School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, Sichuan, China.
CNRS, UMR 7565, 54506, Vandoeuvre les Nancy, France.
J Membr Biol. 2020 Jun;253(3):271-286. doi: 10.1007/s00232-020-00123-4. Epub 2020 May 13.
Membrane proteins are the major component of plasma membranes, and they play crucial roles in all organisms. To understand the influence of the presence of KcsA channel on cell membrane electroporation induced by picosecond pulse trains (psPT), in this paper, the electroporation of KcsA membrane protein system and bare lipid bilayer system (POPC) with the applied psPT are simulated using molecular dynamics (MD) method. First, we find that the average pore formation time of the KcsA system is longer than the bare system with the applied psPT. In the KcsA system, water protrusions appear more slowly. Then, the system size effects of psPT in the MD simulations are investigated. When the system size decreases, the average pore formation time of small KcsA membrane protein system is shorter than the bare system with the applied psPT. It is found that the psPT makes the protein fluctuation of small system increase greatly; meanwhile the instability of protein disturbs the water and then affects the water protrusion appearance time. Furthermore, it shows that the protein fluctuation of constant electric field is smaller than that of psPT and no field, and protein fluctuation increases with the psPT repetition frequency increasing.
膜蛋白是质膜的主要成分,它们在所有生物体中都起着至关重要的作用。为了了解 KcsA 通道的存在对皮秒脉冲串(psPT)诱导的细胞膜电穿孔的影响,本文使用分子动力学(MD)方法模拟了施加 psPT 时 KcsA 膜蛋白体系和裸脂质双层体系(POPC)的电穿孔。首先,我们发现施加 psPT 时,KcsA 体系的平均孔形成时间长于裸体系。在 KcsA 体系中,水突出物出现得更慢。然后,研究了 MD 模拟中 psPT 的系统尺寸效应。当系统尺寸减小时,小 KcsA 膜蛋白体系的平均孔形成时间短于施加 psPT 的裸体系。结果表明,psPT 使小体系的蛋白质波动大大增加;同时,蛋白质的不稳定性干扰了水,进而影响了水突出物出现的时间。此外,结果表明,恒电场的蛋白质波动小于 psPT 和无场,并且蛋白质波动随 psPT 重复频率的增加而增加。