Yao Yong, Bobkov Andrey A, Plesniak Leigh A, Marassi Francesca M
Burnham Institute for Medical Research, 10901 North Torrey Pines Road, La Jolla, California 92037, USA.
Biochemistry. 2009 Sep 15;48(36):8704-11. doi: 10.1021/bi901171n.
The BH3-only BCL-2 family protein BID is activated by caspase-8 cleavage upon engagement of cell surface death receptors. The resulting 15 kDa C-terminal fragment, tBID, translocates to mitochondria, triggering the release of cytotoxic molecules and cell death. The pro-apoptotic activity of tBID is regulated by its interactions with pro-survival BCL-XL and pro-death BAX, both in the cytosol and at the mitochondrial membrane. In this study, we characterize the molecular interactions between full-length tBID and BCL-XL using NMR spectroscopy and isothermal titration calorimetry (ITC). In aqueous solution, tBID adopts an alpha-helical but dynamically disordered conformation; however, the three-dimensional conformation is stabilized when tBID engages its BH3 domain in the BH3-binding hydrophobic groove of BCL-XL to form a stable heterodimeric complex. Characterization of the binding thermodynamics by ITC reveals that the interaction between tBID and BCL-XL is driven by enthalpy but disfavored by the entropy associated with the conformational order induced in tBID upon binding BCL-XL.
仅含BH3结构域的BCL-2家族蛋白BID在细胞表面死亡受体被激活时,通过caspase-8切割而被激活。产生的15 kDa C端片段tBID转位至线粒体,触发细胞毒性分子的释放和细胞死亡。tBID的促凋亡活性通过其在胞质溶胶和线粒体膜中与促生存蛋白BCL-XL和促死亡蛋白BAX的相互作用来调节。在本研究中,我们使用核磁共振波谱法和等温滴定量热法(ITC)来表征全长tBID与BCL-XL之间的分子相互作用。在水溶液中,tBID呈现α螺旋但动态无序的构象;然而,当tBID将其BH3结构域嵌入BCL-XL的BH3结合疏水凹槽中形成稳定的异二聚体复合物时,其三维构象得以稳定。ITC对结合热力学的表征表明,tBID与BCL-XL之间的相互作用由焓驱动,但因与tBID结合BCL-XL时诱导的构象有序相关的熵而不利。