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/vufind/Search/Results?lookfor=%22Raisinghani%2C+Nishank%22&type=Person&sort=year
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PubPharm (13)
1
Ensemble-Based Mutational Profiling and Network Analysis of the SARS-CoV-2 Spike Omicron XBB Lineages for Interactions with the ACE2 Receptor and Antibodies : Cooperation of Binding Hotspots in Mediating Epistatic Couplings Underlies Binding Mechanism and Immune Escape
enthalten in:
International journal of molecular sciences
| 2024
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +1
Wird geladen...
2
Predicting Functional Conformational Ensembles and Binding Mechanisms of Convergent Evolution for SARS-CoV-2 Spike Omicron Variants Using AlphaFold2 Sequence Scanning Adaptations and Molecular Dynamics Simulations
enthalten in:
bioRxiv.org
| 2024
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +3
Wird geladen...
3
Predicting Functional Conformational Ensembles and Binding Mechanisms of Convergent Evolution for SARS-CoV-2 Spike Omicron Variants Using AlphaFold2 Sequence Scanning Adaptations and Molecular Dynamics Simulations
enthalten in:
bioRxiv : the preprint server for biology
| 2024
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +3
Wird geladen...
4
AlphaFold2-Enabled Atomistic Modeling of Structure, Conformational Ensembles, and Binding Energetics of the SARS-CoV-2 Omicron BA.2.86 Spike Protein with ACE2 Host Receptor and Antibodies : Compensatory Functional Effects of Binding Hotspots in Modulating Mechanisms of Receptor Binding and Immune Escape
enthalten in:
Journal of chemical information and modeling
| 2024
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +3
Wird geladen...
5
Interpretable Atomistic Prediction and Functional Analysis of Conformational Ensembles and Allosteric States in Protein Kinases Using AlphaFold2 Adaptation with Randomized Sequence Scanning and Local Frustration Profiling
enthalten in:
bioRxiv.org
| 2024
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +4
Wird geladen...
6
Interpretable Atomistic Prediction and Functional Analysis of Conformational Ensembles and Allosteric States in Protein Kinases Using AlphaFold2 Adaptation with Randomized Sequence Scanning and Local Frustration Profiling
enthalten in:
bioRxiv : the preprint server for biology
| 2024
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +4
Wird geladen...
7
AlphaFold2-Enabled Atomistic Modeling of Epistatic Binding Mechanisms for the SARS-CoV-2 Spike Omicron XBB.1.5, EG.5 and FLip Variants: Convergent Evolution Hotspots Cooperate to Control Stability and Conformational Adaptability in Balancing ACE2 Binding and Antibody Resistance
enthalten in:
bioRxiv.org
| 2023
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +3
Wird geladen...
8
AlphaFold2-Enabled Atomistic Modeling of Epistatic Binding Mechanisms for the SARS-CoV-2 Spike Omicron XBB.1.5, EG.5 and FLip Variants : Convergent Evolution Hotspots Cooperate to Control Stability and Conformational Adaptability in Balancing ACE2 Binding and Antibody Resistance
enthalten in:
bioRxiv : the preprint server for biology
| 2023
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +3
Wird geladen...
9
Accurate Characterization of Conformational Ensembles and Binding Mechanisms of the SARS-CoV-2 Omicron BA.2 and BA.2.86 Spike Protein with the Host Receptor and Distinct Classes of Antibodies Using AlphaFold2-Augmented Integrative Computational Modeling
enthalten in:
bioRxiv.org
| 2023
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +3
Wird geladen...
10
Accurate Characterization of Conformational Ensembles and Binding Mechanisms of the SARS-CoV-2 Omicron BA.2 and BA.2.86 Spike Protein with the Host Receptor and Distinct Classes of Antibodies Using AlphaFold2-Augmented Integrative Computational Modeling
enthalten in:
bioRxiv : the preprint server for biology
| 2023
von
Raisinghani, N.
|
Alshahrani, M.
|
Gupta, G.
| +3
Wird geladen...
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ResearchSquare.com
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620
2
Angiotensin-Converting Enzyme 2
2
EC 3.4.17.23
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Spike Glycoprotein, Coronavirus
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spike protein, SARS-CoV-2
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allosteric communications
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antibody binding
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binding energetics
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immune evasion
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mutational scanning
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Erscheinungszeitraum
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2024
7
2023
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