Hsu Darren J, Leshchev Denis, Rimmerman Dolev, Hong Jiyun, Kelley Matthew S, Kosheleva Irina, Zhang Xiaoyi, Chen Lin X
Department of Chemistry , Northwestern University , Evanston , Illinois 60208 , USA . Email:
Center for Advanced Radiation Sources , The University of Chicago , Illinois 60637 , USA.
Chem Sci. 2019 Sep 3;10(42):9788-9800. doi: 10.1039/c9sc02630d. eCollection 2019 Nov 14.
Cytochrome (cyt ) has long been utilized as a model system to study metalloprotein folding dynamics and the interplay between active site ligation and tertiary structure. However, recent reports regarding the weakness of the native Fe(ii)-S bond (Fe-Met80) call into question the role of the active site ligation in the protein folding process. In order to investigate the interplay between protein conformation and active site structures, we directly tracked the evolution of both during a photolysis-induced folding reaction using X-ray transient absorption spectroscopy and time-resolved X-ray solution scattering techniques. We observe an intermediate Fe-Met80 species appearing on ∼2 μs timescale, which should not be sustained without stabilization from the folded protein structure. We also observe the appearance of a new active site intermediate: a weakly interacting Fe-HO state. As both intermediates require stabilization of weak metal-ligand interactions, we surmise the existence of a local structure within the unfolded protein that protects and limits the movement of the ligands, similar to the entatic state found in the native cyt fold. Furthermore, we observe that in some of the unfolded ensemble, the local stabilizing structure is lost, leading to expansion of the unfolded protein structure and misligation to His26/His33 residues.
细胞色素(cyt)长期以来一直被用作研究金属蛋白折叠动力学以及活性位点连接与三级结构之间相互作用的模型系统。然而,最近有关天然Fe(ii)-S键(Fe-Met80)较弱的报道对活性位点连接在蛋白质折叠过程中的作用提出了质疑。为了研究蛋白质构象与活性位点结构之间的相互作用,我们使用X射线瞬态吸收光谱和时间分辨X射线溶液散射技术,在光解诱导的折叠反应过程中直接追踪了两者的演变。我们观察到一种中间的Fe-Met80物种出现在约2微秒的时间尺度上,如果没有折叠的蛋白质结构的稳定作用,这种物种不应持续存在。我们还观察到一种新的活性位点中间体的出现:一种弱相互作用的Fe-HO状态。由于这两种中间体都需要稳定弱金属-配体相互作用,我们推测在未折叠的蛋白质中存在一种局部结构,它保护并限制配体的移动,类似于在天然细胞色素折叠中发现的内稳态。此外,我们观察到在一些未折叠的集合中,局部稳定结构丧失,导致未折叠蛋白质结构扩展并与His26/His33残基发生错误连接。