Literature DB >> 26355788

Solving the Secondary Structure Matching Problem in Cryo-EM De Novo Modeling Using a Constrained K-Shortest Path Graph Algorithm.

Kamal Al Nasr, Desh Ranjan, Mohammad Zubair, Lin Chen, Jing He.   

Abstract

Electron cryomicroscopy is becoming a major experimental technique in solving the structures of large molecular assemblies. More and more three-dimensional images have been obtained at the medium resolutions between 5 and 10 Å. At this resolution range, major α-helices can be detected as cylindrical sticks and β-sheets can be detected as plain-like regions. A critical question in de novo modeling from cryo-EM images is to determine the match between the detected secondary structures from the image and those on the protein sequence. We formulate this matching problem into a constrained graph problem and present an O(Δ(2)N(2)2(N)) algorithm to this NP-Hard problem. The algorithm incorporates the dynamic programming approach into a constrained K-shortest path algorithm. Our method, DP-TOSS, has been tested using α-proteins with maximum 33 helices and α-β proteins up to five helices and 12 β-strands. The correct match was ranked within the top 35 for 19 of the 20 α-proteins and all nine α-β proteins tested. The results demonstrate that DP-TOSS improves accuracy, time and memory space in deriving the topologies of the secondary structure elements for proteins with a large number of secondary structures and a complex skeleton.

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Year:  2014        PMID: 26355788     DOI: 10.1109/TCBB.2014.2302803

Source DB:  PubMed          Journal:  IEEE/ACM Trans Comput Biol Bioinform        ISSN: 1545-5963            Impact factor:   3.710


  15 in total

1.  Comparing an Atomic Model or Structure to a Corresponding Cryo-electron Microscopy Image at the Central Axis of a Helix.

Authors:  Stephanie Zeil; Julio Kovacs; Willy Wriggers; Jing He
Journal:  J Comput Biol       Date:  2016-12-12       Impact factor: 1.479

2.  An Iterative Bézier Method for Fitting Beta-sheet Component of a Cryo-EM Density Map.

Authors:  Michael Poteat; Jing He
Journal:  Mol Based Math Biol       Date:  2017-04-27

3.  Combine Cryo-EM Density Map and Residue Contact for Protein Structure Prediction - A Case Study.

Authors:  Maytha Alshammari; Jing He
Journal:  ACM BCB       Date:  2020-09

4.  Using Curriculum Learning in Pattern Recognition of 3-dimensional Cryo-electron Microscopy Density Maps.

Authors:  Yangmei Deng; Yongcheng Mu; Salim Sazzed; Jiangwen Sun; Jing He
Journal:  ACM BCB       Date:  2020-09

5.  Analysis of β-strand Twist from the 3-dimensional Image of a Protein.

Authors:  Tunazzina Islam; Michael Poteat; Jing He
Journal:  ACM BCB       Date:  2017-08

6.  Exploratory Studies Detecting Secondary Structures in Medium Resolution 3D Cryo-EM Images Using Deep Convolutional Neural Networks.

Authors:  Devin Haslam; Tao Zeng; Rongjian Li; Jing He
Journal:  ACM BCB       Date:  2018-08

7.  Deep Convolutional Neural Networks for Detecting Secondary Structures in Protein Density Maps from Cryo-Electron Microscopy.

Authors:  Rongjian Li; Dong Si; Tao Zeng; Shuiwang Ji; Jing He
Journal:  Proceedings (IEEE Int Conf Bioinformatics Biomed)       Date:  2017-01-19

8.  CHALLENGES IN MATCHING SECONDARY STRUCTURES IN CRYO-EM: AN EXPLORATION.

Authors:  Devin Haslam; Mohammad Zubair; Desh Ranjan; Abhishek Biswas; Jing He
Journal:  Proceedings (IEEE Int Conf Bioinformatics Biomed)       Date:  2017-01-19

9.  Comparison of an Atomic Model and Its Cryo-EM Image at the Central Axis of a Helix.

Authors:  Jing He; Stephanie Zeil; Hussam Hallak; Kele McKaig; Julio Kovacs; Willy Wriggers
Journal:  Proceedings (IEEE Int Conf Bioinformatics Biomed)       Date:  2015-11

10.  An Effective Computational Method Incorporating Multiple Secondary Structure Predictions in Topology Determination for Cryo-EM Images.

Authors:  Abhishek Biswas; Desh Ranjan; Mohammad Zubair; Stephanie Zeil; Kamal Al Nasr; Jing He
Journal:  IEEE/ACM Trans Comput Biol Bioinform       Date:  2016-03-17       Impact factor: 3.710

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