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James D. Chalmers
James D. Chalmers
University of Otago
Biology
Genetics
Cell biology
Computational biology
Antibiotic resistance
4
Papers
50
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Distinct pseudokinase domain conformations underlie divergent activation mechanisms among vertebrate MLKL orthologues.
2020
Nature Communications
Katherine A. Davies
Cheree Fitzgibbon
Samuel N. Young
Sarah E. Garnish
Wayland Yeung
Diane Coursier
Richard W. Birkinshaw
Jarrod J. Sandow
Wil I.L. Lehmann
Lung-Yu Liang
Isabelle S. Lucet
James D. Chalmers
Wayne M. Patrick
Natarajan Kannan
Emma J. Petrie
Peter E. Czabotar
James M. Murphy
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Assessment of Phenotype Microarray plates for rapid and high-throughput analysis of collateral sensitivity networks
2019
PLOS ONE
Elsie J. Dunkley
James D. Chalmers
Stephanie Cho
Thomas J. Finn
Wayne M. Patrick
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Assessment of Phenotype Microarray plates for rapid and high-throughput analysis of collateral sensitivity networks
2019
bioRxiv
Elsie J. Dunkley
James D. Chalmers
Stephanie Cho
Thomas J. Finn
Wayne M. Patrick
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The BRD3 ET domain recognizes a short peptide motif through a mechanism that is conserved across chromatin remodelers and transcriptional regulators.
2018
Journal of Biological Chemistry
Dorothy C.C. Wai
Taylor N. Szyszka
Amy E. Campbell
Cherry Kwong
Lorna Wilkinson-White
Ana P. G. Silva
Jason K. K. Low
Ann H. Kwan
Roland Gamsjaeger
James D. Chalmers
Wayne M. Patrick
Bin Lu
Christopher R. Vakoc
Gerd A. Blobel
Joel P. Mackay
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Citations (20)
1