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在选定的苏云金芽孢杆菌宿主中对 Vip3A 进行蛋白质工程改造以实现一致的高蛋白质生产。

Protein Engineering of Vip3A in a Selected Bacillus thuringiensis Host for Consistent High Protein Production.

机构信息

National Center for Genetic Engineering and Biotechnology, National Science and Technology Development Agency, 113 Thailand Science Park, Phahonyothin Road, Khlong Nueng, Khlong Luang, Pathum Thani, 12120, Thailand.

出版信息

Curr Microbiol. 2024 Jun 5;81(7):211. doi: 10.1007/s00284-024-03721-w.

Abstract

This study aimed to obtain reliable high Vip3A production from Bacillus thuringiensis (Bt) by modifying Vip3A to acquire higher thermostability in a suitable host. Bt117 is a great host for Vip3A production due to protein production consistency, low protease activity in culture media, and large amounts of mostly full-length protein, but it produces Vip3A with lower thermostability (Vip3Aa35). The C-terminal region of Bt117 Vip3A was replaced with that of a Vip3A with higher thermostability (Vip3Aa64 from Bt294) to generate the recombinant Bt117-Vip3Aa64-C. Like the parental strain Bt117, this strain expressed mostly full-length protein and exhibited low protease activity and similar protein expression profiles in culture media but retained greater larvicidal activity upon 37 °C storage like Bt294 Vip3Aa64. Importantly, every culture batch of Bt117-Vip3Aa64-C yielded over 200 mg/l Vip3A, which is a notable improvement over the original Vip3Aa64-producing strain Bt294 where 45% of culture batches failed to produce Vip3A at the same level. Successfully, we combined the superior qualities of two Bt strains, Bt294, which produces thermostable Vip3A but at low and inconsistent levels, and Bt117, which produces Vip3A with low thermostability but at consistently high levels. Protein engineering of Vip3A in Bt117 ultimately yielded an improved strain producing a thermostable Vip3A with reliably high protein production.

摘要

本研究旨在通过修饰 Vip3A 以在合适的宿主中获得更高的热稳定性,从而从苏云金芽孢杆菌(Bt)中获得可靠的高 Vip3A 产量。Bt117 是生产 Vip3A 的理想宿主,因为其蛋白产量稳定、培养基中蛋白酶活性低且大量产生全长蛋白,但它产生的 Vip3A 热稳定性较低(Vip3Aa35)。Bt117 Vip3A 的 C 末端区域被具有更高热稳定性的 Vip3A(Bt294 中的 Vip3Aa64)所取代,从而生成重组 Bt117-Vip3Aa64-C。与亲本菌株 Bt117 一样,该菌株主要表达全长蛋白,且在培养基中表现出低蛋白酶活性和相似的蛋白表达谱,但在 37°C 储存时仍保留了与 Bt294 Vip3Aa64 相似的更大杀虫活性。重要的是,Bt117-Vip3Aa64-C 的每批培养物都产生超过 200mg/L 的 Vip3A,这比原始生产 Vip3Aa64 的菌株 Bt294 有显著提高,在相同水平下,Bt294 的 45%的培养物批次未能产生 Vip3A。我们成功地将两种 Bt 菌株的优良特性结合起来,Bt294 产生热稳定的 Vip3A,但产量低且不稳定,而 Bt117 则产生热稳定性低但产量稳定的 Vip3A。Bt117 中 Vip3A 的蛋白质工程最终产生了一种改良的菌株,能够稳定地产生高产量的热稳定 Vip3A。

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