Michael Lammers

Affiliations: 
MRC Laboratory of Molecular Biology, Cambridge, England, United Kingdom 
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"Michael Lammers"
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Kremer M, Schulze S, Eisenbruch N, et al. (2024) Bacteria employ lysine acetylation of transcriptional regulators to adapt gene expression to cellular metabolism. Nature Communications. 15: 1674
Okada AK, Teranishi K, Ambroso MR, et al. (2021) Lysine acetylation regulates the interaction between proteins and membranes. Nature Communications. 12: 6466
Graf LG, Vogt R, Blasl AT, et al. (2021) Assays to Study Enzymatic and Non-Enzymatic Protein Lysine Acetylation In Vitro. Current Protocols. 1: e277
Neumann-Staubitz P, Lammers M, Neumann H. (2021) Genetic Code Expansion Tools to Study Lysine Acylation. Advanced Biology. e2100926
Seenivasan R, Hermanns T, Blyszcz T, et al. (2019) Mechanism and chain-specificity of RNF216/TRIAD3, the ubiquitin ligase mutated in Gordon-Holmes Syndrome. Human Molecular Genetics
Hansen BK, Gupta R, Baldus L, et al. (2019) Analysis of human acetylation stoichiometry defines mechanistic constraints on protein regulation. Nature Communications. 10: 1055
Kremer M, Nora K, Lechner M, et al. (2018) Comment on "YcgC represents a new protein deacetylase family in prokaryotes". Elife. 7
Gupta R, Somyajit K, Narita T, et al. (2018) DNA Repair Network Analysis Reveals Shieldin as a Key Regulator of NHEJ and PARP Inhibitor Sensitivity. Cell
Lammers M. (2018) Expression and Purification of Site-Specifically Lysine-Acetylated and Natively-Folded Proteins for Biophysical Investigations. Methods in Molecular Biology (Clifton, N.J.). 1728: 169-190
Kremer M, Kuhlmann N, Lechner M, et al. (2018) Author response: Comment on ‘YcgC represents a new protein deacetylase family in prokaryotes’ Elife
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