Gong Xiao-Min, Choi Jungyuen, Franzin Carla M, Zhai Dayong, Reed John C, Marassi Francesca M
Burnham Institute, La Jolla, California 92037, USA.
J Biol Chem. 2004 Jul 9;279(28):28954-60. doi: 10.1074/jbc.M403490200. Epub 2004 Apr 28.
The proapoptotic Bcl-2 family protein Bid is cleaved by caspase-8 to release the C-terminal fragment tBid, which translocates to the outer mitochondrial membrane and induces massive cytochrome c release and cell death. In this study, we have characterized the conformation of tBid in lipid membrane environments, using NMR and CD spectroscopy with lipid micelle and lipid bilayer samples. In micelles, tBid adopts a unique helical conformation, and the solution NMR (1)H/(15)N HSQC spectra have a single well resolved resonance for each of the protein amide sites. In lipid bilayers, tBid associates with the membrane with its helices parallel to the membrane surface and without trans-membrane helix insertion, and the solid-state NMR (1)H/(15)N polarization inversion with spin exchange at the magic angle spectrum has all of the amide resonances centered at (15)N chemical shift (70-90 ppm) and (1)H-(15)N dipolar coupling (0-5 kHz) frequencies associated with NH bonds parallel to the bilayer surface, with no intensity at frequencies associated with NH bonds in trans-membrane helices. Thus, the cytotoxic activity of tBid at mitochondria may be similar to that observed for antibiotic polypeptides, which bind to the surface of bacterial membranes as amphipathic helices and destabilize the bilayer structure, promoting the leakage of cell contents.
促凋亡的Bcl-2家族蛋白Bid被半胱天冬酶-8切割,释放出C末端片段tBid,tBid转位至线粒体外膜,诱导大量细胞色素c释放并导致细胞死亡。在本研究中,我们利用核磁共振(NMR)和圆二色(CD)光谱,结合脂质微团和脂质双分子层样品,对脂质膜环境中tBid的构象进行了表征。在微团中,tBid呈现独特的螺旋构象,溶液核磁共振(1)H/(15)N异核单量子相干(HSQC)谱中每个蛋白质酰胺位点都有一个单一且分辨率良好的共振峰。在脂质双分子层中,tBid以其螺旋平行于膜表面的方式与膜结合,且没有跨膜螺旋插入,固态核磁共振(1)H/(15)N魔角旋转自旋交换极化反转谱中所有酰胺共振峰都集中在与平行于双分子层表面NH键相关的(15)N化学位移(70 - 90 ppm)和(1)H - (15)N偶极耦合(0 - 5 kHz)频率处,而在与跨膜螺旋中NH键相关的频率处没有信号强度。因此,tBid在线粒体处的细胞毒性活性可能与抗生素多肽类似,抗生素多肽以两亲性螺旋形式结合于细菌膜表面,破坏双分子层结构,促进细胞内容物泄漏。