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Inferring a Continuous Distribution of Atom Coordinates from Cryo-EM Images using VAEs
by
Huber, Andrea
, Zielinski, Michal
, Ronneberger, Olaf
, Clancy, Ellen
, Beattie, Charlie
, Kohli, Pushmeet
, Rosenbaum, Dan
, Senior, Andrew W
, Jumper, John
, Ali Eslami, S M
, Adler, Jonas
, Doersch, Carl
, Garnelo, Marta
in
Coders
/ Heterogeneity
/ Proteins
2021
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Inferring a Continuous Distribution of Atom Coordinates from Cryo-EM Images using VAEs
by
Huber, Andrea
, Zielinski, Michal
, Ronneberger, Olaf
, Clancy, Ellen
, Beattie, Charlie
, Kohli, Pushmeet
, Rosenbaum, Dan
, Senior, Andrew W
, Jumper, John
, Ali Eslami, S M
, Adler, Jonas
, Doersch, Carl
, Garnelo, Marta
in
Coders
/ Heterogeneity
/ Proteins
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Inferring a Continuous Distribution of Atom Coordinates from Cryo-EM Images using VAEs
by
Huber, Andrea
, Zielinski, Michal
, Ronneberger, Olaf
, Clancy, Ellen
, Beattie, Charlie
, Kohli, Pushmeet
, Rosenbaum, Dan
, Senior, Andrew W
, Jumper, John
, Ali Eslami, S M
, Adler, Jonas
, Doersch, Carl
, Garnelo, Marta
in
Coders
/ Heterogeneity
/ Proteins
2021
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Inferring a Continuous Distribution of Atom Coordinates from Cryo-EM Images using VAEs
Paper
Inferring a Continuous Distribution of Atom Coordinates from Cryo-EM Images using VAEs
2021
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Overview
Cryo-electron microscopy (cryo-EM) has revolutionized experimental protein structure determination. Despite advances in high resolution reconstruction, a majority of cryo-EM experiments provide either a single state of the studied macromolecule, or a relatively small number of its conformations. This reduces the effectiveness of the technique for proteins with flexible regions, which are known to play a key role in protein function. Recent methods for capturing conformational heterogeneity in cryo-EM data model it in volume space, making recovery of continuous atomic structures challenging. Here we present a fully deep-learning-based approach using variational auto-encoders (VAEs) to recover a continuous distribution of atomic protein structures and poses directly from picked particle images and demonstrate its efficacy on realistic simulated data. We hope that methods built on this work will allow incorporation of stronger prior information about protein structure and enable better understanding of non-rigid protein structures.
Publisher
Cornell University Library, arXiv.org
Subject
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