Godwin Ryan C, Melvin Ryan L, Gmeiner William H, Salsbury Freddie R
Department of Physics, Wake Forest University , Winston-Salem, North Carolina 27106, United States.
Department of Cancer Biology, Wake Forest University Health Sciences , Winston-Salem, North Carolina 27107, United States.
Biochemistry. 2017 Jan 31;56(4):623-633. doi: 10.1021/acs.biochem.6b00755. Epub 2017 Jan 13.
Zinc-finger proteins are regulators of critical signaling pathways for various cellular functions, including apoptosis and oncogenesis. Here, we investigate how binding site protonation states and zinc coordination influence protein structure, dynamics, and ultimately function, as these pivotal regulatory proteins are increasingly important for protein engineering and therapeutic discovery. To better understand the thermodynamics and dynamics of the zinc finger of NEMO (NF-κB essential modulator), as well as the role of zinc, we present results of 20 μs molecular dynamics trajectories, 5 μs for each of four active site configurations. Consistent with experimental evidence, the zinc ion is essential for mechanical stabilization of the functional, folded conformation. Hydrogen bond motifs are unique for deprotonated configurations yet overlap in protonated cases. Correlated motions and principal component analysis corroborate the similarity of the protonated configurations and highlight unique relationships of the zinc-bound configuration. We hypothesize a potential mechanism for zinc binding from results of the thiol configurations. The deprotonated, zinc-bound configuration alone predominantly maintains its tertiary structure throughout all 5 μs and alludes rare conformations potentially important for (im)proper zinc-finger-related protein-protein or protein-DNA interactions.
锌指蛋白是多种细胞功能(包括细胞凋亡和肿瘤发生)关键信号通路的调节因子。在这里,我们研究结合位点质子化状态和锌配位如何影响蛋白质结构、动力学以及最终的功能,因为这些关键的调节蛋白在蛋白质工程和治疗发现中越来越重要。为了更好地理解NEMO(核因子κB必需调节因子)锌指的热力学和动力学以及锌的作用,我们展示了20微秒的分子动力学轨迹结果,四种活性位点构型每种各5微秒。与实验证据一致,锌离子对于功能性折叠构象的机械稳定至关重要。氢键基序在去质子化构型中是独特的,但在质子化情况下会重叠。相关运动和主成分分析证实了质子化构型的相似性,并突出了锌结合构型的独特关系。我们从硫醇构型的结果中推测了一种锌结合的潜在机制。仅去质子化的锌结合构型在整个5微秒内主要维持其三级结构,并暗示了可能对(不)适当的锌指相关蛋白质-蛋白质或蛋白质-DNA相互作用重要的罕见构象。