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球形芽孢杆菌二元毒素成分之间的相互作用:复合物形成分析。

Interaction between mosquito-larvicidal Lysinibacillus sphaericus binary toxin components: analysis of complex formation.

机构信息

High Pressure & Synchrotron Radiation Physics Division, Bhabha Atomic Research Centre, Mumbai 400085, India.

出版信息

Insect Biochem Mol Biol. 2013 Nov;43(11):1045-54. doi: 10.1016/j.ibmb.2013.07.011. Epub 2013 Aug 22.

Abstract

The two components (BinA and BinB) of Lysinibacillus sphaericus binary toxin together are highly toxic to Culex and Anopheles mosquito larvae, and have been employed world-wide to control mosquito borne diseases. Upon binding to the membrane receptor an oligomeric form (BinA2.BinB2) of the binary toxin is expected to play role in pore formation. It is not clear if these two proteins interact in solution as well, in the absence of receptor. The interactions between active forms of BinA and BinB polypeptides were probed in solution using size-exclusion chromatography, pull-down assay, surface plasmon resonance, circular dichroism, and by chemically crosslinking BinA and BinB components. We demonstrate that the two proteins interact weakly with first association and dissociation rate constants of 4.5×10(3) M(-1) s(-1) and 0.8 s(-1), resulting in conformational change, most likely, in toxic BinA protein that could kinetically favor membrane translocation of the active oligomer. The weak interactions between the two toxin components could be stabilized by glutaraldehyde crosslinking. The cross-linked complex, interestingly, showed maximal Culex larvicidal activity (LC50 value of 1.59 ng mL(-1)) reported so far for combination of BinA/BinB components, and thus is an attractive option for development of new bio-pesticides for control of mosquito borne vector diseases.

摘要

球形芽孢杆菌二元毒素的两个组成部分(BinA 和 BinB)共同对库蚊和按蚊幼虫具有高度毒性,已在全球范围内用于控制蚊媒疾病。在与膜受体结合后,二元毒素的寡聚形式(BinA2.BinB2)有望在孔形成中发挥作用。目前尚不清楚在没有受体的情况下,这两种蛋白质是否也能在溶液中相互作用。使用凝胶过滤层析、下拉测定、表面等离子体共振、圆二色性和化学交联 BinA 和 BinB 成分,在溶液中探测了活性形式的 BinA 和 BinB 多肽之间的相互作用。我们证明两种蛋白质以弱相互作用结合,第一缔合和解离速率常数分别为 4.5×10(3) M(-1) s(-1) 和 0.8 s(-1),导致构象变化,很可能是在有毒的 BinA 蛋白中,这可能在动力学上有利于活性寡聚体的膜易位。两种毒素成分之间的弱相互作用可以通过戊二醛交联稳定。有趣的是,交联复合物表现出迄今为止报道的 BinA/BinB 成分组合的最大库蚊幼虫致死活性(LC50 值为 1.59ng mL(-1)),因此是开发新的生物农药以控制蚊媒传播疾病的有吸引力的选择。

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