Mancinelli Fabrizio, Caraglia Michele, Budillon Alfredo, Abbruzzese Alberto, Bismuto Ettore
Department of Biochemistry and Biophysics, Seconda Università degli Studi di Napoli, 80138 Napoli, Italy.
J Cell Biochem. 2006 Sep 1;99(1):305-18. doi: 10.1002/jcb.20893.
Bax, a multi-domain protein belonging to the large family of Bcl-2 proteins, has a pivotal role for the initiation of the cytochrome c-mediated apoptosis, a vital physiologic process to eliminate damaged or unwanted cells. In response to specific stimuli Bax translocates from cytosol to mitochondria outer membrane where a process of oligomerization occurs with pore formation through which cytochrome c and other death molecules escape. The pro-death action of Bax is regulated by the interaction with other pro-survival proteins. However, the conformational changes and the structural details necessary for homo and hetero interaction with other regulating proteins are largely unknown. This article reports a combined investigation of molecular dynamics (MD) simulation and automated docking that evidence the molecular regions of Bax involved in the binding with anti-apoptotic exapeptide (Bip) designed from Ku70, a subunit of the protein complex essential for non-homologous DNA repair but that inhibits also the Bax translocation to mitochondria. Since Bip suppresses apoptosis induced by several anti-cancer drugs, it appears relevant to achieve a better understanding of the structural and dynamical aspects that characterize the Bip-Bax complex in view of potential therapeutic implications. The present results show that the Bax region with the highest affinity for Bip is located in proximity of BH3 homology domain of Bax and also involves the alpha-helices 1 and 8. Moreover, the comparison of essential motions of Bax at 300 and 400 K before and after the formation of the complex with Bip evidences how the binding with the exa-peptide affects the collective motions of specific molecular districts of Bax considered to have functional relevance.
Bax是一种属于Bcl-2蛋白大家族的多结构域蛋白,在细胞色素c介导的凋亡起始过程中起关键作用,细胞色素c介导的凋亡是消除受损或不需要的细胞的重要生理过程。响应特定刺激时,Bax从细胞质转移至线粒体外膜,在那里发生寡聚化过程并形成孔道,细胞色素c和其他死亡分子通过该孔道逸出。Bax的促死亡作用受其与其他促生存蛋白相互作用的调节。然而,Bax与其他调节蛋白进行同源和异源相互作用所需的构象变化和结构细节在很大程度上尚不清楚。本文报道了一项结合分子动力学(MD)模拟和自动对接的研究,该研究证明了Bax与从Ku70设计的抗凋亡外肽(Bip)结合所涉及的分子区域,Ku70是蛋白质复合物的一个亚基,对非同源DNA修复至关重要,但也抑制Bax向线粒体的转移。由于Bip可抑制多种抗癌药物诱导的凋亡,鉴于潜在的治疗意义,更好地了解表征Bip - Bax复合物的结构和动力学方面似乎很重要。目前的结果表明,对Bip亲和力最高的Bax区域位于Bax的BH3同源结构域附近,并且还涉及α螺旋1和8。此外,在与Bip形成复合物之前和之后,对300 K和400 K下Bax的基本运动进行比较,证明了与外肽的结合如何影响被认为具有功能相关性的Bax特定分子区域的集体运动。