首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Accumulation of Polyhydroxyalkanoic Acid Containing Large Amounts of Unsaturated Monomers in Pseudomonas fluorescens BM07 Utilizing Saccharides and Its Inhibition by 2-Bromooctanoic Acid
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Accumulation of Polyhydroxyalkanoic Acid Containing Large Amounts of Unsaturated Monomers in Pseudomonas fluorescens BM07 Utilizing Saccharides and Its Inhibition by 2-Bromooctanoic Acid

机译:利用糖类的荧光假单胞菌BM07中含有大量不饱和单体的聚羟基链烷酸的积累及其对2-溴辛酸的抑制作用

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摘要

A psychrotrophic bacterium, Pseudomonas fluorescens BM07, which is able to accumulate polyhydroxyalkanoic acid (PHA) containing large amounts of 3-hydroxy-cis-5-dodecenoate unit up to 35 mol% in the cell from unrelated substrates such as fructose, succinate, etc., was isolated from an activated sludge in a municipal wastewater treatment plant. When it was grown on heptanoic acid (C7) to hexadecanoic acid (C16) as the sole carbon source, the monomer compositional characteristics of the synthesized PHA were similar to those observed in other fluorescent pseudomonads belonging to rRNA homology group I. However, growth on stearic acid (C18) led to no PHA accumulation, but instead free stearic acid was stored in the cell. The existence of the linkage between fatty acid de novo synthesis and PHA synthesis was confirmed by using inhibitors such as acrylic acid and two other compounds, 2-bromooctanoic acid and 4-pentenoic acid, which are known to inhibit β-oxidation enzymes in animal cells. Acrylic acid completely inhibited PHA synthesis at a concentration of 4 mM in 40 mM octanoate-grown cells, but no inhibition of PHA synthesis occurred in 70 mM fructose-grown cells in the presence of 1 to 5 mM acrylic acid. 2-Bromooctanoic acid and 4-pentenoic acid were found to much inhibit PHA synthesis much more strongly in fructose-grown cells than in octanoate-grown cells over concentrations ranging from 1 to 5 mM. However, 2-bromooctanoic acid and 4-pentenoic acid did not inhibit cell growth at all in the fructose media. Especially, with the cells grown on fructose, 2-bromooctanoic acid exhibited a steep rise in the percent PHA synthesis inhibition over a small range of concentrations below 100 μM, a finding indicative of a very specific inhibition, whereas 4-pentenoic acid showed a broad, featureless concentration dependence, suggesting a rather nonspecific inhibition. The apparent inhibition constant Ki (the concentration for 50% inhibition of PHA synthesis) for 2-bromooctanoic acid was determined to be 60 μM, assuming a single-site binding of the inhibitor at a specific inhibition site. Thus, it seems likely that a coenzyme A thioester derivative of 2-bromooctanoic acid specifically inhibits an enzyme linking the two pathways, fatty acid de novo synthesis and PHA synthesis. We suggest that 2-bromooctanoic acid can substitute for the far more expensive (2,000 times) and cell-growth-inhibiting PHA synthesis inhibitor, cerulenin.
机译:一种精神营养细菌荧光假单胞菌BM07,它能够从无关的底物(如果糖,琥珀酸等)中积累至多35 mol%的细胞中含有多达3-mol-cis-5-dodecenoate单元的聚羟基链烷酸(PHA)。在市政废水处理厂中从活性污泥中分离出。当它在庚酸(C7)到十六烷酸(C16)上作为唯一碳源生长时,合成的PHA的单体组成特征与在属于rRNA同源性I组的其他荧光假单胞菌中观察到的相似。硬脂酸(C18)不会导致PHA积累,而是将游离的硬脂酸存储在细胞中。脂肪酸从头合成与PHA合成之间存在联系,这是通过使用丙烯酸和其他两种化合物(2-溴辛酸和4-戊烯酸)来抑制的,该抑制剂已知能抑制动物细胞中的β-氧化酶。 。丙烯酸在40 mM辛酸酯生长的细胞中以4 mM的浓度完全抑制了PHA的合成,但是在存在1至5 mM丙烯酸的情况下,在70 mM果糖生长的细胞中没有抑制PHA的合成。发现在浓度范围为1至5 mM的情况下,果糖生长的细胞中2-溴辛酸和4-戊烯酸对PHA的抑制作用要强得多。然而,在果糖培养基中2-溴辛酸和4-戊烯酸完全不抑制细胞生长。尤其是,在果糖上生长的细胞中,2-溴辛酸在低于100μM的小浓度范围内显示出PHA合成抑制百分比的急剧上升,这一发现表明存在非常特异性的抑制作用,而4-戊烯酸则显示出广泛的抑制作用。 ,无浓度依赖性,提示非特异性抑制。假定抑制剂在特定抑制位点单点结合,则确定2-溴辛酸的表观抑制常数Ki(抑制PHA合成的50%浓度)为60μM。因此,似乎2-溴辛酸的辅酶A硫酯衍生物特异性地抑制了连接脂肪酸从头合成和PHA合成这两个途径的酶。我们建议2-溴辛酸可以代替更昂贵(2,000倍)和抑制细胞生长的PHA合成抑制剂cerulenin。

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