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Willow Coyote-Maestas
Willow Coyote-Maestas
Assistant Professor, UCSF
Verified email at ucsf.edu - Homepage
Title
Cited by
Cited by
Year
Two distinct pools of B12 analogs reveal community interdependencies in the ocean
KR Heal, W Qin, F Ribalet, AD Bertagnolli, W Coyote-Maestas, LR Hmelo, ...
Proceedings of the National Academy of Sciences 114 (2), 364-369, 2017
1712017
Targeted insertional mutagenesis libraries for deep domain insertion profiling
W Coyote-Maestas, D Nedrud, S Okorafor, Y He, D Schmidt
Nucleic Acids Research, 2019
352019
Determinants of trafficking, conduction, and disease within a K+ channel revealed through multiparametric deep mutational scanning
W Coyote-Maestas, D Nedrud, Y He, D Schmidt
Elife 11, e76903, 2022
312022
Domain insertion permissibility-guided engineering of allostery in ion channels
W Coyote-Maestas, Y He, CL Myers, D Schmidt
Nature communications 10 (1), 1-14, 2019
292019
Probing ion channel functional architecture and domain recombination compatibility by massively parallel domain insertion profiling
W Coyote-Maestas, D Nedrud, A Suma, Y He, KA Matreyek, DM Fowler, ...
Nature communications 12 (1), 7114, 2021
222021
DIMPLE: deep insertion, deletion, and missense mutation libraries for exploring protein variation in evolution, disease, and biology
CB Macdonald, D Nedrud, PR Grimes, D Trinidad, JS Fraser, ...
Genome biology 24 (1), 36, 2023
16*2023
A large‐scale survey of pairwise epistasis reveals a mechanism for evolutionary expansion and specialization of PDZ domains
D Nedrud, W Coyote‐Maestas, D Schmidt
Proteins: Structure, Function, and Bioinformatics 89 (8), 899-914, 2021
152021
Profiling the proximal proteome of the activated μ-opioid receptor
BJ Polacco, BT Lobingier, EE Blythe, N Abreu, P Khare, MK Howard, ...
Nature Chemical Biology, 1-11, 2024
6*2024
Conserved regulatory motifs in the juxtamembrane domain and kinase N-lobe revealed through deep mutational scanning of the MET receptor tyrosine kinase domain
GO Estevam, EM Linossi, CB Macdonald, CA Espinoza, JM Michaud, ...
bioRxiv, 2023
32023
The full spectrum of OCT1 (SLC22A1) mutations bridges transporter biophysics to drug pharmacogenomics
SW Yee, C Macdonald, D Mitrovic, X Zhou, ML Koleske, J Yang, DB Silva, ...
bioRxiv, 2023
32023
Rosace: a robust deep mutational scanning analysis framework employing position and mean-variance shrinkage
J Rao, R Xin, C Macdonald, M Howard, GO Estevam, SW Yee, M Wang, ...
bioRxiv, 2023.10. 24.562292, 2023
22023
DIMPLE library generation and assembly protocol
C Macdonald, D Nedrud, PR Grimes, D Trinidad, J Fraser, ...
12023
Defining and Reducing Variant Classification Disparities
M Dawood, S Fayer, S Pendyala, M Post, D Kalra, K Patterson, E Venner, ...
medRxiv, 2024.04. 11.24305690, 2024
2024
O01: Using multiplexed functional data to reduce the VUS burden in populations underrepresented in genomic medicine
M Dawood, S Fayer, M Post, D Kalra, K Patterson, E Venner, L Muffley, ...
Genetics in Medicine Open 2, 2024
2024
Deep insertional mutagenesis and multiplex assessment of phenotype reveals biophysical mechanisms of protein domain compatibility
D Schmidt, W Coyote-Maestas, D Nedrud, M Hoffmann
Biophysical Journal 121 (3), 156a, 2022
2022
Using deep mutational scanning to identify the determinants of antibiotic resistance
CB Macdonald, A Kelley, J Pellegrino, W Coyote-Maestas, J Fraser
Biophysical Journal 121 (3), 422a, 2022
2022
Deconvoluting receptor trafficking, regulation, and function using massively parallel assays
D Nedrud, Y He, D Schmidt, J Fraser, W Coyote-Maestas
Biophysical Journal 121 (3), 2a, 2022
2022
The Biophysical basis of protein domain compatibility
D Schmidt, W Coyote-Maestas, D Nedrud, A Suma, Y He, KA Matreyek, ...
PROTEIN SCIENCE 30, 73-74, 2021
2021
ORACLE reveals a bright future to fight bacteria
W Coyote-Maestas, JS Fraser
Elife 10, e68277, 2021
2021
Domain Insertion Scanning to Study and Engineer Ion Channels
W Coyote-Maestas
University of Minnesota, 2021
2021
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