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通过定点自旋标记和高分辨率核磁共振确定的一种隔离磷脂酰肌醇4,5-二磷酸的碱性芳香肽的膜定位。

Membrane position of a basic aromatic peptide that sequesters phosphatidylinositol 4,5 bisphosphate determined by site-directed spin labeling and high-resolution NMR.

作者信息

Ellena Jeffrey F, Moulthrop Jason, Wu Jing, Rauch Michelle, Jaysinghne Sajith, Castle J David, Cafiso David S

机构信息

Department of Chemistry and Biophysics Program, and Department of Cell Biology, University of Virginia, Charlottesville, Virginia 22904-4319, USA.

出版信息

Biophys J. 2004 Nov;87(5):3221-33. doi: 10.1529/biophysj.104.046748. Epub 2004 Aug 17.

Abstract

The membrane interactions and position of a positively charged and highly aromatic peptide derived from a secretory carrier membrane protein (SCAMP) are examined using magnetic resonance spectroscopy and several biochemical methods. This peptide (SCAMP-E) is shown to bind to membranes containing phosphatidylinositol 4,5-bisphosphate, PI(4,5)P2, and sequester PI(4,5)P2 within the plane of the membrane. Site-directed spin labeling of the SCAMP-E peptide indicates that the position and structure of membrane bound SCAMP-E are not altered by the presence of PI(4,5)P2, and that the peptide backbone is positioned within the lipid interface below the level of the lipid phosphates. A second approach using high-resolution NMR was used to generate a model for SCAMP-E bound to bicelles. This approach combined oxygen enhancements of nuclear relaxation with a computational method to dock the SCAMP-E peptide at the lipid interface. The model for SCAMP generated by NMR is consistent with the results of site-directed spin labeling and places the peptide backbone in the bilayer interfacial region and the aromatic side chains within the lipid hydrocarbon region. The charged side chains of SCAMP-E lie well within the interface with two arginine residues lying deeper than a plane defined by the position of the lipid phosphates. These data suggest that SCAMP-E interacts with PI(4,5)P2 through an electrostatic mechanism that does not involve specific lipid-peptide contacts. This interaction may be facilitated by the position of the positively charged side chains on SCAMP-E within a low-dielectric region of the bilayer interface.

摘要

利用磁共振波谱法和多种生化方法,研究了一种源自分泌载体膜蛋白(SCAMP)的带正电荷且高度芳香化的肽段的膜相互作用及位置。该肽段(SCAMP-E)被证明能与含有磷脂酰肌醇4,5-二磷酸[PI(4,5)P2]的膜结合,并在膜平面内隔离PI(4,5)P2。对SCAMP-E肽段进行定点自旋标记表明,PI(4,5)P2的存在不会改变膜结合的SCAMP-E的位置和结构,且肽主链位于脂质磷酸基团水平以下的脂质界面内。采用高分辨率核磁共振的第二种方法用于生成SCAMP-E与双分子层结合的模型。该方法将核弛豫的氧增强与一种计算方法相结合,以便将SCAMP-E肽段对接在脂质界面处。通过核磁共振生成的SCAMP模型与定点自旋标记的结果一致,将肽主链置于双层界面区域,芳香侧链置于脂质烃区域内。SCAMP-E的带电侧链很好地位于界面内,两个精氨酸残基比由脂质磷酸基团位置定义的平面更深。这些数据表明,SCAMP-E通过一种不涉及特定脂质-肽接触的静电机制与PI(4,5)P2相互作用。双层界面低介电区域内SCAMP-E上带正电荷侧链的位置可能有助于这种相互作用。

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Secretory carrier membrane proteins.分泌载体膜蛋白。
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