Mutational analysis of the transmembrane α4-helix of Bacillus thuringiensis mosquito-larvicidal Cry4Aa toxin

被引:0
|
作者
Hirokazu Takahashi
Mami Asakura
Toru Ide
Tohru Hayakawa
机构
[1] Okayama University,Graduate School of Interdisciplinary Science and Engineering in Health Systems
来源
Current Microbiology | 2024年 / 81卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Cry4Aa, produced by Bacillus thuringiensis subsp. israelensis, exhibits specific toxicity to larvae of medically important mosquito genera. Cry4Aa functions as a pore-forming toxin, and a helical hairpin (α4-loop-α5) of domain I is believed to be the transmembrane domain that forms toxin pores. Pore formation is considered to be a central mode of Cry4Aa action, but the relationship between pore formation and toxicity is poorly understood. In the present study, we constructed Cry4Aa mutants in which each polar amino acid residues within the transmembrane α4 helix was replaced with glutamic acid. Bioassays using Culex pipiens mosquito larvae and subsequent ion permeability measurements using symmetric KCl solution revealed an apparent correlation between toxicity and toxin pore conductance for most of the Cry4Aa mutants. In contrast, the Cry4Aa mutant H178E was a clear exception, almost losing its toxicity but still exhibiting a moderately high conductivity of about 60% of the wild-type. Furthermore, the conductance of the pore formed by the N190E mutant (about 50% of the wild-type) was close to that of H178E, but the toxicity was significantly higher than that of H178E. Ion selectivity measurements using asymmetric KCl solution revealed a significant decrease in cation selectivity of toxin pores formed by H178E compared to N190E. Our data suggest that the toxicity of Cry4Aa is primarily pore related. The formation of toxin pores that are highly ion-permeable and also highly cation-selective may enhance the influx of cations and water into the target cell, thereby facilitating the eventual death of mosquito larvae.
引用
收藏
相关论文
共 50 条
  • [1] Mutational analysis of the transmembrane α4-helix of Bacillus thuringiensis mosquito-larvicidal Cry4Aa toxin
    Takahashi, Hirokazu
    Asakura, Mami
    Ide, Toru
    Hayakawa, Tohru
    CURRENT MICROBIOLOGY, 2024, 81 (03)
  • [2] Characteristics of channel pores formed by Bacillus thuringiensis mosquito-larvicidal Cry4Aa toxin
    Yuri Shiraishi
    Tomoya Shiozaki
    Mami Asakura
    Toru Ide
    Tohru Hayakawa
    Applied Entomology and Zoology, 2022, 57 : 63 - 70
  • [3] Characteristics of channel pores formed by Bacillus thuringiensis mosquito-larvicidal Cry4Aa toxin
    Shiraishi, Yuri
    Shiozaki, Tomoya
    Asakura, Mami
    Ide, Toru
    Hayakawa, Tohru
    APPLIED ENTOMOLOGY AND ZOOLOGY, 2022, 57 (01) : 63 - 70
  • [4] Crystallization and preliminary crystallographic study of the functional form of the Bacillus thuringiensis mosquito-larvicidal Cry4Aa mutant toxin
    Boonserm, P
    Angsuthanasombat, C
    Lescar, J
    ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2004, 60 : 1315 - 1318
  • [5] Structure of the functional form of the mosquito larvicidal Cry4Aa toxin from Bacillus thuringiensis at a 2.8-Angstrom resolution
    Boonserm, P
    Mo, M
    Angsuthanasombat, C
    Lescar, J
    JOURNAL OF BACTERIOLOGY, 2006, 188 (09) : 3391 - 3401
  • [6] Functional assembly of 260-kDa oligomers required for mosquito-larvicidal activity of the Bacillus thuringiensis Cry4Ba toxin
    Khomkhum, Narumol
    Leetachewa, Somphob
    Angsuthanasombat, Chanan
    Moonsom, Saengduen
    PEPTIDES, 2015, 68 : 183 - 189
  • [7] Bacillus thuringiensis Cry4A and Cry4B mosquito-larvicidal proteins:: Homology-based 3D model and implications for toxin activity
    Angsuthanasombat, C
    Uawithya, P
    Leetachewa, S
    Pornwiroon, W
    Ounjai, P
    Kerdcharoen, T
    Katzenmeier, G
    Panyim, S
    JOURNAL OF BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2004, 37 (03): : 304 - 313
  • [8] Potency of insect-specific scorpion toxins on mosquito control using Bacillus thuringiensis Cry4Aa
    Matsumoto, Riku
    Shimizu, Yoshitaka
    Howlader, Mohammad Tofazzal Hossain
    Namba, Maho
    Iwamoto, Aya
    Sakai, Hiroshi
    Hayakawa, Tohru
    JOURNAL OF BIOSCIENCE AND BIOENGINEERING, 2014, 117 (06) : 680 - 683
  • [9] Comparison and analysis of Cry1Aa, Cry2Aa, Cry3Aa and Cry4Aa of Bacillus thuringiensis toxins with computer
    Zhao Xin-Min
    Xia Li-Qiu
    Wang Fa-Xiang
    Ding Xue-Zhi
    Shan Shi-Ping
    Zhang You-Ming
    ACTA CHIMICA SINICA, 2008, 66 (01) : 108 - 111
  • [10] Redesigning Bacillus thuringiensis Cry1Aa toxin into a mosquito toxin
    Liu, XS
    Dean, DH
    PROTEIN ENGINEERING DESIGN & SELECTION, 2006, 19 (03): : 107 - 111