Institut de Chimie des Substances Naturelles, CNRS UPR 2301, Université Paris-Saclay, LabEx LERMIT, Gif-sur-Yvette, France.
Synchrotron SOLEIL, Saint Aubin, France.
J Biol Chem. 2023 Jul;299(7):104830. doi: 10.1016/j.jbc.2023.104830. Epub 2023 May 16.
Translationally Controlled Tumor Protein (TCTP) serves as a pro-survival factor in tumor cells, inhibiting the mitochondrial apoptosis pathway by enhancing the function of anti-apoptotic Bcl-2 family members Mcl-1 and Bcl-xL. TCTP specifically binds to Bcl-xL, preventing Bax-dependent Bcl-xL-induced cytochrome c release, and it reduces Mcl-1 turnover by inhibiting its ubiquitination, thereby decreasing Mcl-1-mediated apoptosis. TCTP harbors a BH3-like motif that forms a β-strand buried in the globular domain of the protein. In contrast, the crystal structure of the TCTP BH3-like peptide in complex with the Bcl-2 family member Bcl-xL reveals an α-helical conformation for the BH3-like motif, suggesting significant structural changes upon complex formation. Employing biochemical and biophysical methods, including limited proteolysis, circular dichroism, NMR, and SAXS, we describe the TCTP complex with the Bcl-2 homolog Mcl-1. Our findings demonstrate that full-length TCTP binds to the BH3 binding groove of Mcl-1 via its BH3-like motif, experiencing conformational exchange at the interface on a micro- to milli-second timescale. Concurrently, the TCTP globular domain becomes destabilized, transitioning into a molten-globule state. Furthermore, we establish that the non-canonical residue D16 within the TCTP BH3-like motif reduces stability while enhancing the dynamics of the intermolecular interface. In conclusion, we detail the structural plasticity of TCTP and discuss its implications for partner interactions and future anticancer drug design strategies aimed at targeting TCTP complexes.
翻译控制肿瘤蛋白(TCTP)作为肿瘤细胞中的一种生存促进因子,通过增强抗凋亡 Bcl-2 家族成员 Mcl-1 和 Bcl-xL 的功能来抑制线粒体凋亡途径。TCTP 特异性结合 Bcl-xL,阻止 Bax 依赖性 Bcl-xL 诱导的细胞色素 c 释放,通过抑制其泛素化减少 Mcl-1 的周转率,从而减少 Mcl-1 介导的凋亡。TCTP 具有 BH3 样结构域,该结构域形成一个β-折叠,埋藏在蛋白质的球状结构域中。相比之下,TCTP BH3 样肽与 Bcl-2 家族成员 Bcl-xL 的晶体结构揭示了 BH3 样结构域的α-螺旋构象,表明在形成复合物时结构发生了显著变化。我们采用生化和生物物理方法,包括有限蛋白酶解、圆二色性、NMR 和 SAXS,描述了与 Bcl-2 同源物 Mcl-1 的 TCTP 复合物。我们的研究结果表明,全长 TCTP 通过其 BH3 样结构域与 Mcl-1 的 BH3 结合槽结合,在微秒到毫秒的时间尺度上在界面处经历构象交换。同时,TCTP 球状结构域变得不稳定,转变为无规卷曲状态。此外,我们确定 TCTP BH3 样结构域中的非典型残基 D16 降低了稳定性,同时增强了分子间界面的动力学。总之,我们详细描述了 TCTP 的结构可塑性,并讨论了其对伙伴相互作用的影响以及未来针对 TCTP 复合物的抗癌药物设计策略。