Structural and functional insights into the first Bacillus thuringiensis vegetative insecticidal protein of the Vpb4 fold, active against western corn rootworm

Author:

Kouadio Jean-LouisORCID,Zheng Meiying,Aikins Michael,Duda David,Duff Stephen,Chen Danqi,Zhang Jun,Milligan JasonORCID,Taylor ChristinaORCID,Mamanella Patricia,Rydel Timothy,Kessenich ColtonORCID,Panosian Timothy,Yin Yong,Moar William,Giddings Kara,Park Yoonseong,Jerga AgostonORCID,Haas Jeffrey

Abstract

The western corn rootworm (WCR), Diabrotica virgifera virgifera LeConte, is a major maize pest in the United States causing significant economic loss. The emergence of field-evolved resistant WCR to Bacillus thuringiensis (Bt) traits has prompted the need to discover and deploy new insecticidal proteins in transgenic maize. In the current study we determined the crystal structure and mode of action (MOA) of the Vpb4Da2 protein (formerly known as Vip4Da2) from Bt, the first identified insecticidal Vpb4 protein with commercial level control against WCR. The Vpb4Da2 structure exhibits a six-domain architecture mainly comprised of antiparallel β-sheets organized into β-sandwich layers. The amino-terminal domains 1–3 of the protein share structural homology with the protective antigen (PA) PA14 domain and encompass a long β-pore forming loop as in the clostridial binary-toxB module. Domains 5 and 6 at the carboxyl-terminal half of Vpb4Da2 are unique as this extension is not observed in PA or any other structurally-related protein other than Vpb4 homologs. These unique Vpb4 domains adopt the topologies of carbohydrate-binding modules known to participate in receptor-recognition. Functional assessment of Vpb4Da2 suggests that domains 4–6 comprise the WCR receptor binding region and are key in conferring the observed insecticidal activity against WCR. The current structural analysis was complemented by in vitro and in vivo characterizations, including immuno-histochemistry, demonstrating that Vpb4Da2 follows a MOA that is consistent with well-characterized 3-domain Bt insecticidal proteins despite significant structural differences.

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference75 articles.

1. Environmental impacts of genetically modified (GM) crop use 1996–2018: impacts on pesticide use and carbon emissions;G Brookes;GM Crops & Food,2020

2. Adaptation and Invasiveness of Western Corn Rootworm: Intensifying Research on a Worsening Pest;ME Gray;Annual Review of Entomology,2009

3. Has Resistance Taken Root in U.S. Corn Fields? Demand for Insect Control;S Wechsler;American Journal of Agricultural Economics,2018

4. Management of Diabroticite Rootworms in Corn;E Levine;Annual Review of Entomology,1991

5. Insect-resistant transgenic plants;LH English,2000

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