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通过自旋标记电子顺磁共振研究跨膜肽的聚集。

Aggregation of transmembrane peptides studied by spin-label EPR.

作者信息

Scarpelli Francesco, Drescher Malte, Rutters-Meijneke Tania, Holt Andrea, Rijkers Dirk T S, Killian J Antoinette, Huber Martina

机构信息

Department of Molecular Physics, Huygens Laboratory, Leiden University, P.O. Box 9504, 2300 RA Leiden, The Netherlands.

出版信息

J Phys Chem B. 2009 Sep 10;113(36):12257-64. doi: 10.1021/jp901371h.

Abstract

The structure and function of membrane proteins is partly determined by the interaction of these proteins with the lipids of the membrane. Peptides forming single membrane-spanning alpha-helices, such as the WALP peptide (acetyl-GWWL(AL)(n)WWA-amide), are good models for such interactions. This interaction can be studied by investigating the aggregation of peptides. If the peptides remain isolated in the membrane, the peptide-lipid interaction dominates, if the peptides aggregate, the peptide-peptide interaction is stronger. The intrinsic dynamics and the disordered nature of the system require new approaches to determine eventual aggregation. We performed electron paramagnetic resonance (EPR) on spin-labeled WALP (SL-WALP) in the gel and the liquid-crystalline phases of two different phospholipids, the saturated DPPC (1,2-dipalmitoyl-sn-glycero-3-phosphocholine), and the unsaturated DOPC (1,2-dioleoyl-sn-glycero-3-phosphocholine). At low temperatures (120 K) where both lipids are in the gel phase, less extensive aggregation is observed for the peptide in DOPC as compared to DPPC. Together with previous data on aggregation of WALP peptides from atomic force microscopy and fluorescence spectroscopy at 294 K ( Sparr ; et al. Biochemistry 2005 , 44 , 2 -10 ), the results suggest that at 120 K WALP peptides form line aggregates in DOPC and cluster aggregates in DPPC. In the liquid-crystalline phase of both lipids, signatures of aggregation are absent, showing that in this phase the peptide can be accommodated by either lipid. It can be concluded that the lipid phase, in this case gel or liquid-crystalline, is a more important determinant for peptide aggregation than whether the lipid is saturated (DPPC) or unsaturated (DOPC). In view of the gel-phase-like behavior of some membrane phases in physiological systems the methodology should be relevant.

摘要

膜蛋白的结构和功能部分取决于这些蛋白与膜脂的相互作用。形成单跨膜α螺旋的肽,如WALP肽(乙酰基 - GWWL(AL)(n)WWA - 酰胺),是此类相互作用的良好模型。这种相互作用可以通过研究肽的聚集来进行探究。如果肽在膜中保持孤立状态,则肽 - 脂相互作用占主导;如果肽发生聚集,则肽 - 肽相互作用更强。系统的内在动力学和无序性质需要新的方法来确定最终的聚集情况。我们对自旋标记的WALP(SL - WALP)在两种不同磷脂(饱和的DPPC(1,2 - 二棕榈酰 - sn - 甘油 - 3 - 磷酸胆碱)和不饱和的DOPC(1,2 - 二油酰 - sn - 甘油 - 3 - 磷酸胆碱))的凝胶相和液晶相进行了电子顺磁共振(EPR)实验。在低温(120 K)下,两种脂质均处于凝胶相,与DPPC相比,在DOPC中观察到肽的聚集程度较低。结合先前在294 K时通过原子力显微镜和荧光光谱法得到的关于WALP肽聚集的数据(Sparr等人,《生物化学》2005年,第44卷,第2 - 10页),结果表明在120 K时,WALP肽在DOPC中形成线状聚集体,在DPPC中形成簇状聚集体。在两种脂质的液晶相中,不存在聚集的特征,这表明在此相中肽可以被任何一种脂质容纳。可以得出结论,在这种情况下,脂质相(凝胶相或液晶相)比脂质是饱和的(DPPC)还是不饱和的(DOPC)对肽聚集的影响更为重要。鉴于生理系统中某些膜相类似凝胶相的行为,该方法应该是相关的。

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