College of Informatics, South China Agricultural University, Guangzhou 510642, China; E-Mail:
Int J Mol Sci. 2010 Oct 19;11(10):4014-34. doi: 10.3390/ijms11104014.
Zinc-fingers play crucial roles in regulating gene expression and mediating protein-protein interactions. In this article, two different proteins (Sp1f2 and FSD-1) are investigated using the Gaussian network model and anisotropy elastic network model. By using these simple coarse-grained methods, we analyze the structural stabilization and establish the unfolding pathway of the two different proteins, in good agreement with related experimental and molecular dynamics simulation data. From the analysis, it is also found that the folding process of the zinc-finger motif is predominated by several factors. Both the zinc ion and C-terminal loop affect the folding pathway of the zinc-finger motif. Knowledge about the stability and folding behavior of zinc-fingers may help in understanding the folding mechanisms of the zinc-finger motif and in designing new zinc-fingers. Meanwhile, these simple coarse-grained analyses can be used as a general and quick method for mechanistic studies of metalloproteins.
锌指结构在调控基因表达和介导蛋白质-蛋白质相互作用方面起着至关重要的作用。本文采用高斯网络模型和各向异性弹性网络模型研究了两种不同的蛋白质(Sp1f2 和 FSD-1)。通过使用这些简单的粗粒化方法,我们分析了结构稳定性,并建立了两种不同蛋白质的展开途径,与相关的实验和分子动力学模拟数据吻合较好。从分析中还发现,锌指模体的折叠过程主要由几个因素决定。锌离子和 C 端环都影响锌指模体的折叠途径。了解锌指的稳定性和折叠行为可能有助于理解锌指模体的折叠机制,并设计新的锌指。同时,这些简单的粗粒化分析可以作为研究金属蛋白的一种通用且快速的方法。