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首页> 外文期刊>Journal of bacteriology >Biosynthesis of the Branched-Chain Amino Acids in Yeast: a Leucine-Binding Component and Regulation of Leucine Uptake
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Biosynthesis of the Branched-Chain Amino Acids in Yeast: a Leucine-Binding Component and Regulation of Leucine Uptake

机译:酵母中分枝链氨基酸的生物合成:亮氨酸结合组分和亮氨酸摄取调控

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摘要

Use of an ion-exchange resin assay has shown that leucine is bound to a component of a dialyzed extract of yeast. Leucine binding may be related to in vivo uptake of the amino acid. A yeast strain with a 30-fold lower affinity for leucine uptake in vivo has a parallel reduction in affinity for in vitro leucine binding; the rate of leucine uptake in wild-type yeast can be increased four- to fivefold by growth on leucine as a sole nitrogen source. Under these conditions, the specific activity of the leucine-binding component also increases over threefold. Regulation of leucine uptake was studied by using wild-type strain 60615 and a mutant 60615/fl2 with a constitutively elevated leucine uptake system. Leucine pool formation in the mutant was accompanied by an overshoot, leading to a loss of leucine from the pool. The phenomenon could be observed in the wild type under certain conditions. The mechanism of this process was examined. The leucine uptake system was found to be stable in the absence of protein synthesis. The rate of leucine uptake increased on reduction of the pool of amino acids, and in strain 60615/fl2 the ability to overshoot was rapidly recovered on depletion of the leucine pool. The results suggest a control of leucine uptake by feedback inhibition, in which leucine or other amino acids, e.g., isoleucine, inhibit leucine uptake. The results do not exclude control by a rapidly activated-inactivated system.
机译:使用离子交换树脂测定表明,亮氨酸与酵母的透析提取物的组分结合。亮氨酸结合可能与体内吸收氨基酸有关。对于体内亮氨酸摄取具有30倍以下的酵母菌株,对体外亮氨酸结合具有平行降低的亲和力;野生型酵母中的亮氨酸摄取率可以通过亮氨酸生长增加4至五倍,作为唯一的氮源。在这些条件下,亮氨酸结合组分的比活性也增加了三倍。通过使用野生型菌株60615和突变体60615 / FL 2-2 ,研究了亮氨酸摄取的调节,其具有组成升高的亮氨酸摄取系统。突变体中的亮氨酸池形成伴有过冲,导致池中的亮氨酸损失。在某些条件下,可以在野生型中观察该现象。检查了该过程的机制。在没有蛋白质合成的情况下,发现亮氨酸摄取系统是稳定的。亮氨酸摄取的速率增加了氨基酸池的减少,在菌株60615 / fl 2 在亮氨酸池的耗尽上迅速回收过冲的能力。结果表明,通过反馈抑制对亮氨酸摄取的控制,其中亮氨酸或其他氨基酸,例如异亮氨酸,抑制亮氨酸摄取。结果不通过快速激活的灭活系统排除控制。

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