首页> 外文OA文献 >A novel L-isoleucine metabolism in Bacillus thuringiensis generating (2S,3R,4S)-4-hydroxyisoleucine, a potential insulinotropic and anti-obesity amino acid.
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A novel L-isoleucine metabolism in Bacillus thuringiensis generating (2S,3R,4S)-4-hydroxyisoleucine, a potential insulinotropic and anti-obesity amino acid.

机译:苏云金芽孢杆菌中新的L-异亮氨酸代谢产生(2S,3R,4S)-4-羟基异亮氨酸,潜在的促胰岛素和抗肥胖氨基酸。

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摘要

4-Hydroxyisoleucine (HIL) found in fenugreek seeds has insulinotropic and anti-obesity effects and is expected to be a novel orally active drug for insulin-independent diabetes. Here, we show that the newly isolated strain Bacillus thuringiensis 2e2 and the closely related strain B. thuringiensis ATCC 35646 operate a novel metabolic pathway for L-isoleucine (L-Ile) via HIL and 2-amino-3-methyl-4-ketopentanoic acid (AMKP). The HIL synthesis was catalyzed stereoselectively by an α-ketoglutaric acid-dependent dioxygenase and to be useful for efficient production of a naturally occurring HIL isomer, (2S,3R,4S)-HIL. The (2S,3R,4S)-HIL was oxidized to (2S,3R)-AMKP by a NAD(+)-dependent dehydrogenase. The metabolic pathway functions as an effective bypass pathway that compensates for the incomplete tricarboxylic acid (TCA) cycle in Bacillus species and also explains how AMKP, a vitamin B(12) antimetabolite with antibiotic activity, is synthesized. These novel findings pave a new way for the commercial production of HIL and also for AMKP.
机译:胡芦巴种子中发现的4-羟基异亮氨酸(HIL)具有促胰岛素和抗肥胖作用,有望成为非胰岛素依赖型糖尿病的新型口服活性药物。在这里,我们显示新分离的菌株苏云金芽孢杆菌2e2和密切相关的菌株苏云金芽孢杆菌ATCC 35646通过HIL和2-氨基-3-甲基-4-酮戊酸对L-异亮氨酸(L-Ile)进行新的代谢途径酸(AMKP)。 HIL合成是由α-酮戊二酸依赖性双加氧酶立体选择性催化的,可用于有效生产天然存在的HIL异构体(2S,3R,4S)-HIL。 (2S,3R,4S)-HIL被NAD(+)依赖性脱氢酶氧化为(2S,3R)-AMKP。代谢途径作为一种有效的旁路途径,可补偿芽孢杆菌属物种中不完全的三羧酸(TCA)循环,还解释了如何合成具有抗菌活性的维生素B(12)抗代谢药AMKP。这些新颖的发现为HIL的商业生产以及AMKP铺平了道路。

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