Institute of Chemistry-Physical Chemistry, Martin-Luther-University Halle-Wittenberg, Von-Danckelmann-Platz 4, 06120 Halle, Germany.
Langmuir. 2012 Feb 21;28(7):3534-41. doi: 10.1021/la204473t. Epub 2012 Feb 9.
Folded proteins can be translocated across biological membranes via the Tat machinery. It has been shown in vitro that these Tat substrates can interact with membranes prior to translocation. Here we report a monolayer and infrared reflection-absorption spectroscopic (IRRAS) study of the initial states of this membrane interaction, the binding to a lipid monolayer at the air/water interface serving as a model for half of a biological membrane. Using the model Tat substrate HiPIP (high potential iron-sulfur protein) from Allochromatium vinosum, we found that the precursor preferentially interacts with monolayers of negatively charged phospholipids. The signal peptide is essential for the interaction of the precursor protein with the monolayer because the mature HiPIP protein showed no interaction with the lipid monolayer. However, the individual signal peptide interacted differently with the monolayer compared to the complete precursor protein. IRRA spectroscopy indicated that the individual signal peptide forms mainly aggregated β-sheet structures. This β-sheet formation did not occur for the signal peptide when being part of the full length precursor. In this case it adopted an α-helical structure upon membrane insertion. The importance of the signal peptide and the mature domain for the membrane interaction is discussed in terms of current ideas of Tat substrate-membrane interactions.
折叠蛋白可以通过 Tat 机制跨生物膜易位。已经在体外表明,这些 Tat 底物在易位之前可以与膜相互作用。在这里,我们报告了单层和红外反射吸收光谱(IRRAS)对这种膜相互作用初始状态的研究,该相互作用与空气/水界面处的脂质单层结合,作为生物膜的一半的模型。使用来自 Allochromatium vinosum 的模型 Tat 底物 HiPIP(高电位铁硫蛋白),我们发现前体蛋白优先与带负电荷的磷脂单层相互作用。信号肽对于前体蛋白与单层的相互作用是必不可少的,因为成熟的 HiPIP 蛋白与脂质单层没有相互作用。然而,与完整的前体蛋白相比,单独的信号肽与单层的相互作用不同。IRRA 光谱表明,单独的信号肽主要形成聚集的β-折叠结构。当信号肽作为全长前体的一部分时,这种β-折叠结构不会发生。在这种情况下,它在插入膜时采用α-螺旋结构。根据 Tat 底物-膜相互作用的当前观点,讨论了信号肽和成熟结构域对膜相互作用的重要性。