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首页> 外文期刊>Journal of bacteriology >Accumulation of Homolanthionine and Activation of a Novel Pathway for Isoleucine Biosynthesis in Corynebacterium glutamicum McbR Deletion Strains
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Accumulation of Homolanthionine and Activation of a Novel Pathway for Isoleucine Biosynthesis in Corynebacterium glutamicum McbR Deletion Strains

机译:谷氨酸棒杆菌McbR缺失菌株中高聚蛋氨酸的积累和异亮氨酸生物合成的新途径的激活。

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In the present work, the metabolic consequences of the deletion of the methionine and cysteine biosynthesis repressor protein (McbR) in Corynebacterium glutamicum, which releases almost all enzymes of methionine biosynthesis and sulfate assimilation from transcriptional regulation (D. A. Rey, A. Pühler, and J. Kalinowski, J. Biotechnol. >103:51-65, 2003), were studied. C. glutamicum ATCC 13032 ΔmcbR showed no overproduction of methionine. Metabolome analysis revealed drastic accumulation of a single metabolite, which was not present in the wild type. It was identified by isotopic labeling studies and gas chromatography/mass spectrometry as l-homolanthionine {S-[(3S)-3-amino-3-carboxypropyl]-l-homocysteine}. The accumulation of homolanthionine to an intracellular concentration of 130 mM in the ΔmcbR strain was accompanied by an elevated intracellular homocysteine level. It was shown that cystathionine-γ-synthase (MetB) produced homolanthionine as a side reaction. MetB showed higher substrate affinity for cysteine (Km = 260 μM) than for homocysteine (Km = 540 μM). The cell is able to cleave homolanthionine at low rates via cystathionine-β-lyase (MetC). This cleavage opens a novel threonine-independent pathway for isoleucine biosynthesis via 2-oxobutanoate formed by MetC. In fact, the deletion mutant exhibited an increased intracellular isoleucine level. Metabolic flux analysis of C. glutamicum ΔmcbR revealed that only 24% of the O-acetylhomoserine at the entry of the methionine pathway is utilized for methionine biosynthesis; the dominating fraction is either stored as homolanthionine or redirected towards the formation of isoleucine. Deletion of metB completely prevents homolanthionine accumulation, which is regarded as an important step in the development of C. glutamicum strains for biotechnological methionine production.
机译:在目前的工作中,谷氨酸棒杆菌中蛋氨酸和半胱氨酸生物合成阻遏蛋白(McbR)缺失的代谢后果,从而使几乎所有蛋氨酸生物合成酶和硫酸盐同化酶从转录调控中释放出来(DA Rey ,A。Pühler和J. Kalinowski,J。Biotechnol。> 103: 51-65,2003年)进行了研究。 C。谷氨酸 ATCC 13032Δ mcbR 显示没有蛋氨酸的过量生产。代谢组学分析显示,单个代谢物大量积累,而野生型中不存在。通过同位素标记研究和气相色谱/质谱法鉴定为l-高硫硫氨酸{ S -[(3 S )-3-氨基-3-羧丙基] -1 -homocysteine}。在Δ mcbR 菌株中高硫氰酸的积累达到细胞内浓度130 mM,同时细胞内高半胱氨酸水平升高。结果表明,胱硫醚-γ-合酶(MetB)产生高硫氰酸作为副反应。 MetB对半胱氨酸( K m = 260μM)的底物亲和力高于对同型半胱氨酸( K m = 540)的底物亲和力μM)。该细胞能够通过胱硫醚-β-裂合酶(MetC)低速裂解高羊毛硫氨酸。该切割通过由MetC形成的2-氧代丁酸酯为异亮氨酸生物合成开辟了新的苏氨酸非依赖性途径。实际上,缺失突变体表现出增加的细胞内异亮氨酸水平。 C的代谢通量分析。谷氨酸ΔmcbR显示,蛋氨酸途径入口处的 O -乙酰高丝氨酸只有24%用于蛋氨酸的生物合成。占主导地位的部分要么被存储为高羊毛硫氨酸,要么被重定向到异亮氨酸的形成。删除 metB 完全防止了高硫氨酸的积累,这被认为是 C发展的重要步骤。谷氨酸菌株用于生产生物技术蛋氨酸。

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