J

Jeliazko R. Jeliazkov

Providence College

ORCID: 0000-0003-4249-1955

Publishes on Monoclonal and Polyclonal Antibodies Research, Protein Structure and Dynamics, Enzyme Structure and Function. 72 papers and 4k citations.

72Publications
4kTotal Citations

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Top publicationsby citations

The Rosetta All-Atom Energy Function for Macromolecular Modeling and Design
Rebecca F. Alford, Andrew Leaver‐Fay, Jeliazko R. Jeliazkov et al.|Journal of Chemical Theory and Computation|2017
Cited by 1.6k

Over the past decade, the Rosetta biomolecular modeling suite has informed diverse biological questions and engineering challenges ranging from interpretation of low-resolution structural data to design of nanomaterials, protein therapeutics, and vaccines. Central to Rosetta's success is the energy function: a model parametrized from small-molecule and X-ray crystal structure data used to approximate the energy associated with each biomolecule conformation. This paper describes the mathematical models and physical concepts that underlie the latest Rosetta energy function, called the Rosetta Energy Function 2015 (REF15). Applying these concepts, we explain how to use Rosetta energies to identify and analyze the features of biomolecular models. Finally, we discuss the latest advances in the energy function that extend its capabilities from soluble proteins to also include membrane proteins, peptides containing noncanonical amino acids, small molecules, carbohydrates, nucleic acids, and other macromolecules.

Targeting the CoREST complex with dual histone deacetylase and demethylase inhibitors
Jay H. Kalin, Muzhou Wu, Andrea V. Gómez et al.|Nature Communications|2018
Cited by 231Open Access

Here we report corin, a synthetic hybrid agent derived from the class I HDAC inhibitor (entinostat) and an LSD1 inhibitor (tranylcypromine analog). Enzymologic analysis reveals that corin potently targets the CoREST complex and shows more sustained inhibition of CoREST complex HDAC activity compared with entinostat. Cell-based experiments demonstrate that corin exhibits a superior anti-proliferative profile against several melanoma lines and cutaneous squamous cell carcinoma lines compared to its parent monofunctional inhibitors but is less toxic to melanocytes and keratinocytes. CoREST knockdown, gene expression, and ChIP studies suggest that corin's favorable pharmacologic effects may rely on an intact CoREST complex. Corin was also effective in slowing tumor growth in a melanoma mouse xenograft model. These studies highlight the promise of a new class of two-pronged hybrid agents that may show preferential targeting of particular epigenetic regulatory complexes and offer unique therapeutic opportunities.

A compact vocabulary of paratope-epitope interactions enables predictability of antibody-antigen binding
Cited by 187Open Access

motifs; (2) distinct from non-immune protein-protein interactions; and (3) mediates specific oligo- and polyreactive interactions between paratope-epitope pairs. Our work leverages combined structure- and sequence-based learning to demonstrate that machine-learning-driven predictive paratope and epitope engineering is feasible.