Structural Biophysics, Niels Bohr Institute, Faculty of Science, University of Copenhagen, Copenhagen, Denmark.
Acta Crystallogr D Struct Biol. 2021 Feb 1;77(Pt 2):176-193. doi: 10.1107/S2059798320015405. Epub 2021 Jan 26.
New software, called Marbles, is introduced that employs SAXS intensities to predict the shape of membrane proteins embedded into membrane nanodiscs. To gain computational speed and efficient convergence, the strategy is based on a hybrid approach that allows one to account for the contribution of the nanodisc to the SAXS intensity through a semi-analytical model, while the embedded membrane protein is treated as a set of beads, similarly to as in well known ab initio methods. The reliability and flexibility of this approach is proved by benchmarking the code, implemented in C++ with a Python interface, on a toy model and two proteins with very different geometry and size.
新软件 Marbles 问世,它运用小角 X 射线散射强度来预测嵌入膜纳米盘的膜蛋白的形状。为了获得计算速度和高效收敛,该策略基于一种混合方法,允许通过半分析模型来考虑纳米盘对小角 X 射线散射强度的贡献,而嵌入的膜蛋白则被视为一组珠子,类似于知名的从头计算方法。该方法的可靠性和灵活性通过在一个玩具模型和两个具有非常不同的几何形状和大小的蛋白质上对用 C++编写并带有 Python 接口的代码进行基准测试得到了证明。