Department of Chemistry, University of Missouri, Columbia, MO 65211, United States.
Department of Chemistry, University of Missouri, Columbia, MO 65211, United States.
Biophys Chem. 2014 Mar-Apr;187-188:1-6. doi: 10.1016/j.bpc.2013.12.004. Epub 2013 Dec 28.
Despite their presence in many aspects of biology, the study of membrane proteins lags behind that of their soluble counterparts. Improving structural analysis of membrane proteins is essential. Deep-UV resonance Raman (DUVRR) spectroscopy is an emerging technique in this area and has demonstrated sensitivity to subtle structural transitions and changes in protein environment. The pH low insertion peptide (pHLIP) has three distinct structural states: disordered in an aqueous environment, partially folded and associated with a lipid membrane, and inserted into a lipid bilayer as a transmembrane helix. While the soluble and membrane-inserted forms are well characterized, the partially folded membrane-associated state has not yet been clearly described. The amide I mode, known to be sensitive to protein environment, is the same in spectra of membrane-associated and membrane-inserted pHLIP, indicating comparable levels of backbone dehydration. The amide S mode, sensitive to helical structure, indicates less helical character in the membrane-associated form compared to the membrane-inserted state, consistent with previous findings. However, the structurally sensitive amide III region is very similar in both membrane-associated and membrane-inserted pHLIP, suggesting that the membrane-associated form has a large amount of ordered structure. Where before the membrane-associated state was thought to contain mostly unordered structure and reside in a predominantly aqueous environment, we have shown that it contains a significant amount of ordered structure and rests deeper within the lipid membrane.
尽管膜蛋白存在于生物学的许多方面,但它们的研究落后于可溶性蛋白。提高膜蛋白的结构分析能力至关重要。深紫外共振拉曼(DUVRR)光谱学是该领域的一项新兴技术,已证明对蛋白质环境中细微的结构转变和变化具有敏感性。pH 低插入肽(pHLIP)有三个截然不同的结构状态:在水相环境中无序,部分折叠并与脂质膜相关联,以及作为跨膜螺旋插入脂质双层。虽然可溶性和膜插入形式已经得到很好的描述,但部分折叠的膜相关状态尚未得到明确描述。酰胺 I 模式,已知对蛋白质环境敏感,在膜相关和膜插入 pHLIP 的光谱中是相同的,表明骨干去水程度相当。酰胺 S 模式,对螺旋结构敏感,表明与膜插入状态相比,膜相关形式的螺旋特征较少,这与以前的发现一致。然而,结构敏感的酰胺 III 区域在膜相关和膜插入的 pHLIP 中非常相似,表明膜相关形式具有大量有序结构。以前认为膜相关状态主要包含无规结构并存在于主要水性环境中,我们已经表明它包含大量有序结构并且位于脂质膜的更深层。