenase begin to decline. It is not known whether the pyrroloquinoline quinone found in the medium is made de novo for excretion, derived from the quinoprotein pool, or both. Pyrroloquinoline quinone excretion has been observed with other methylotrophs, but this is the first instance where the excretion was observed with substrates other than methanol.
机译:比较了甲基营养型细菌W3A1的两个变体,分别称为W3A1-S(粘糊糊)和W3A1-NS(非粘糊糊),以它们在C1底物甲胺,甲醇和三甲胺上分批培养的能力进行了比较。测量底物利用率,细胞密度,pH,细胞和可溶性多糖的产生以及所产生的甲胺脱氢酶,三甲胺脱氢酶和甲醇脱氢酶的浓度,作为生长的函数。还研究了两种细菌变体将氧化还原辅因子吡咯并喹啉醌排入生长培养基的能力。就所测得的所有性质而言,这两个变体是相似的,除了W3A1-S比变体W3A1-NS产生明显更多的荚膜多糖。当任一变体生长在所研究的任何C1底物上时,吡咯并喹啉醌都会被排泄,但是当甲胺浓度为0.45%(wt / vol)时,产量最高。该辅因子仅在细菌生长进入固定相时才排出,这是三甲胺脱氢酶和喹蛋白甲醇脱氢酶和甲胺脱氢酶的水平开始下降的时候。尚不知道培养基中发现的吡咯并喹啉醌是从头分泌还是从醌蛋白库中提取出来,还是两者结合使用。在其他甲基营养菌中也观察到了吡咯并喹啉醌的排泄,但这是在除甲醇以外的其他底物上观察到排泄的第一例。

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