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Developing a new production host from a blueprint: Bacillus pumilus as an industrial enzyme producer

机译:根据蓝图开发新的生产宿主:短小芽孢杆菌作为工业酶生产商

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Background Since volatile and rising cost factors such as energy, raw materials and market competitiveness have a significant impact on the economic efficiency of biotechnological bulk productions, industrial processes need to be steadily improved and optimized. Thereby the current production hosts can undergo various limitations. To overcome those limitations and in addition increase the diversity of available production hosts for future applications, we suggest a Production Strain Blueprinting (PSB) strategy to develop new production systems in a reduced time lapse in contrast to a development from scratch. To demonstrate this approach, Bacillus pumilus has been developed as an alternative expression platform for the production of alkaline enzymes in reference to the established industrial production host Bacillus licheniformis. Results To develop the selected B. pumilus as an alternative production host the suggested PSB strategy was applied proceeding in the following steps (dedicated product titers are scaled to the protease titer of Henkel’s industrial production strain B. licheniformis at lab scale): Introduction of a protease production plasmid, adaptation of a protease production process (44%), process optimization (92%) and expression optimization (114%). To further evaluate the production capability of the developed B. pumilus platform, the target protease was substituted by an α-amylase. The expression performance was tested under the previously optimized protease process conditions and under subsequently adapted process conditions resulting in a maximum product titer of 65% in reference to B. licheniformis protease titer. Conclusions In this contribution the applied PSB strategy performed very well for the development of B. pumilus as an alternative production strain. Thereby the engineered B. pumilus expression platform even exceeded the protease titer of the industrial production host B. licheniformis by 14%. This result exhibits a remarkable potential of B. pumilus to be the basis for a next generation production host, since the strain has still a large potential for further genetic engineering. The final amylase titer of 65% in reference to B. licheniformis protease titer suggests that the developed B. pumilus expression platform is also suitable for an efficient production of non-proteolytic enzymes reaching a final titer of several grams per liter without complex process modifications.
机译:背景技术由于诸如能源,原材料和市场竞争力之类的波动和不断上涨的成本因素对生物技术大宗产品的经济效率具有重大影响,因此需要稳步改进和优化工业流程。因此,当前的生产主机可能受到各种限制。为了克服这些限制,并增加将来的应用程序可用的生产主机的多样性,我们建议采用生产应变蓝图(PSB)策略来开发新的生产系统,与从头开始的开发相比,它可以减少时间流逝。为了证明这种方法,已经参照已建立的工业生产宿主地衣芽孢杆菌,开发了短小芽孢杆菌作为生产碱性酶的替代表达平台。结果为了开发所选的短双歧杆菌作为替代生产宿主,在以下步骤中应用了建议的PSB策略(在实验室规模下,将专用产品滴度定为汉高工业生产菌株地衣芽孢杆菌的蛋白酶滴度):蛋白酶生产质粒,蛋白酶生产过程的适应性(44%),过程优化(92%)和表达优化(114%)。为了进一步评估已开发的短小芽孢杆菌平台的生产能力,将目标蛋白酶替换为α-淀粉酶。在先前优化的蛋白酶加工条件下和在随后适应的加工条件下测试表达性能,结果相对于地衣芽孢杆菌蛋白酶滴度,最大产品滴度为65%。结论在这项贡献中,所应用的PSB策略对于作为替代生产菌株的短小芽孢杆菌的发展非常有效。因此,工程化的短小芽孢杆菌表达平台甚至超过了工业生产宿主地衣芽孢杆菌的蛋白酶滴度达14%。该结果显示出短小芽孢杆菌作为下一代生产宿主的基础的显着潜力,因为该菌株仍具有用于进一步基因工程的巨大潜力。相对于地衣芽孢杆菌蛋白酶效价而言,最终淀粉酶滴度为65%,这表明开发的短小芽孢杆菌表达平台也适合有效生产非蛋白水解酶,最终滴度为数克/升,而无需进行复杂的工艺修饰。

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