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Daniel A Nissley

Showing results (11-20 of 23) with videos related to

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The Journal of Physical Chemistry. B|May 18, 2023
Is Posttranslational Folding More Efficient Than Refolding from a Denatured State: A Computational StudyQuyen V Vu, Daniel A Nissley, Yang Jiang, et al.
The Journal of Physical Chemistry. B|April 11, 2022
Cocktail of REGN Antibodies Binds More Strongly to SARS-CoV-2 Than Its Components, but the Omicron Variant Reduces Its Neutralizing AbilityHung Nguyen, Pham Dang Lan, Daniel A Nissley, et al.
The Journal of Chemical Physics|February 4, 2024
Deciphering the free energy landscapes of SARS-CoV-2 wild type and Omicron variant interacting with human ACE2Pham Dang Lan, Daniel A Nissley, Edward P O'Brien, et al.
Journal of the American Chemical Society|March 27, 2018
Origins of the Mechanochemical Coupling of Peptide Bond Formation to Protein SynthesisBenjamin Fritch, Andrey Kosolapov, Phillip Hudson, et al.
Nature Communications|February 19, 2016
Accurate prediction of cellular co-translational folding indicates proteins can switch from post- to co-translational foldingDaniel A Nissley, Ajeet K Sharma, Nabeel Ahmed, et al.
Journal of the American Chemical Society|March 7, 2020
Electrostatic Interactions Govern Extreme Nascent Protein Ejection Times from Ribosomes and Can Delay Ribosome RecyclingDaniel A Nissley, Quyen V Vu, Fabio Trovato, et al.
The Journal of Physical Chemistry. B|August 14, 2020
Does SARS-CoV-2 Bind to Human ACE2 More Strongly Than Does SARS-CoV?Hoang Linh Nguyen, Pham Dang Lan, Nguyen Quoc Thai, et al.
Biorxiv : the Preprint Server for Biology|May 18, 2026
ANYI: The ANnotated Yeast InteractomeDaniel A Nissley, Muskan Goel, Xavier Castellanos-Girouard, et al.
Nature Communications|June 2, 2022
Universal protein misfolding intermediates can bypass the proteostasis network and remain soluble and less functionalDaniel A Nissley, Yang Jiang, Fabio Trovato, et al.
Nature Communications|June 21, 2023
How soluble misfolded proteins bypass chaperones at the molecular levelRitaban Halder, Daniel A Nissley, Ian Sitarik, et al.
Pageof 3

Showing results (11-20 of 23) with videos related to

Sort By:
Pageof 3
The Journal of Physical Chemistry. B|May 18, 2023
Is Posttranslational Folding More Efficient Than Refolding from a Denatured State: A Computational StudyQuyen V Vu, Daniel A Nissley, Yang Jiang, et al.
The Journal of Physical Chemistry. B|April 11, 2022
Cocktail of REGN Antibodies Binds More Strongly to SARS-CoV-2 Than Its Components, but the Omicron Variant Reduces Its Neutralizing AbilityHung Nguyen, Pham Dang Lan, Daniel A Nissley, et al.
The Journal of Chemical Physics|February 4, 2024
Deciphering the free energy landscapes of SARS-CoV-2 wild type and Omicron variant interacting with human ACE2Pham Dang Lan, Daniel A Nissley, Edward P O'Brien, et al.
Journal of the American Chemical Society|March 27, 2018
Origins of the Mechanochemical Coupling of Peptide Bond Formation to Protein SynthesisBenjamin Fritch, Andrey Kosolapov, Phillip Hudson, et al.
Nature Communications|February 19, 2016
Accurate prediction of cellular co-translational folding indicates proteins can switch from post- to co-translational foldingDaniel A Nissley, Ajeet K Sharma, Nabeel Ahmed, et al.
Journal of the American Chemical Society|March 7, 2020
Electrostatic Interactions Govern Extreme Nascent Protein Ejection Times from Ribosomes and Can Delay Ribosome RecyclingDaniel A Nissley, Quyen V Vu, Fabio Trovato, et al.
The Journal of Physical Chemistry. B|August 14, 2020
Does SARS-CoV-2 Bind to Human ACE2 More Strongly Than Does SARS-CoV?Hoang Linh Nguyen, Pham Dang Lan, Nguyen Quoc Thai, et al.
Biorxiv : the Preprint Server for Biology|May 18, 2026
ANYI: The ANnotated Yeast InteractomeDaniel A Nissley, Muskan Goel, Xavier Castellanos-Girouard, et al.
Nature Communications|June 2, 2022
Universal protein misfolding intermediates can bypass the proteostasis network and remain soluble and less functionalDaniel A Nissley, Yang Jiang, Fabio Trovato, et al.
Nature Communications|June 21, 2023
How soluble misfolded proteins bypass chaperones at the molecular levelRitaban Halder, Daniel A Nissley, Ian Sitarik, et al.
Pageof 3