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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Importance of polarity of the alpha 4-alpha 5 loop residue-Asn(166) in the pore-forming domain of the Bacillus thuringiensis Cry4Ba toxin: Implications for ion permeation and pore opening
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Importance of polarity of the alpha 4-alpha 5 loop residue-Asn(166) in the pore-forming domain of the Bacillus thuringiensis Cry4Ba toxin: Implications for ion permeation and pore opening

机译:α4-α5环残留物-ASN(166)在Bacillus thuringiensis Cry4Ba毒素的孔形成结构域中的极性的重要性:对离子渗透和孔隙开口的影响

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Bacillus thuringiensis Cry4Ba toxin is lethal to mosquito-larvae by forming ion-permeable pores in the target midgut cell membrane. Previously, the polarity of Asn(166) located within the alpha 4-alpha 5 loop composing the Cry4Ba pore-forming domain was shown to be crucial for larvicidal activity. Here, structurally stable-mutant toxins of both larvicidal-active (N166D) and inactive (N166A and N1661) mutants were FPLC-purified and characterized for their relative activities in liposornal similar to membrane permeation and single-channel formation. Similar to the 65-kDa trypsin-activated wild-type toxin, the N166D bio-active mutant toxin was still capable of releasing entrapped calcein from lipid vesicles. Conversely, the two other bio-inactive mutants showed a dramatic decrease in causing membrane permeation. When the N166D mutant was incorporated into planar lipid bilayers (under symmetrical conditions at 150 mM KCl, pH 8.5), it produced single-channel currents with a maximum conductance of about 425 pS comparable to the wild-type toxin. However, maximum conductances for single K+-channels formed by both bio-inactive mutants (N1661 and N166A) were reduced to approximately 165-205 pS. Structural dynamics of 60-ns simulations of a trimeric alpha 4-alpha 5 pore model in a fully hydrated-DMPC system revealed that an open-pore structure could be observed only for the simulated pores of the wild type and N166D. Additionally, the number of lipid molecules interacting with both wild-type and N166D pores is relatively higher than those of N166A and N1661 pores. Altogether, our results further signify that the polarity at the alpha 4-alpha 5 loop residue similar to Asn(166) is directly involved in ion permeation through the Cry4Ba toxin-induced ionic pore and pore opening at the membrane-water interface. (C) 2013 Elsevier B.V. All rights reserved.
机译:通过在靶中肠细胞膜中形成离子可渗透的孔,芽孢杆菌Thuringiensis Cry4Ba毒素是致命的蚊子。以前,位于α4-α5环内的ASN(166)的极性被证明对幼虫活性至关重要。这里,幼虫活性(N166D)和无活性(N166A和N1661)突变体的结构稳定突变体毒素是FPLC纯化的,其特征在于脂质体中的相对活性,类似于膜渗透和单沟道形成。类似于65-KDA胰蛋白酶激活的野生型毒素,N166D生物活性突变体毒素仍然能够从脂质囊泡中释放捕获的Calcein。相反,另外两种生物惰性突变体表明引起膜渗透的显着降低。当N166D突变体掺入平面脂质双层时(在对称条件下在150mM KCl,pH8.5)中,它产生单通道电流,其具有与野生型毒素相当的最大电导率约425ps。然而,由生物 - 非活性突变体(N1661和N166A)形成的单k + -Channels的最大导电量降至约165-205 ps。在全水下DMPC系统中三聚体α4-α5孔模拟60-ns模拟的结构动力学显示,仅针对野生型和N166D的模拟孔隙可以观察到开放式孔结构。另外,与野生型和N166D孔相互作用的脂质分子的数量相对高于N166A和N1661孔的孔。完全,我们的结果进一步表示,通过Cry4BA毒素诱导的离子孔和在膜 - 水界面处直接涉及离子渗透的α4-α5环残余物的极性。 (c)2013年elestvier b.v.保留所有权利。

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