Dustin Baucom Data-verified
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Researcher
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Biography and Research Information
OverviewAI-generated summary
Dustin Baucom's research investigates the structure and dynamics of intrinsically disordered protein regions, focusing on the C-terminus of the Albino3 protein. His work integrates computational methods, such as molecular dynamics, with experimental techniques like single-molecule Förster resonance energy transfer (smFRET) to understand the conformational ensembles of these protein segments. Baucom has explored the transient local secondary structure within these disordered regions, contributing to the understanding of protein transport and membrane protein function. His publications also extend to the development and application of quantum dots for advanced imaging techniques. Baucom has collaborated with several researchers at the University of Arkansas at Fayetteville, including Colin D. Heyes, Mercede Furr, James Losey, and Mahmoud Moradi, on projects related to these areas.
Metrics
- h-index: 3
- Publications: 8
- Citations: 38
Selected Publications
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Compact, Fast Blinking Cd-Free Quantum Dots for Super-Resolution Fluorescence Imaging (2023)
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Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase (2022)
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Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase (2021)
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Integrating Molecular Dynamics and smFRET Data to Study the Conformational Ensemble of the C-Terminus of Albino3 Protein (2021)
Collaboration Network
Top Collaborators
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase
- Integrating Molecular Dynamics and smFRET Data to Study the Conformational Ensemble of the C-Terminus of Albino3 Protein
- Compact, Fast Blinking Cd-Free Quantum Dots for Super-Resolution Fluorescence Imaging
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Integrating Molecular Dynamics and smFRET Data to Study the Conformational Ensemble of the C-Terminus of Albino3 Protein
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Integrating Molecular Dynamics and smFRET Data to Study the Conformational Ensemble of the C-Terminus of Albino3 Protein
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Integrating Molecular Dynamics and smFRET Data to Study the Conformational Ensemble of the C-Terminus of Albino3 Protein
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Integrating Molecular Dynamics and smFRET Data to Study the Conformational Ensemble of the C-Terminus of Albino3 Protein
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase
- Integrating Molecular Dynamics and smFRET Data to Study the Conformational Ensemble of the C-Terminus of Albino3 Protein
- Transient local secondary structure in the intrinsically disordered C-term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase
- Transient local secondary structure in the intrinsically disordered C‐term of the Albino3 insertase
- Compact, Fast Blinking Cd-Free Quantum Dots for Super-Resolution Fluorescence Imaging
- Compact, Fast Blinking Cd-Free Quantum Dots for Super-Resolution Fluorescence Imaging
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