Cohen L S, Arshava B, Neumoin A, Becker J M, Güntert P, Zerbe O, Naider F
Department of Chemistry, The College of Staten Island, City University of New York, Staten Island, NY 10314, USA.
Biochim Biophys Acta. 2011 Nov;1808(11):2674-84. doi: 10.1016/j.bbamem.2011.07.011. Epub 2011 Jul 23.
Fragments of integral membrane proteins have been used to study the physical chemical properties of regions of transporters and receptors. Ste2p(G31-T110) is an 80-residue polypeptide which contains a portion of the N-terminal domain, transmembrane domain 1 (TM1), intracellular loop 1, TM2 and part of extracellular loop 1 of the α-factor receptor (Ste2p) from Saccharomyces cerevisiae. The structure of this peptide was previously determined to form a helical hairpin in lyso-palmitoylphosphatidyl-glycerol micelles (LPPG) [1]. Herein, we perform a systematic comparison of the structure of this protein fragment in micelles and trifluoroethanol (TFE):water in order to understand whether spectra recorded in organic:aqueous medium can facilitate the structure determination in a micellar environment. Using uniformly labeled peptide and peptide selectively protonated on Ile, Val and Leu methyl groups in a perdeuterated background and a broad set of 3D NMR experiments we assigned 89% of the observable atoms. NOEs and chemical shift analysis were used to define the helical regions of the fragment. Together with constraints from paramagnetic spin labeling, NOEs were used to calculate a transiently folded helical hairpin structure for this peptide in TFE:water. Correlation of chemical shifts was insufficient to transfer assignments from TFE:water to LPPG spectra in the absence of further information.
完整膜蛋白的片段已被用于研究转运蛋白和受体区域的物理化学性质。Ste2p(G31-T110)是一种由80个残基组成的多肽,它包含来自酿酒酵母的α-因子受体(Ste2p)的N端结构域的一部分、跨膜结构域1(TM1)、细胞内环1、TM2和细胞外环1的一部分。该肽的结构先前已确定在溶血-棕榈酰磷脂酰甘油胶束(LPPG)中形成螺旋发夹结构[1]。在此,我们对该蛋白片段在胶束和三氟乙醇(TFE):水体系中的结构进行了系统比较,以了解在有机:水介质中记录的光谱是否有助于在胶束环境中确定结构。使用均匀标记的肽以及在全氘化背景下对异亮氨酸、缬氨酸和亮氨酸甲基进行选择性质子化的肽,并通过一系列广泛的三维核磁共振实验,我们确定了89%可观测原子的归属。利用核Overhauser效应(NOE)和化学位移分析来确定片段的螺旋区域。结合顺磁自旋标记的限制条件,利用NOE计算了该肽在TFE:水体系中的瞬时折叠螺旋发夹结构。在没有进一步信息的情况下,化学位移的相关性不足以将归属从TFE:水转移到LPPG光谱。