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首页> 外文期刊>Biochemistry >Molecular Basis for Bacillus thuringiensis Cry1Ab Toxin Specificity: Two Structural Determinants in the Manduca sexta Bt-R(1) Receptor Interact with Loops alpha-8 and 2 in Domain II of Cy1Ab Toxin.
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Molecular Basis for Bacillus thuringiensis Cry1Ab Toxin Specificity: Two Structural Determinants in the Manduca sexta Bt-R(1) Receptor Interact with Loops alpha-8 and 2 in Domain II of Cy1Ab Toxin.

机译:芽孢杆菌的分子基因Cry1ab毒素特异性:Manduca Sexta BT-R(1)受体中的两个结构决定因子与Cy1ab毒素结构域II的α-8和2之间相互作用。

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摘要

The identification of epitopes involved in Cry toxin-receptor interaction could provide insights into the molecular basis of insect specificity and for designing new toxins to overcome the potential problem of insect resistance. In previous works, we determined that the Manduca sexta Cry1A cadherin-like receptor (Bt-R(1)) interacts with Cry1A toxins through epitope (865)NITIHITDTNN(875) and by loop 2 of domain II in the toxin (Gomez, I., Miranda-Rios, J., Rudino-Pinera, E., Oltean, D. I., Gill, S. S., Bravo, A., and Soberon, M. (2002) J. Biol. Chem. 277, 30137-30143.). In this work, we narrowed to 12 amino acids a previously identified Bt-R(1) 66 amino acids epitope (Dorsch, J. A., Candas, M., Griko, N. B., Maaty, W. S. A., Midbo, E. G., Vadlamudi, R. K., and Bulla, L. A., Jr. (2002) Insect Biochem. Mol. Biol. 32, 1025-1036) and identified loop alpha-8 of Cry1Ab domain II as its cognate binding epitope. Two amino acid Bt-R(1) toxin binding regions of 70 residues, one comprised of residues 831-900 containing the (865)NITIHITDTNN(875) epitope (TBR1) and the other comprised of residues 1291-1360 (TBR2) were cloned by RT-PCR and produced in Escherichia coli. Cry1A toxins bind with the two TBR regions in contrast with the nontoxic Cry3A toxin. The loop 2 synthetic peptide competed with the binding of Cry1Ab toxin to both TBR regions in contrast to the alpha-8 synthetic peptide that only competed with Cry1Ab binding to TBR2. Western blots and competition ELISA analysis showed that the Cry1Ab loop 2 RR368-9EE mutant did not show observable binding to TBR1 but still bound the TBR2 peptide. This result suggests that loop alpha-8 interacts with the TBR2 region. Competition ELISA analysis of Cry1Ab binding to the two TBR peptides revealed that the toxin binds the TBR1 region with 6-fold higher affinity than the TBR2 region. The amino acid sequence of TBR2 involved on Cry1Ab interaction was narrowed to 12 amino acids, (1331)IPLPASILTVTV(1342), by using synthetic peptides as competitors for Cry1Ab binding to Bt-R(1). Our results show that the specificity of Cry1A involves at least two structural determinants on both molecules.
机译:诱导毒素受体相互作用的表位的鉴定可以为昆虫特异性的分子基础提供见解,并设计新的毒素以克服昆虫抗性的潜在问题。在以前的作品中,我们确定了Manduca sexta cry1a cadherin的受体(bt-r(1))与Cry1a毒素通过表位(865)Nitihitdtnn(875)和毒素中的结构域II的环2相互作用(Gomez,i 。,Miranda-Rios,J.,Rudino-Pinera,E.,Oltean,Di,Gill,SS,Bravo,A.和Soberon,M.(2002)J. Biol。化学。277,30137-30143。) 。在这项工作中,我们缩小到12个氨基酸的先前鉴定的BT-R(1)66氨基酸表位(含量,Giko,Ja,Candas,M.,Griko,Nb,哈马蒂,WSA,Midbo,例如Vadlamudi,RK和Bulla,La,Jr.(2002)昆虫生物化学。摩洛。Biol.2,1025-1036)并将Cry1ab Domain II的鉴定的环α-8作为其同源结合表位。克隆了70个残基的毒素结合区域70个残基,其中包含(865)尼希特DTNN(875)表位(TBR1)的残基831-900组成,其中包含残基1291-1360(TBR2)通过RT-PCR并在大肠杆菌中生产。 Cry1a毒素与两种TBR区域与无毒Cry3a毒素相比。与仅与TBR2竞争的α-8合成肽相比,环2合成肽与Cry1ab毒素与Cry1ab毒素的结合竞争。 Western印迹和竞争ELISA分析表明,Cry1ab回路2 RR368-9EE突变体未显示出可观察到的TBR1结合,但仍然结合TBR2肽。该结果表明,循环alpha-8与TBR2区域相互作用。 Cry1ab与两种TBR肽结合的竞争ELISA分析表明,毒素与TBR2区域具有6倍的TBR1区域结合。通过使用合成肽作为Cry1ab结合到BT-R(1)的竞争对手,将Cry1ab相互作用涉及的TBR2的氨基酸序列变窄至12个氨基酸,(1331)IPLPASILTVTV(1342)。我们的结果表明,Cry1a的特异性涉及两个分子上的至少两个结构决定簇。

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