首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Structural and functional studies of α-helix 5 region from Bacillus thuringiensis CrylAb δ-endotoxin
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Structural and functional studies of α-helix 5 region from Bacillus thuringiensis CrylAb δ-endotoxin

机译:苏云金芽孢杆菌CrylAbδ-内毒素α-螺旋5区的结构和功能研究

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摘要

The crystal insecticidal proteins from Bacillus thuringiensis are modular proteins comprised of three domains connected by single linkers. Domain I is a seven α-helix bundle, which has been involved in membrane insertion and pore formation activity. Site-directed mutagenesis has contributed to identify regions that might play an important role in the structure of the pore-forming domain within the membrane. There are several evidences that support that the hairpin α4-α5 inserts into the membrane in an antiparallel manner, while other helices lie on the membrane surface. We hypothesized that highly conserved residues of α5 could play an important role in toxin insertion, oligomerization and/or pore formation. A total of 15 Cry1Ab mutants located in six conserved residues of CrylAb, Y153, Y161, H168, R173, W182 and G183, were isolated. Eleven mutants were located within helix α5, one mutant was located in the loop α45-α5 and three mutants, W182P, W182I and G183C, were located in the loop α5-α6. Their effect on binding, K~+ permeability and toxicity against Manduca sexta larvae was analyzed and compared. The results provide direct evidence that some residues located within α5 have an important role in stability of the toxin within the insect gut, while some others also have an important role in pore formation. The results also provide evidence that conserved residues within helix α5 are not involved in oligomer formation since mutations in these residues are able to make pores in vitro.
机译:苏云金芽孢杆菌的晶体杀虫蛋白是模块化蛋白,由通过单个接头连接的三个结构域组成。域I是七个α-螺旋束,已参与膜插入和孔形成活性。定点诱变已有助于鉴定在膜内成孔域结构中可能起重要作用的区域。有几项证据支持发夹α4-α5以反平行的方式插入膜中,而其他螺旋位于膜表面。我们假设高度保守的α5残基可能在毒素插入,寡聚和/或孔形成中起重要作用。共有15个Cry1Ab突变体位于CrylAb,Y153,Y161,H168,R173,W182和G183的六个保守残基中。 11个突变体位于螺旋α5内,一个突变体位于环α45-α5中,三个突变体W182P,W182I和G183C位于环α5-α6中。分析并比较了它们对结合力,钾离子渗透性和对六倍体曼氏a幼虫的毒性的影响。结果提供了直接的证据,表明位于α5内的某些残基在昆虫肠道内毒素的稳定性中起重要作用,而另一些残基在孔形成中也起重要作用。该结果还提供了证据,即螺旋α5内的保守残基不参与寡聚物形成,因为这些残基中的突变能够在体外形成孔。

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