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首页> 外文期刊>Applied and Environmental Microbiology >Effects of the 20-Kilodalton Helper Protein on Cry1Ac Production and Spore Formation in Bacillus thuringiensis
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Effects of the 20-Kilodalton Helper Protein on Cry1Ac Production and Spore Formation in Bacillus thuringiensis

机译:20-Kiddalton辅助蛋白对苏云金芽孢杆菌Cry1Ac产生和孢子形成的影响

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摘要

Bacillus thuringiensis produces large amounts of various pesticidal proteins during the stationary phase. In order to achieve a high yield and form crystals, some pesticidal proteins require the presence of other proteins. Helper protein P20 is required for efficient production of both the Cyt1A and Cry11A crystal proteins in B. thuringiensis subsp. israelensis. Although full-length Cry1 protoxins are usually independent in terms of expression and crystallization in B. thuringiensis, in this study P20 significantly enhanced production of Cry1Ac protoxin (133 kDa) in an acrystalliferous and plasmid-negative strain. In the presence of P20, the yield of Cry1Ac protoxin increased 2.5-fold, and on average the resulting crystals were 1.85 μm long and 0.85 μm wide, three times the size of the crystals formed in the control lacking P20. Correspondingly, the recombinant strain that coexpressed P20 and Cry1Ac exhibited higher toxicity against Heliothis armigera larvae than the control. Furthermore, serious degradation of Cry1Ac in vivo was observed, which has seldom been reported previously. Actually, most protein was completely degraded during synthesis, and after synthesis about one-third of the expressed protoxins were degraded further before crystallization. In this process, P20 protected only nascent Cry1Ac from degradation, indicating that it acted as a molecular chaperon. In addition, spores were smaller and rounder and had a thinner exosporium layer when they were produced in the presence of P20. In summary, Cry1Ac was severely degraded during synthesis; this degradation was effectively relieved by P20, which resulted in enhanced production. Our results indicated that P20 is an effective tool for optimizing protein production in vivo.
机译:苏云金芽孢杆菌在固定期产生大量的各种杀虫蛋白。为了获得高产量并形成晶体,一些农药蛋白需要存在其他蛋白。苏云金芽孢杆菌亚种中Cyt1A和Cry11A晶体蛋白的高效生产需要辅助蛋白P20。以色列。尽管全长Cry1毒素通常在苏云金芽孢杆菌中的表达和结晶方面是独立的,但在这项研究中,P20显着增强了无结晶质粒阴性菌株中Cry1Ac毒素(133 kDa)的产生。在存在P20的情况下,Cry1Ac毒素的产量增加了2.5倍,平均晶体长1.85μm,宽0.85μm,是缺少P20的对照晶体的三倍。相应地,共表达P20和Cry1Ac的重组菌株对棉铃虫的幼虫显示出比对照更高的毒性。此外,观察到体内Cry1Ac的严重降解,以前很少报道。实际上,大多数蛋白质在合成过程中完全降解,合成后约有三分之一的表达原毒素在结晶前进一步降解。在此过程中,P20仅保护新生的Cry1Ac免受降解,表明它充当分子伴侣。此外,当在P20存在下生产时,孢子更小,更圆,并且孢子囊层更薄。总之,Cry1Ac在合成过程中被严重降解。 P20有效缓解了这种降解,从而提高了产量。我们的结果表明,P20是优化体内蛋白质生产的有效工具。

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