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Jessica N Spradlin
Jessica N Spradlin
在 berkeley.edu 的电子邮件经过验证
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引用次数
引用次数
年份
Harnessing the anti-cancer natural product nimbolide for targeted protein degradation
JN Spradlin, X Hu, CC Ward, SM Brittain, MD Jones, L Ou, M To, ...
Nature chemical biology 15 (7), 747-755, 2019
3162019
Deubiquitinase-targeting chimeras for targeted protein stabilization
NJ Henning, L Boike, JN Spradlin, CC Ward, G Liu, E Zhang, BP Belcher, ...
Nature chemical biology 18 (4), 412-421, 2022
1672022
Discovery of a covalent FEM1B recruiter for targeted protein degradation applications
NJ Henning, AG Manford, JN Spradlin, SM Brittain, E Zhang, JM McKenna, ...
Journal of the American Chemical Society 144 (2), 701-708, 2022
1102022
Covalent ligand discovery against druggable hotspots targeted by anti-cancer natural products
EA Grossman, CC Ward, JN Spradlin, LA Bateman, TR Huffman, ...
Cell chemical biology 24 (11), 1368-1376. e4, 2017
1082017
Chemoproteomics-enabled discovery of covalent RNF114-based degraders that mimic natural product function
M Luo, JN Spradlin, L Boike, B Tong, SM Brittain, JM McKenna, ...
Cell chemical biology 28 (4), 559-566. e15, 2021
1012021
Bardoxolone conjugation enables targeted protein degradation of BRD4
B Tong, M Luo, Y Xie, JN Spradlin, JA Tallarico, JM McKenna, M Schirle, ...
Scientific reports 10 (1), 15543, 2020
1002020
Reimagining druggability using chemoproteomic platforms
JN Spradlin, E Zhang, DK Nomura
Accounts of Chemical Research 54 (7), 1801-1813, 2021
832021
A nimbolide-based kinase degrader preferentially degrades oncogenic BCR-ABL
B Tong, JN Spradlin, LFT Novaes, E Zhang, X Hu, M Moeller, SM Brittain, ...
ACS chemical biology 15 (7), 1788-1794, 2020
792020
Unbiased proteomic profiling uncovers a targetable GNAS/PKA/PP2A axis in small cell lung cancer stem cells
GL Coles, S Cristea, JT Webber, RS Levin, SM Moss, A He, J Sangodkar, ...
Cancer Cell 38 (1), 129-143. e7, 2020
692020
Screening a library of FDA-approved and bioactive compounds for antiviral activity against SARS-CoV-2
SB Biering, E Van Dis, E Wehri, LH Yamashiro, X Nguyenla, ...
ACS infectious diseases 7 (8), 2337-2351, 2021
252021
Insights into an efficient light-driven hybrid P450 BM3 enzyme from crystallographic, spectroscopic and biochemical studies
J Spradlin, D Lee, S Mahadevan, M Mahomed, L Tang, Q Lam, A Colbert, ...
Biochimica et Biophysica Acta (BBA)-Proteins and Proteomics 1864 (12), 1732-1738, 2016
242016
Toward abiotic sugar synthesis from CO2 electrolysis
S Cestellos-Blanco, S Louisia, MB Ross, Y Li, NE Soland, TC Detomasi, ...
Joule 6 (10), 2304-2323, 2022
222022
Photo-Brook rearrangement of acyl silanes as a strategy for photoaffinity probe design
ACS Page, SO Scholz, KN Keenan, JN Spradlin, BP Belcher, SM Brittain, ...
Chemical science 13 (13), 3851-3856, 2022
202022
Discovery of Potent Pyrazoline‐Based Covalent SARS‐CoV‐2 Main Protease Inhibitors
P Moon, CM Zammit, Q Shao, D Dovala, L Boike, NJ Henning, M Knapp, ...
ChemBioChem 24 (11), e202300116, 2023
102023
De novo Design of SARS-CoV-2 Main Protease Inhibitors
C Fischer, NA Vepřek, Z Peitsinis, KP Rühmann, C Yang, JN Spradlin, ...
Synlett 33 (05), 458-463, 2022
102022
Targeted protein degradation via a covalent reversible degrader based on bardoxolone
B Tong, M Luo, Y Xie, J Spradlin, JA Tallarico, JM McKenna, M Schirle, ...
92020
Chemoproteomics-enabled ligand screening yields covalent RNF114-based degraders that mimic natural product function
M Luo, JN Spradlin, SM Brittain, JM McKenna, JA Tallarico, M Schirle, ...
bioRxiv, 2020.07. 12.198150, 2020
22020
Correction to “Discovery of a Covalent FEM1B Recruiter for Targeted Protein Degradation Applications”
NJ Henning, AG Manford, JN Spradlin, SM Brittain, E Zhang, JM McKenna, ...
Journal of the American Chemical Society 145 (38), 21142-21142, 2023
2023
Photo-Brook rearrangement of acyl silanes as a new tool for photoaffinity probes design
J McKenna, M Schirle, J Tallarico, S Brittain, S Scholz, K Near, A Page, ...
Chem Sci, 2022
2022
C. Fischer, NA Vepřek, Z. Peitsinis, K.-P. Rühmann, C. Yang
JN Spradlin, D Dovala, DK Nomura, Y Zhang, D Trauner
Synlett 33, 401-408, 2022
2022
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