Informace o projektu
Expressive Visualization of Protein Complexes
- Kód projektu
- MUNI/M/0822/2015
- Období řešení
- 3/2016 - 12/2018
- Investor / Programový rámec / typ projektu
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Masarykova univerzita
- Grantová agentura MU
- INTERDISCIPLINARY - Mezioborové výzkumné projekty
- Fakulta / Pracoviště MU
- Fakulta informatiky
- Další fakulta/pracoviště MU
- Přírodovědecká fakulta
Understanding the molecular machinery of proteins is a basic knowledge that contributes to advances in medicine, pharmaceutics, but also agriculture and even energy sectors. The ultimate goal of proteomic research is to describe functions of all proteins and their complexes in cellular space and life time. Protein interaction patterns are, however, very complex and revealing these is a challenging and time-consuming scientific process. One of the typical tasks of biochemists is to search for appropriate contact zones on the protein surfaces which play a crucial role in mutual interaction between these proteins. This project aims to aid the biochemists with new visualization techniques to enhance the searching for the most biologically relevant contact zones. We will develop novel visualization methods, using different focus and context techniques, specialized visualizations, and their combination to enable the users to explore the contact zones more intuitively. Moreover, the proposed visualizations will serve for mutual comparison and classification of different candidate pairs of contact zones. The ultimate goal is to design and implement a tool enabling to study spatial abstractions of proteins and their possible contact zones. These abstractions are reaching from 1D sequential representation to flattened 2D and newly designed 3D representations.
All proposed techniques will be designed in tight cooperation with the proteomics domain experts who will intensively test these new techniques using their previously and newly acquired experimental data. Particularly, using newly developed methods, biochemists will design new experiments to characterize binary protein-protein interactions between SMC5/6 complex subunits. Our experimental data and new visualization tool integrating the proposed techniques will enable us to reconstruct the architecture of the SMC5/6 complexes and model their dynamics. Moreover, the visualization tool will be provided to the biochemical community worldwide for applications to any protein complexes.
Publikace
Počet publikací: 9
2020
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Multiscale Visual Drilldown for the Analysis of Large Ensembles of Multi-Body Protein Complexes
IEEE Transactions on Visualization and Computer Graphics, rok: 2020, ročník: 26, vydání: 1, DOI
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Visual Analysis of Protein–Protein Interaction Docking Models Using COZOID Tool
Protein-Protein Interaction Networks, vydání: Vyd. 1, rok: 2020, počet stran: 14 s.
2019
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A Single Conserved Amino Acid Residue as a Critical Context-Specific Determinant of the Differential Ability of Mdm2 and MdmX RING Domains to Dimerize
Frontiers in Physiology, rok: 2019, ročník: 10, vydání: APR 9 2019, DOI
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Labels on Levels: Labeling of Multi-Scale Multi-Instance and Crowded 3D Biological Environments
IEEE Transactions on Visualization and Computer Graphics, rok: 2019, ročník: 25, vydání: 1, DOI
2018
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COZOID: COntact ZOne IDentifier for visual analysis of protein-protein interactions
BMC Bioinformatics, rok: 2018, ročník: 19, vydání: APR, DOI
2017
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KITE proteins: new insights to evolution and dynamics of SMC complexes
Rok: 2017, druh: Vyžádané přednášky
2016
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Evolution and functions of SMC complexes: new SMC5/6 insights
Rok: 2016, druh: Vyžádané přednášky
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Evolution, functions and pathogenesis of the Nse3 (KITE) subunit of the SMC5/6 complex
Rok: 2016, druh: Vyžádané přednášky
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Mapping of Smc6-Nse3 and Smc6-Nse4 interactions within the S.pombe Smc5/6 complex
Rok: 2016, druh: Další prezentace na konferencích