首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Exogenous Isoleucine and Fatty Acid Shortening Ensure the High Content of Anteiso-C15:0 Fatty Acid Required for Low-Temperature Growth of Listeria monocytogenes
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Exogenous Isoleucine and Fatty Acid Shortening Ensure the High Content of Anteiso-C15:0 Fatty Acid Required for Low-Temperature Growth of Listeria monocytogenes

机译:外源异亮氨酸和脂肪酸的缩短确保了单核细胞增生性李斯特菌低温生长所需的高含量的Anteiso-C15:0脂肪酸

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摘要

Previous studies have demonstrated that the branched-chain fatty acid anteiso-C15:0 plays a critical role in the growth of Listeria monocytogenes at low temperatures by ensuring sufficient membrane fluidity. Studies utilizing a chemically defined minimal medium revealed that the anteiso fatty acid precursor isoleucine largely determined the fatty acid profile and fatty acid response of the organism to lowered growth temperature. When isoleucine was sufficient, the fatty acid profile was very uniform, with anteiso fatty acids comprising up to 95% of total fatty acid, and the major fatty acid adjustment to low temperature was fatty acid chain shortening, which resulted in an increase of anteiso-C15:0 solely at the expense of anteiso-C17:0. When isoleucine was not supplied, the fatty acid profile became more complex and was readily modified by leucine, which resulted in a significant increase of corresponding iso fatty acids and an inability to grow at 10°C. Under this condition, the increase of anteiso-C15:0 at low temperature resulted from the combined effect of increasing the anteiso:iso ratio and chain shortening. A branched-chain α-keto acid dehydrogenase-defective strain largely lost the ability to increase the anteiso:iso ratio. Cerulenin, an inhibitor of β-ketoacyl-acyl carrier protein synthase (FabF), induced a similar fatty acid chain shortening as low temperature did. We propose that the anteiso precursor preferences of enzymes in the branched-chain fatty acid biosynthesis pathway ensure a high production of anteiso fatty acids, and cold-regulated chain shortening results in a further increase of anteiso-C15:0 at the expense of anteiso-C17:0.
机译:先前的研究表明,通过确保足够的膜流动性,支链脂肪酸前异-C15:0在低温下对单核细胞增生李斯特菌的生长起关键作用。利用化学成分确定的基本培养基进行的研究表明,前异脂肪酸前体异亮氨酸在很大程度上决定了生物体对降低的生长温度的脂肪酸谱和脂肪酸响应。当异亮氨酸足够时,脂肪酸分布非常均匀,前异脂肪酸占总脂肪酸的比例高达95%,而对低温的主要脂肪酸调节是缩短脂肪酸链,这导致前异脂肪酸增加C15:0仅以牺牲前叉C17:0为代价。当不提供异亮氨酸时,脂肪酸组成变得更加复杂,并且容易被亮氨酸修饰,这导致相应的异脂肪酸显着增加,并且无法在10°C下生长。在这种条件下,低温下前异构体-C15:0的增加是由于增加前异构体:iso比率和缩短链的综合作用。支链α-酮酸脱氢酶缺陷菌株大大丧失了增加前异构体:异构体比率的能力。 β-酮酰基-酰基载体蛋白合酶(FabF)的抑制剂Cerulenin诱导了类似的脂肪酸链缩短,就像低温一样。我们认为,支链脂肪酸生物合成途径中酶的前异前体偏好性可确保大量生产前异脂肪酸,而冷调节的链缩短会导致前异C15:0的进一步增加,而牺牲前异- C17:0。

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