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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Rubber particle proteins, HbREF and HbSRPP, show different interactions with model membranes
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Rubber particle proteins, HbREF and HbSRPP, show different interactions with model membranes

机译:橡胶粒子蛋白,HBREF和HBSRPP,显示出与模型膜的不同相互作用

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The biomembrane surrounding rubber particles from the hevea latex is well known for its content of numerous allergen proteins. HbREF (Hevbl) and HbSRPP (Hevb3) are major components, linked on rubber particles, and they have been shown to be involved in rubber synthesis or quality (mass regulation), but their exact function is still to be determined. In this study we highlighted the different modes of interactions of both recombinant proteins with various membrane models (lipid monolayers, liposomes or supported bilayers, and multilamellar vesicles) to mimic the latex particle membrane. We combined various biophysical methods (polarization-modulation-infrared reflection-adsorption spectroscopy (PM-IRRAS)/ellipsometry, attenuated-total reflectance Fourier-transform infrared (ATR-FTIR), solid-state nuclear magnetic resonance (NMR), plasmon waveguide resonance (PWR), fluorescence spectroscopy) to elucidate their interactions. Small rubber particle protein (SRPP) shows less affinity than rubber elongation factor (REF) for the membranes but displays a kind of "covering" effect on the lipid headgroups without disturbing the membrane integrity. Its structure is conserved in the presence of lipids. Contrarily, REF demonstrates higher membrane affinity with changes in its aggregation properties, the amyloid nature of REF, which we previously reported, is not favored in the presence of lipids. REF binds and inserts into membranes. The membrane integrity is highly perturbed, and we suspect that REF is even able to remove lipids from the membrane leading to the formation of mixed micelles. These two homologous proteins show affinity to all membrane models tested but neatly differ in their interacting features. This could imply differential roles on the surface of rubber particles. (C) 2013 Elsevier B.V. All rights reserved.
机译:围绕HEVEA乳胶覆盖橡胶颗粒的生物膜以其多种过敏原蛋白质的含量为众所周知。 HBERF(HEVBL)和HBSRPP(HEVB3)是在橡胶颗粒上连接的主要组分,并且已被证明涉及橡胶合成或质量(质量调节),但它们仍有仍然确定它们的确切功能。在这项研究中,我们突出了具有各种膜模型(脂质单层,脂质体或负载双层和多偶囊泡)的重组蛋白的不同方式的相互作用方式,以模拟胶乳颗粒膜。我们组合各种生物物理方法(偏振调制 - 红外反射吸附光谱(PM-IRRAS)/椭圆形,衰减 - 总反射率傅里叶变换红外(ATR-FTIR),固态核磁共振(NMR),等离子体波导共振(PWR),荧光光谱)以阐明它们的相互作用。小橡胶粒子蛋白(SRPP)显示比膜的橡胶伸长因子(REF)的亲和力较少,但在不干扰膜完整性的情况下显示出一种“覆盖”对脂质头组的影响。它的结构在脂质存在下保守。相反,裁判表现出更高的膜亲和力与其聚集性质的变化,我们先前报道的REF的淀粉样蛋白性质在脂质的存在下并不赞成。 REF将并插入膜中。膜完整性高度扰动,并且我们怀疑甚至能够从膜中除去脂质,导致形成混合胶束的形成。这两个同源蛋白质显示对所有测试的所有膜模型的亲和力,但在其相互作用的特征中整齐不同。这可能意味着橡胶颗粒表面上的差异粘性。 (c)2013年elestvier b.v.保留所有权利。

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