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Bacillus thuringiensis cry toxin triggers autophagy activity that may enhance cell death.

Authors :
Yang, Yongbo
Huang, Xiaoying
Yuan, Wanli
Xiang, Yang
Guo, Xueqin
Wei, Wei
Soberón, Mario
Bravo, Alejandra
Liu, Kaiyu
Source :
Pesticide Biochemistry & Physiology. Jan2021, Vol. 171, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

Although it is well known that Bacillus thuringiensis Cry toxins kill insect pest by disrupting midgut cells of susceptible larvae through their pore formation activity, it is not clear what intracellular events are triggered after pore formation on the cell membrane of the target cells. Here we analyzed the role of Cry toxins on autophagy activation using several cell lines as models as well as in Helicoverpa armigera larvae. The selected insect cell lines (Hi5, Sl-HP and Sf9) were susceptible to activated Cry1Ca toxin, but only Sl-HP cells were also susceptible to activated Cry1Ac toxin. In contrast, the mammalian cell line 293 T was not susceptible to Cry1Ac or to Cry1Ca. Results show that Cry toxins induced autophagy only in the susceptible cell lines as shown by the analysis of the changes in the ratio of Atg8-PE to Atg8 and by formation of autophagosome dots containing Atg8-PE. The Cry1Ac enhanced autophagy in the midgut tissue of H. armigera larvae. Silencing expression of specific genes by RNAi assays confirmed that the autophagy induced by activated Cry toxins was dependent on AMPK and JNK pathways. Finally, inhibition of autophagy in the cell lines by specific inhibitors or RNAi assays resulted in delayed cell death triggered by Cry toxins, suggesting that the increased autophagy activity observed after toxin intoxication may contribute to cell death. Unlabelled Image • Bacillus thuringiensis crystal toxins could induce the increase of autophagy activity in toxin-susceptible insect cell lines, not tolerant cell lines. • The toxins also promoted autophagy activity in midgut of Helicoverpa armigera. • RNAi of autophagy-related genes and inhibitors could inhibit autophagy triggered by the toxins. • Inhibition of autophagy triggered by the toxins may delay cell death. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00483575
Volume :
171
Database :
Academic Search Index
Journal :
Pesticide Biochemistry & Physiology
Publication Type :
Academic Journal
Accession number :
147718161
Full Text :
https://doi.org/10.1016/j.pestbp.2020.104728