论文标题

低温EM中可变形原子模型的异质重建

Heterogeneous reconstruction of deformable atomic models in Cryo-EM

论文作者

Nashed, Youssef, Peck, Ariana, Martel, Julien, Levy, Axel, Koo, Bongjin, Wetzstein, Gordon, Miolane, Nina, Ratner, Daniel, Poitevin, Frédéric

论文摘要

低温电子显微镜(Cryo-EM)为研究生物分子的结构异质性提供了独特的机会。能够用原子模型来解释这种异质性将有助于我们理解其功能机制,但是结构空间的大小和坚固性(原子3D笛卡尔坐标的空间)带来了巨大的挑战。在这里,我们根据原子表示形式描述了一种异质重建方法,该方法通过正常模式分析将变形降低为少数集体运动。我们的实施使用自动编码器。编码器共同估计沿正常模式的运动幅度以及图像中心和分子中心之间的2D移位。基于物理的解码器汇总了在原子水平上易于解释的异质性的表示。我们在3个合成数据集上说明了我们的方法,该数据集沿着腺苷酸激酶的模拟轨迹对应于不同的分布,从其开放到其封闭结构。我们为每个分布显示我们的方法能够以原子级的精度概括中间原子模型。

Cryogenic electron microscopy (cryo-EM) provides a unique opportunity to study the structural heterogeneity of biomolecules. Being able to explain this heterogeneity with atomic models would help our understanding of their functional mechanisms but the size and ruggedness of the structural space (the space of atomic 3D cartesian coordinates) presents an immense challenge. Here, we describe a heterogeneous reconstruction method based on an atomistic representation whose deformation is reduced to a handful of collective motions through normal mode analysis. Our implementation uses an autoencoder. The encoder jointly estimates the amplitude of motion along the normal modes and the 2D shift between the center of the image and the center of the molecule . The physics-based decoder aggregates a representation of the heterogeneity readily interpretable at the atomic level. We illustrate our method on 3 synthetic datasets corresponding to different distributions along a simulated trajectory of adenylate kinase transitioning from its open to its closed structures. We show for each distribution that our approach is able to recapitulate the intermediate atomic models with atomic-level accuracy.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源