Neal J. Zondlo
Affiliations: | Chemistry and Biochemistry | University of Delaware, Newark, DE, United States |
Area:
molecular recognitionWebsite:
http://www.chem.udel.edu/chemistry/faculty/neal-j-zondlo-associate-professorGoogle:
"Neal Joseph Zondlo"Bio:
http://www.udel.edu/chem/zondlo/
Mean distance: 7.2
Parents
Sign in to add mentorAlanna Schepartz | grad student | 1999 | Yale | |
(Miniaturized DNA- binding peptides) | ||||
Eric N. Jacobsen | post-doc | 1999-2001 | Harvard |
Children
Sign in to add traineeJesse John Spillane | research assistant | University of Delaware | |
Shalini Balakrishnan | grad student | 2007 | University of Delaware |
Feng Gao | grad student | 2010 | University of Delaware |
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Publications
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Pandey AK, Ganguly HK, Sinha SK, et al. (2023) An Inherent Difference between Serine and Threonine Phosphorylation: Phosphothreonine Strongly Prefers a Highly Ordered, Compact, Cyclic Conformation. Acs Chemical Biology |
Bhatt MR, Zondlo NJ. (2023) Synthesis and conformational preferences of peptides and proteins with cysteine sulfonic acid. Organic & Biomolecular Chemistry. 21: 2779-2800 |
Tressler CM, Zondlo NJ. (2020) Perfluoro--Butyl Hydroxyprolines as Sensitive, Conformationally Responsive Molecular Probes: Detection of Protein Kinase Activity by F NMR. Acs Chemical Biology |
Urmey AR, Zondlo NJ. (2020) Cysteine oxidation to the sulfinic acid induces oxoform-specific lanthanide binding and fluorescence in a designed peptide. Free Radical Biology & Medicine |
Urmey AR, Zondlo NJ. (2020) Synthesis of peptides with cysteine sulfinic acid via the cysteine methoxybenzyl sulfone Peptide Science. 112 |
Urmey AR, Zondlo NJ. (2019) Structural preferences of cysteine sulfinic acid: The sulfinate engages in multiple local interactions with the peptide backbone. Free Radical Biology & Medicine |
Costantini NV, Ganguly HK, Martin MI, et al. (2019) The distinct conformational landscapes of 4S-substituted prolines that promote an endo ring pucker. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Urmey AR, Zondlo NJ. (2019) Design of a Protein Motif Responsive to Tyrosine Nitration and an Encoded Turn-Off Sensor of Tyrosine Nitration. Biochemistry |
Gao F, Thornley BS, Tressler CM, et al. (2019) Phosphorylation-dependent protein design: design of a minimal protein kinase-inducible domain. Organic & Biomolecular Chemistry |
Wenzell NA, Ganguly HK, Pandey AK, et al. (2018) Electronic and steric control of n→π* interactions: stabilization of the α-helix conformation without a hydrogen bond. Chembiochem : a European Journal of Chemical Biology |