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昆虫杀虫晶体蛋白 Vip3A 毒素 C 末端片段的结构与功能研究

Structural and Functional Insights into the C-terminal Fragment of Insecticidal Vip3A Toxin of .

机构信息

State Key Laboratory of Microbial Technology, Shandong University, Qingdao 266237, China.

Helmholtz International Lab, Shandong University, Qingdao 266237, China.

出版信息

Toxins (Basel). 2020 Jul 5;12(7):438. doi: 10.3390/toxins12070438.

Abstract

The vegetative insecticidal proteins (Vips) secreted by are regarded as the new generation of insecticidal toxins because they have different insecticidal properties compared with commonly applied insecticidal crystal proteins (Cry toxins). Vip3A toxin, representing the vast majority of Vips, has been used commercially in transgenic crops and bio-insecticides. However, the lack of both structural information on Vip3A and a clear understanding of its insecticidal mechanism at the molecular level limits its further development and broader application. Here we present the first crystal structure of the C-terminal fragment of Vip3A toxin (Vip3Aa11). Since all members of this insecticidal protein family are highly conserved, the structure of Vip3A provides unique insight into the general domain architecture and protein fold of the Vip3A family of insecticidal toxins. Our structural analysis reveals a four-domain organization, featuring a potential membrane insertion region, a receptor binding domain, and two potential glycan binding domains of Vip3A. In addition, cytotoxicity assays and insect bioassays show that the purified C-terminal fragment of Vip3Aa toxin alone have no insecticidal activity. Taken together, these findings provide insights into the mode of action of the Vip3A family of insecticidal toxins and will boost the development of Vip3A into more efficient bio-insecticides.

摘要

由 分泌的植物源杀虫蛋白(Vip)被认为是新一代杀虫毒素,因为它们与常用的杀虫晶体蛋白(Cry 毒素)相比具有不同的杀虫特性。Vip3A 毒素代表了绝大多数的 Vip,已被商业化应用于转基因作物和生物杀虫剂。然而,由于缺乏 Vip3A 的结构信息,以及对其在分子水平上杀虫机制的清晰认识,限制了其进一步的发展和更广泛的应用。在这里,我们首次展示了 Vip3A 毒素 C 端片段(Vip3Aa11)的晶体结构。由于该杀虫蛋白家族的所有成员都高度保守,因此该结构为 Vip3A 家族杀虫毒素的一般结构域架构和蛋白折叠提供了独特的见解。我们的结构分析揭示了一个四结构域的组织,具有一个潜在的膜插入区、一个受体结合域和两个潜在的聚糖结合域。此外,细胞毒性测定和昆虫生物测定表明,Vip3Aa 毒素的纯化 C 端片段本身没有杀虫活性。总之,这些发现为 Vip3A 家族杀虫毒素的作用模式提供了新的见解,并将促进 Vip3A 成为更有效的生物杀虫剂的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ba9/7404976/f81ca8c380db/toxins-12-00438-g001.jpg

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