首页> 美国卫生研究院文献>Biophysical Journal >Investigation of Homeodomain Membrane Translocation Properties: Insights from the Structure Determination of Engrailed-2 Homeodomain in Aqueous and Membrane-Mimetic Environments
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Investigation of Homeodomain Membrane Translocation Properties: Insights from the Structure Determination of Engrailed-2 Homeodomain in Aqueous and Membrane-Mimetic Environments

机译:同源域膜易位特性的研究:从水和膜模拟环境中陷入的2同源域结构确定的见解。

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摘要

In addition to their well-known DNA-binding properties, homeodomains have the ability to efficiently translocate across biological membranes through still poorly-characterized mechanisms. To date, most biophysical studies addressing the mechanisms of internalization have focused on small synthetic peptides rather than full-length globular homeodomains. In this work, we characterized the conformational properties of chicken Engrailed 2 homeodomain (En2HD) in aqueous solution and in membrane mimetic environments using circular dichroism, Trp fluorescence, and NMR spectroscopy. En2HD adopts a well-defined three-helical bundle fold in aqueous solution. The Trp-48 residue, which is critical for internalization, is fully buried in the hydrophobic core. Circular dichroism and fluorescence reveal that a conformational transition occurs in anionic lipid vesicles and in micelles. En2HD loses its native three-dimensional structure in micellar environments but, remarkably, near-native helical secondary structures are maintained. Long-range interactions could be detected using site-directed spin labels, indicating that the three helices do not adopt extended orientations. Noncovalent paramagnetic probes yielded information about helix positioning and unveiled the burial of critical aromatic and basic residues within the micelles. Our results suggest that electrostatic interactions with membranes may be determinant in inducing a conformational change enabling Trp-48 to insert into membranes.
机译:除了其众所周知的DNA结合特性外,同源结构域还具有通过特性不佳的机制有效地跨生物膜转运的能力。迄今为止,大多数针对内在化机制的生物物理研究都集中在小的合成肽上,而不是全长的球形同源结构域。在这项工作中,我们使用圆二色性,Trp荧光和NMR光谱表征了Engrailed 2同源结构域(En2HD)在水溶液和膜模拟环境中的构象特性。 En2HD在水溶液中采用定义明确的三螺旋束折叠。对内在化至关重要的Trp-48残基完全掩埋在疏水核中。圆二色性和荧光表明在阴离子脂质囊泡和胶束中发生构象转变。 En2HD在胶束环境中失去了其固有的三维结构,但值得注意的是,仍保留了近乎自然的螺旋二级结构。可以使用定点自旋标签检测到远距离相互作用,表明这三个螺旋未采用延伸方向。非共价顺磁性探针产生了关于螺旋位置的信息,并揭示了在胶束中掩埋的关键芳香族和碱性残基。我们的结果表明,与膜的静电相互作用可能是诱导构象变化的决定因素,从而使Trp-48能够插入膜中。

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