SUPA, School of Physics and Astronomy, University of Edinburgh, Peter Guthrie Tait Road, Edinburgh, United Kingdom.
SUPA, School of Physics and Astronomy, University of Edinburgh, Peter Guthrie Tait Road, Edinburgh, United Kingdom.
Biophys J. 2022 Jul 5;121(13):2600-2612. doi: 10.1016/j.bpj.2022.05.039. Epub 2022 May 28.
We perform simulations of a system containing simple model proteins and a polymer representing chromatin. We study the interplay between protein-protein and protein-chromatin interactions, and the resulting condensates that arise due to liquid-liquid phase separation, or a via a "bridging-induced attraction" mechanism. For proteins that interact multivalently, we obtain a phase diagram which includes liquid-like droplets, droplets with absorbed polymer, and coated polymer regimes. Of particular interest is a regime where protein droplets only form due to interaction with the polymer; here, unlike a standard phase separating system, droplet density rather than size varies with the overall protein concentration. We also observe that protein dynamics within droplets slow down as chromatin is absorbed. If the protein-protein interactions have a strictly limited valence, fractal or gel-like condensates are instead observed. A specific example that inspired our model is heterochromatin protein 1, or HP1. Recent in vivo experiments have shown that HP1 exhibits similar droplet size buffering behavior as our simulations. Overall, our results provide biologically relevant insights into the general nature of protein-chromatin condensates in living cells.
我们对包含简单模型蛋白和代表染色质的聚合物的系统进行了模拟。我们研究了蛋白-蛋白和蛋白-染色质相互作用之间的相互作用,以及由于液-液相分离或“桥接诱导吸引”机制而产生的由此产生的凝聚物。对于多价相互作用的蛋白质,我们得到了一个相图,其中包括类似液体的液滴、吸附聚合物的液滴和涂覆聚合物的区域。特别有趣的是一种由于与聚合物相互作用而仅形成蛋白质液滴的区域;在这里,与标准相分离系统不同,液滴密度而不是大小随总蛋白质浓度而变化。我们还观察到,当染色质被吸收时,液滴内的蛋白质动力学会减慢。如果蛋白-蛋白相互作用具有严格的有限价数,则会观察到分形或凝胶状凝聚物。激发我们模型的一个具体示例是异染色质蛋白 1 或 HP1。最近的体内实验表明,HP1 表现出与我们的模拟类似的液滴大小缓冲行为。总体而言,我们的研究结果为活细胞中蛋白质-染色质凝聚物的一般性质提供了生物学上相关的见解。