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脂质对Bak和Bcl-2 C末端结构域的膜取向和二级结构的调节作用。

Modulation of the membrane orientation and secondary structure of the C-terminal domains of Bak and Bcl-2 by lipids.

作者信息

Torrecillas Alejandro, Martínez-Senac María M, Goormaghtigh Erik, de Godos Ana, Corbalán-García Senena, Gómez-Fernández Juan C

机构信息

Departamento de Bioquímica y Biología Molecular A, Facultad de Veterinaria, Universidad de Murcia, Apartado 4021, E-30080 Murcia, Spain.

出版信息

Biochemistry. 2005 Aug 16;44(32):10796-809. doi: 10.1021/bi0503192.

Abstract

Infrared spectroscopy was used to study the secondary structure of peptides which imitate the amino acid sequences of the C-terminal domains of the pro-apoptotic protein Bak (Bak-C) and the anti-apoptotic protein Bcl-2 (Bcl-2-C) when incorporated into different lipid vesicles. Whereas beta-pleated sheet was the predominant type of secondary structure of Bak-C in the absence of membranes, the same peptide adopted different structures depending on lipid composition when incorporated into membranes, with the predominance of the alpha-helical structure in the case of DMPC and other phospholipids, such as POPC and POPG. However, beta-pleated sheet was the predominant structure in other membranes containing phospholipids with longer fatty acyl chains and cholesterol, as well as in a mixture which imitates the composition of the outer mitochondrial membrane (OMM). Similarly, Bcl-2-C adopted a structure with a predominance of intermolecularly bound pleated beta-sheet in the absence of membranes, with alpha-helix as the main component in the presence of DMPC and POPG, but intermolecular beta-sheet in the presence of EYPC and cholesterol. Using ATR-IR, it was found that the orientation of the alpha-helical components of both domains was nearly perpendicular to the plane of the membrane in the presence of DMPC membranes, but not in EYPC or OMM membranes. (2)H NMR spectroscopy of DMPC-d(54) confirmed the transmembrane disposition of the domains, revealing that they broadened the phase transition temperature, although the order parameter of the C-D bonds was not affected, as might have been expected for intrinsic peptides. When all these results are taken together, it was concluded that the domains only form transmembrane helices in membranes of reduced thickness and that hydrophobic mismatching occurs in thicker membranes, as happens in the membrane imitating the composition of the OMM, where the peptides were partially located outside the membranes.

摘要

利用红外光谱研究了模拟促凋亡蛋白Bak(Bak-C)和抗凋亡蛋白Bcl-2(Bcl-2-C)C端结构域氨基酸序列的肽段在掺入不同脂质囊泡时的二级结构。在无膜情况下,β-折叠片层是Bak-C二级结构的主要类型,而当该肽段掺入膜中时,其结构会因脂质组成不同而不同,在二肉豆蔻酰磷脂酰胆碱(DMPC)及其他磷脂(如1-棕榈酰-2-油酰磷脂酰胆碱(POPC)和1-棕榈酰-2-油酰磷脂酰甘油(POPG))存在时,α-螺旋结构占主导。然而,在含有较长脂肪酰链的磷脂和胆固醇的其他膜中,以及在模拟线粒体外膜(OMM)组成的混合物中,β-折叠片层是主要结构。同样,Bcl-2-C在无膜时采用以分子间结合的β-折叠片层为主的结构,在DMPC和POPG存在时以α-螺旋为主要成分,但在1,2-二油酰基磷脂酰胆碱(EYPC)和胆固醇存在时为分子间β-折叠片层。使用衰减全反射红外光谱(ATR-IR)发现,在DMPC膜存在时,两个结构域的α-螺旋成分的取向几乎垂直于膜平面,但在EYPC或OMM膜中并非如此。对氘代二肉豆蔻酰磷脂酰胆碱(DMPC-d(54))进行的氢核磁共振((2)H NMR)光谱证实了结构域的跨膜分布,表明它们拓宽了相变温度,尽管碳-氘键的序参数未受影响,而这对于内在肽来说是可以预期的。综合所有这些结果可以得出结论,这些结构域仅在厚度减小的膜中形成跨膜螺旋,而在较厚的膜中会发生疏水不匹配,就像在模拟OMM组成的膜中那样,此时肽段部分位于膜外。

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