School of Physics and Astronomy, The Center for Nanoscience and Nanotechnology, Tel Aviv University, Tel Aviv, Israel.
The Center of Physics and Chemistry of Living Systems, Tel Aviv University, Tel Aviv, Israel.
Eur Phys J E Soft Matter. 2024 Feb 15;47(2):13. doi: 10.1140/epje/s10189-024-00409-8.
Intrinsically disordered proteins (IDPs) are a subset of proteins that lack stable secondary structure. Given their polymeric nature, previous mean-field approximations have been used to describe the statistical structure of IDPs. However, the amino-acid sequence heterogeneity and complex intermolecular interaction network have significantly impeded the ability to get proper approximations. One such case is the intrinsically disordered tail domain of neurofilament low (NFLt), which comprises a 50 residue-long uncharged domain followed by a 96 residue-long negatively charged domain. Here, we measure two NFLt variants to identify the impact of the NFLt two main subdomains on its complex interactions and statistical structure. Using synchrotron small-angle x-ray scattering, we find that the uncharged domain of the NFLt induces attractive interactions that cause it to self-assemble into star-like polymer brushes. On the other hand, when the uncharged domain is truncated, the remaining charged N-terminal domains remain isolated in solution with typical polyelectrolyte characteristics. We further discuss how competing long- and short-ranged interactions within the polymer brushes dominate their ensemble structure and, in turn, their implications on previously observed phenomena in NFL native and diseased states.
无规则蛋白(IDPs)是缺乏稳定二级结构的一类蛋白质。鉴于其聚合性质,先前的平均场近似已被用于描述 IDP 的统计结构。然而,氨基酸序列的异质性和复杂的分子间相互作用网络极大地阻碍了获得正确近似的能力。神经丝轻链(NFLt)的无序尾部域就是这样一个例子,它由一个 50 个残基长的非带电域和一个 96 个残基长的带负电荷的域组成。在这里,我们测量了两种 NFLt 变体,以确定 NFLt 的两个主要亚结构域对其复杂相互作用和统计结构的影响。使用同步加速器小角度 X 射线散射,我们发现 NFLt 的非带电域诱导了吸引相互作用,导致其自组装成星形聚合物刷。另一方面,当非带电域被截断时,剩余的带电荷的 N 端域在溶液中保持孤立,具有典型的聚电解质特征。我们进一步讨论了聚合物刷内的长程和短程竞争相互作用如何主导其整体结构,进而影响在 NFL 天然和患病状态下观察到的先前现象。