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LYSE 外排蛋白过表达对 Corynebacterium crenatum 中 L-精氨酸生产的影响。

The effect of a LYSE exporter overexpression on L-arginine production in Corynebacterium crenatum.

机构信息

The Key Laboratory of Industrial Biotechnology of Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, Jiangsu, People's Republic of China.

出版信息

Curr Microbiol. 2013 Sep;67(3):271-8. doi: 10.1007/s00284-013-0358-x. Epub 2013 Apr 5.

Abstract

Corynebacterium crenatum SYPA is an aerobic and industrial L-arginine producer. A lysE deletion mutant was constructed searching a natural function of this in C. crenatum SYPA. Tracking determination of intracellular and extracellular L-arginine in the minimum culture CGXII showed that LysE did play an important role in transporting L-arginine from intracellular to extracellular, without which the accumulation of intracellular L-arginine of C. crenatum SYPA could reach an extremely high concentration. Nevertheless, the lower intracellular concentration of L-arginine could decrease the feedback inhibition in the biosynthesis of L-arginine. To improve the yield from excretion, we attempted to achieve overexpress in the L-arginine transporter in C. crenatum SYPA. Thus, the heterologous and homologous expressions of EcargO and CclysE, respectively, were carried out by means of the shuttle plasmid pJCtac in C. crenatum SYPA. It was found that L-arginine production was improved by 13.6 % because of the overexpression of lysE in the strain (SYPA/pJCE) contrast to the wild-type strain and reached 35.9 g/L, whereas L-arginine production of the strain SYPA/pJCO was scarcely changed. Consequently, we succeeded in obtaining a mutant form of LysE which has an effect to decrease the intracellular concentration of L-arginine in an L-arginine producer of C. crenatum SYPA and found that the production of L-arginine by C. crenatum carrying lysE was improved. These results show the importance of the factor (lysE) involved in the excretion of L-arginine on its over-production in C. crenatum.

摘要

棒状杆菌(Corynebacterium crenatum)SYPA 是一种需氧且能够生产 L-精氨酸的工业菌。为了探索该菌中 LysE 的天然功能,我们构建了 LysE 缺失突变株。通过在最小培养基 CGXII 中追踪胞内和胞外 L-精氨酸,发现 LysE 确实在将 L-精氨酸从胞内向胞外转运过程中发挥了重要作用,没有 LysE 的情况下,C. crenatum SYPA 胞内 L-精氨酸的积累可以达到极高的浓度。然而,较低的胞内 L-精氨酸浓度可以降低 L-精氨酸生物合成中的反馈抑制。为了提高从排泄途径获得的产量,我们试图在 C. crenatum SYPA 中过表达 L-精氨酸转运蛋白。因此,通过穿梭质粒 pJCtac 在 C. crenatum SYPA 中分别进行了 EcargO 和 CclysE 的异源和同源表达。结果发现,与野生型菌株相比,由于 LysE 在菌株(SYPA/pJCE)中的过表达,L-精氨酸的产量提高了 13.6%,达到 35.9g/L,而菌株 SYPA/pJCO 的 L-精氨酸产量几乎没有变化。因此,我们成功获得了一种突变形式的 LysE,它可以降低 C. crenatum SYPA 中 L-精氨酸的胞内浓度,并且发现携带 lysE 的 C. crenatum 的 L-精氨酸产量得到了提高。这些结果表明,在 C. crenatum 中,参与 L-精氨酸分泌的因素(lysE)对于其过量生产非常重要。

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