Ivet Bahar
Affiliations: | University of Pittsburgh, Pittsburgh, PA, United States |
Area:
General Biophysics, Bioinformatics Biology, Biostatistics BiologyWebsite:
https://www.csb.pitt.edu/people/faculty/ivet-bahar/Google:
"Ivet Bahar"Children
Sign in to add traineeOzlem Keskin | grad student | (Computational Biology Tree) | |
Taner Z. Sen | grad student | (Chemistry Tree) | |
Pemra Doruker | grad student | 1995 | Bogazici University (Neurotree) |
Lee-Wei Yang | grad student | 2005 | University of Pittsburgh |
Ahmet Bakan | grad student | 2009 | University of Pittsburgh |
Lidio M. Meireles | grad student | 2011 | University of Pittsburgh |
Anindita Dutta | grad student | 2013 | University of Pittsburgh |
She Zhang | grad student | 2014-2020 | University of Pittsburgh |
Mert Gur | post-doc | (Chemistry Tree) | |
ANA LIGIA SCOTT | post-doc | University of Pittsburgh (Chemistry Tree) | |
Ignacio General | research scientist | 2012-2014 | University of Pittsburgh (Physics Tree) |
Bing Liu | research scientist | 2014-2016 | University of Pittsburgh (Computer Science Tree) |
Collaborators
Sign in to add collaboratorJianhua Xing | collaborator | (Chemistry Tree) | |
Andréia C.K. Fontana | collaborator | 2020- | (Neurotree) |
BETA: Related publications
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Publications
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Xing J, Chen Y, Zhang Y, et al. (2025) GraphVelo allows for accurate inference of multimodal omics velocities and molecular mechanisms for single cells. Research Square |
Yang-Schulz A, Zacharopoulou M, Yilmaz SZ, et al. (2025) Direct observation of small molecule activator binding to single PR65 protein. Npj Biosensing. 2: 2 |
Chen Y, Zhang Y, Gan J, et al. (2024) GraphVelo allows inference of multi-modal single cell velocities and molecular mechanisms. Biorxiv : the Preprint Server For Biology |
Zhang H, Gur M, Bahar I. (2024) Global hinge sites of proteins as target sites for drug binding. Proceedings of the National Academy of Sciences of the United States of America. 121: e2414333121 |
Banerjee A, Mathew S, Naqvi MM, et al. (2024) Influence of point mutations on PR65 conformational adaptability: Insights from molecular simulations and nanoaperture optical tweezers. Science Advances. 10: eadn2208 |
Banerjee A, Zhang S, Bahar I. (2024) Genome structural dynamics: insights from Gaussian network analysis of Hi-C data. Briefings in Functional Genomics |
Bahar I, Banerjee A, Mathew S, et al. (2023) Influence of Point Mutations on PR65 Conformational Adaptability: Insights from Nanoaperture Optical Tweezer Experiments and Molecular Simulations. Research Square |
Kaynak BT, Dahmani ZL, Doruker P, et al. (2023) Cooperative mechanics of PR65 scaffold underlies the allosteric regulation of the phosphatase PP2A. Structure (London, England : 1993) |
Banerjee A, Saha S, Tvedt NC, et al. (2022) Mutually beneficial confluence of structure-based modeling of protein dynamics and machine learning methods. Current Opinion in Structural Biology. 78: 102517 |
Todd NK, Huang Y, Lee JY, et al. (2022) GPCR kinases generate an APH1A phosphorylation barcode to regulate amyloid-β generation. Cell Reports. 40: 111110 |