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SigB 失活对谷氨酸棒杆菌蛋白分泌的影响。

Influence of SigB inactivation on Corynebacterium glutamicum protein secretion.

机构信息

Microbiology Research Group, Research Institute of Innovative Technology for the Earth (RITE), 9-2, Kizugawadai, Kizugawa, Kyoto 619-0292, Japan.

出版信息

Appl Microbiol Biotechnol. 2013 Jun;97(11):4917-26. doi: 10.1007/s00253-012-4586-y. Epub 2012 Nov 24.

Abstract

The non-essential Corynebacterium glutamicum sigma factor, sigB, modulates global gene expression during the transition from exponential growth to the stationary phase. Utilizing a signal peptide derived from C. glutamicum R CgR_0949, a sigB disruption mutant able to secrete 3- to 5-fold more green fluorescence protein (GFP) and α-amylase than the wild type strain was isolated. The signal peptide selectively enabled the mutant to produce greater amounts of both proteins, which were in turn secreted in culture medium in greater quantities than previously acknowledged. A peak GFP productivity of 2.8 g/l was attained, representing the highest GFP productivity reported in C. glutamicum to date. CgR_0949 signal sequence length (30 residues), type (Tat) or the target protein identity (GFP or α-amylase) had no measurable effect on the magnitude of the protein accumulation and consequent secretion. It therefore follows that actual experimentation remains the fastest way to identify suitable signal sequences in C. glutamicum. More secretion studies may reveal even greater secretion productivity by C. glutamicum and consequently present an attractive avenue to further enhance the utility of C. glutamicum as an industrial workhorse.

摘要

非必需的谷氨酸棒杆菌σ因子 sigB 在指数生长向稳定期的转变过程中调节全局基因表达。利用来源于谷氨酸棒杆菌 R CgR_0949 的信号肽,分离出了一种 sigB 缺失突变体,该突变体能比野生型菌株分泌 3 到 5 倍的绿色荧光蛋白(GFP)和α-淀粉酶。该信号肽选择性地使突变体能够产生更多的两种蛋白质,这两种蛋白质反过来又以比以前公认的更多的量分泌到培养基中。达到了 2.8 g/l 的 GFP 最高生产力,这是迄今为止在谷氨酸棒杆菌中报道的最高 GFP 生产力。CgR_0949 信号序列长度(30 个残基)、类型(Tat)或靶蛋白身份(GFP 或α-淀粉酶)对蛋白质积累和随后的分泌的大小没有可衡量的影响。因此,实际实验仍然是在谷氨酸棒杆菌中鉴定合适信号序列的最快方法。更多的分泌研究可能会揭示出谷氨酸棒杆菌更高的分泌生产力,从而为进一步增强谷氨酸棒杆菌作为工业主力军的实用性提供了一个有吸引力的途径。

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