首页> 外文期刊>Journal of Structural Biology >Crystal structure of Bacillus thuringiensis Cry8Ea1: An insecticidal toxin toxic to underground pests, the larvae of Holotrichia parallela.
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Crystal structure of Bacillus thuringiensis Cry8Ea1: An insecticidal toxin toxic to underground pests, the larvae of Holotrichia parallela.

机译:苏云金芽孢杆菌Cry8Ea1的晶体结构:一种对地下害虫有毒的毒素,对平行发霍特氏菌的幼虫有毒。

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摘要

Crystal (Cry) proteins belong to an insect toxin family encoded and expressed by a variety of Bacillus thuringiensis isolates, and are named due to their in vivo auto-crystallization abilities. To kill the infected host insects, protease-activated Cry toxins should firstly be recognized by certain membrane receptors on the surface of insect midgut epithelial cells and consequently assemble together as lethal transmembrane pores. Here we report the 2.2-A crystal structure of Cry8Ea1 toxin, a Cry family member specifically toxic to the underground larvae of Holotrichia parallela. Superimposition of the domain I from Cry8Ea1 and other structurally characterized Cry toxins reveals an identical surface proline residue and a highly conserved kink of a helix, both of which have drawn comparatively little attention from previous researchers. Further structural analysis and functional studies suggest that both the proline and the helix kink might be essential in exposing a helix-helix hairpin, which is believed to be the very first step in the well-known "umbrella" model of the membrane penetration. In summary, we propose a plausible model of the initiation of Cry toxin domain I disassembly before membrane penetration and pore formation.
机译:晶体(Cry)蛋白属于昆虫毒素家族,由多种苏云金芽胞杆菌分离株编码和表达,并因其体内自结晶能力而得名。为了杀死受感染的宿主昆虫,首先应通过昆虫中肠上皮细胞表面的某些膜受体识别蛋白酶激活的Cry毒素,然后将其组装成致命的跨膜孔。在这里,我们报告了Cry8Ea1毒素的2.2-A晶体结构,该Cry8Ea1毒素是一种对Holotrichia parallela地下幼虫特别有毒的Cry家族成员。来自Cry8Ea1的结构域I和其他具有结构特征的Cry毒素的叠加显示出相同的表面脯氨酸残基和高度保守的螺旋扭结,这两种方法都没有引起以前研究人员的关注。进一步的结构分析和功能研究表明,脯氨酸和螺旋扭结在暴露螺旋-螺旋发夹中可能都是必不可少的,这被认为是众所周知的“膜穿透”“伞”模型的第一步。总之,我们提出了在膜渗透和孔形成之前Cry毒素结构域I分解启动的合理模型。

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