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Jaburetox 与膜模型相互作用的结构分析。Jaburetox 是一种无规卷曲蛋白。

Structural analysis of the interaction between Jaburetox, an intrinsically disordered protein, and membrane models.

机构信息

Graduate Program in Cellular and Molecular Biology - Center of Biotechnology, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre, RS, CEP 91501-970, Brazil.

Department of Biophysics, Biosciences Institute (IB), UFRGS, Porto Alegre, RS, CEP 91501-970, Brazil.

出版信息

Colloids Surf B Biointerfaces. 2017 Nov 1;159:849-860. doi: 10.1016/j.colsurfb.2017.08.053. Epub 2017 Aug 30.

Abstract

Jack bean urease is entomotoxic to insects with cathepsin-like digestive enzymes, and its toxicity is mainly caused by a polypeptide called Jaburetox (Jbtx), released by cathepsin-dependent hydrolysis of the enzyme. Jbtx is intrinsically disordered in aqueous solution, as shown by CD and NMR. Jbtx is able to alter the permeability of membranes, hinting to a role of Jbtx-membrane interaction as the basis for its toxicity. The present study addresses the structural aspects of this interaction by investigating the behaviour of Jbtx when in contact with membrane models, using nuclear magnetic resonance and circular dichroism spectroscopies in the absence or presence of micelles, large unilamellar vesicles, and bicelles. Fluorescence microscopy was also used to detect protein-insect membrane interaction. Significant differences were observed depending on the type of membrane model used. The interaction with negatively charged SDS micelles increases the secondary and tertiary structure content of the polypeptide, while, in the case of large unilamellar vesicles and bicelles, conformational changes were observed at the terminal regions, with no significant acquisition of secondary structure motifs. These results were interpreted as suggesting that the Jbtx-lipids interaction anchors the polypeptide to the cellular membrane through the terminal portions of the polypeptide and that, following this interaction, Jbtx undergoes conformational changes to achieve a more ordered structure that could facilitate its interaction with membrane-bound proteins. Consistently with this hypothesis, the presence of these membrane models decreases the ability of Jbtx to bind cellular membranes of insect nerve cord. The collected evidence from these studies implies that the biological activity of Jbtx is due to protein-phospholipid interactions.

摘要

刀豆脲酶对具有组织蛋白酶样消化酶的昆虫具有昆虫毒性,其毒性主要是由一种称为 Jaburetox(Jbtx)的多肽引起的,该多肽是通过组织蛋白酶依赖性水解酶释放的。Jbtx 在水溶液中是无规卷曲的,这一点可以通过 CD 和 NMR 得到证明。Jbtx 能够改变膜的通透性,这表明 Jbtx-膜相互作用可能是其毒性的基础。本研究通过使用核磁共振和圆二色性光谱法在不存在或存在胶束、大单室囊泡和双胶束的情况下研究 Jbtx 与膜模型接触时的行为,来研究这种相互作用的结构方面。荧光显微镜也用于检测蛋白质-昆虫膜相互作用。观察到的行为取决于所使用的膜模型的类型而有显著差异。与带负电荷的 SDS 胶束的相互作用增加了多肽的二级和三级结构含量,而在大单室囊泡和双胶束的情况下,在末端区域观察到构象变化,没有明显获得二级结构模体。这些结果可以解释为,Jbtx-脂质相互作用通过多肽的末端部分将多肽锚定在细胞膜上,并且在这种相互作用之后,Jbtx 发生构象变化以获得更有序的结构,从而促进其与膜结合蛋白的相互作用。与该假说一致,这些膜模型的存在降低了 Jbtx 结合昆虫神经索细胞膜的能力。这些研究的综合证据表明,Jbtx 的生物学活性是由于蛋白质-磷脂相互作用。

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