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Andrew C. Kruse

Harvard University · US
Area of research
Molecular Biology · Radiology, Nuclear Medicine and Imaging
Research interest
Research interests include Receptor Mechanisms and Signaling, Monoclonal and Polyclonal Antibodies Research, Neuropeptides and Animal Physiology, and Bacterial Genetics and Biotechnology.
h-index
61
citations
20,348
works
214
NIH funding
primary concept
email

Recent publications

A DNA-gated molecular guard controls bacterial Hailong anti-phage defence
Nature 2025cited by 12position: middledoi
<i>In silico</i> discovery of nanobody binders to a G-protein coupled receptor using AlphaFold-Multimer
Nature Communications 2025cited by 4position: middledoi
The hit-and-run of cell wall synthesis: LpoB transiently binds and activates PBP1b through a conserved allosteric switch
Nature Communications 2025cited by 4position: middledoi
AlphaFold2 structures guide prospective ligand discovery
Science 2024cited by 137position: middledoi
Antibodies expand the scope of angiotensin receptor pharmacology
Nature Chemical Biology 2024cited by 33position: lastdoi
Tetraspanins: structure, dynamics, and principles of partner-protein recognition
Trends in Cell Biology 2023cited by 77position: middledoi
Allosteric activation of cell wall synthesis during bacterial growth
Nature Communications 2023cited by 44position: middledoi
Protein design and variant prediction using autoregressive generative models
Nature Communications 2021cited by 347position: middledoi
Drug-induced phospholipidosis confounds drug repurposing for SARS-CoV-2
Science 2021cited by 222position: middledoi
Structures of the σ2 receptor enable docking for bioactive ligand discovery
Nature 2021cited by 194position: lastdoi
Rapid generation of potent antibodies by autonomous hypermutation in yeast
Nature Chemical Biology 2021cited by 128position: middledoi
Angiotensin and biased analogs induce structurally distinct active conformations within a GPCR
Science 2020cited by 246position: lastdoi
Molecular mechanism of biased signaling in a prototypical G protein–coupled receptor
Science 2020cited by 240position: middledoi
Structural coordination of polymerization and crosslinking by a SEDS–bPBP peptidoglycan synthase complex
Nature Microbiology 2020cited by 139position: lastdoi
Synthetic nanobodies as angiotensin receptor blockers
Proceedings of the National Academy of Sciences 2020cited by 60position: middledoi
FtsW is a peptidoglycan polymerase that is functional only in complex with its cognate penicillin-binding protein
Nature Microbiology 2019cited by 340position: middledoi
A Forward Chemical Genetic Screen Reveals Gut Microbiota Metabolites That Modulate Host Physiology
Cell 2019cited by 338position: middledoi
Distinctive Activation Mechanism for Angiotensin Receptor Revealed by a Synthetic Nanobody
Cell 2019cited by 192position: lastdoi
Structural basis for KCTD-mediated rapid desensitization of GABAB signalling
Nature 2019cited by 87position: lastdoi
Yeast surface display platform for rapid discovery of conformationally selective nanobodies
Nature Structural & Molecular Biology 2018cited by 579position: lastdoi
A central role for PBP2 in the activation of peptidoglycan polymerization by the bacterial cell elongation machinery
PLoS Genetics 2018cited by 148position: middledoi
Sortase ligation enables homogeneous GPCR phosphorylation to reveal diversity in β-arrestin coupling
Proceedings of the National Academy of Sciences 2018cited by 78position: middledoi
Structure-based discovery of selective positive allosteric modulators of antagonists for the M <sub>2</sub> muscarinic acetylcholine receptor
Proceedings of the National Academy of Sciences 2018cited by 72position: middledoi
Structure and mutagenic analysis of the lipid II flippase MurJ from <i>Escherichia coli</i>
Proceedings of the National Academy of Sciences 2018cited by 70position: lastdoi
Multidimensional Tracking of GPCR Signaling via Peroxidase-Catalyzed Proximity Labeling
Cell 2017cited by 281position: lastdoi
Identification of the gene that codes for the σ<sub>2</sub>receptor
Proceedings of the National Academy of Sciences 2017cited by 266position: lastdoi
Structural Basis for G Protein-Coupled Receptor Activation
Biochemistry 2017cited by 200position: lastdoi
SEDS proteins are a widespread family of bacterial cell wall polymerases
Nature 2016cited by 526position: middledoi
Crystal structure of the human σ1 receptor
Nature 2016cited by 463position: lastdoi
Allosteric nanobodies reveal the dynamic range and diverse mechanisms of G-protein-coupled receptor activation
Nature 2016cited by 328position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Aashish Manglik · Chan Zuckerberg Initiative (United States)10 papers (2012–2021)Dean P. Staus · Duke University9 papers (2013–2024)Laura M. Wingler · Duke University9 papers (2016–2024)Brian K. Kobilka · Stanford University7 papers (2012–2018)Robert J. Lefkowitz · Howard Hughes Medical Institute7 papers (2013–2020)Conor McMahon · Princeton University7 papers (2018–2024)Thomas G. Bernhardt · Howard Hughes Medical Institute7 papers (2016–2025)Sanduo Zheng · Tsinghua University5 papers (2016–2020) · 5 papers (2016–2023)Brian K. Shoichet · Quantitative BioSciences4 papers (2013–2024)Meredith A. Skiba · University of Michigan–Ann Arbor4 papers (2020–2024) · 4 papers (2016–2020)Debora S. Marks · Boston University4 papers (2018–2021)Aaron M. Ring · Fred Hutch Cancer Center4 papers (2013–2019)William I. Weis · Stanford University4 papers (2012–2016)Morgan S. A. Gilman · Dartmouth College4 papers (2020–2024) · 3 papers (2018–2020)Ron O. Dror · Stanford University3 papers (2016–2020) · 3 papers (2017–2024) · 2 papers (2019–2020)