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Structural changes upon membrane insertion of the insecticidal pore-forming toxins produced by Bacillus thuringiensis

Sabino Pacheco 1
Isabel Gómez 1
Angel E. Peláez-Aguilar 1
Luis A Verduzco Rosas 1
Rosalina García Suárez 1
Nathaly A. do Nascimento 1
Lucero Y. Rivera-Nájera 1
Pablo Emiliano Cantón 1
Mario Soberón 1
Alejandra Bravo 1
Publication typeJournal Article
Publication date2023-04-26
scimago Q1
wos Q1
SJR0.736
CiteScore3.8
Impact factor3.0
ISSN26738600
General Medicine
Abstract

Different Bacillus thuringiensis (Bt) strains produce a broad variety of pore-forming toxins (PFTs) that show toxicity against insects and other invertebrates. Some of these insecticidal PFT proteins have been used successfully worldwide to control diverse insect crop pests. There are several studies focused on describing the mechanism of action of these toxins that have helped to improve their performance and to cope with the resistance evolved by different insects against some of these proteins. However, crucial information that is still missing is the structure of pores formed by some of these PFTs, such as the three-domain crystal (Cry) proteins, which are the most commercially used Bt toxins in the biological control of insect pests. In recent years, progress has been made on the identification of the structural changes that certain Bt insecticidal PFT proteins undergo upon membrane insertion. In this review, we describe the models that have been proposed for the membrane insertion of Cry toxins. We also review the recently published structures of the vegetative insecticidal proteins (Vips; e.g. Vip3) and the insecticidal toxin complex (Tc) in the membrane-inserted state. Although different Bt PFTs show different primary sequences, there are some similarities in the three-dimensional structures of Vips and Cry proteins. In addition, all PFTs described here must undergo major structural rearrangements to pass from a soluble form to a membrane-inserted state. It is proposed that, despite their structural differences, all PFTs undergo major structural rearrangements producing an extended α-helix, which plays a fundamental role in perforating their target membrane, resulting in the formation of the membrane pore required for their insecticidal activity.

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GOST Copy
Pacheco S. et al. Structural changes upon membrane insertion of the insecticidal pore-forming toxins produced by Bacillus thuringiensis // Frontiers in Insect Science. 2023. Vol. 3.
GOST all authors (up to 50) Copy
Pacheco S., Gómez I., Peláez-Aguilar A. E., Verduzco Rosas L. A., García Suárez R., do Nascimento N. A., Rivera-Nájera L. Y., Cantón P. E., Soberón M., Bravo A. Structural changes upon membrane insertion of the insecticidal pore-forming toxins produced by Bacillus thuringiensis // Frontiers in Insect Science. 2023. Vol. 3.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.3389/finsc.2023.1188891
UR - https://doi.org/10.3389/finsc.2023.1188891
TI - Structural changes upon membrane insertion of the insecticidal pore-forming toxins produced by Bacillus thuringiensis
T2 - Frontiers in Insect Science
AU - Pacheco, Sabino
AU - Gómez, Isabel
AU - Peláez-Aguilar, Angel E.
AU - Verduzco Rosas, Luis A
AU - García Suárez, Rosalina
AU - do Nascimento, Nathaly A.
AU - Rivera-Nájera, Lucero Y.
AU - Cantón, Pablo Emiliano
AU - Soberón, Mario
AU - Bravo, Alejandra
PY - 2023
DA - 2023/04/26
PB - Frontiers Media S.A.
VL - 3
PMID - 38469496
SN - 2673-8600
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2023_Pacheco,
author = {Sabino Pacheco and Isabel Gómez and Angel E. Peláez-Aguilar and Luis A Verduzco Rosas and Rosalina García Suárez and Nathaly A. do Nascimento and Lucero Y. Rivera-Nájera and Pablo Emiliano Cantón and Mario Soberón and Alejandra Bravo},
title = {Structural changes upon membrane insertion of the insecticidal pore-forming toxins produced by Bacillus thuringiensis},
journal = {Frontiers in Insect Science},
year = {2023},
volume = {3},
publisher = {Frontiers Media S.A.},
month = {apr},
url = {https://doi.org/10.3389/finsc.2023.1188891},
doi = {10.3389/finsc.2023.1188891}
}