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Entry ID Original Release date Data summary Entry Title Citation Title Authors
19674 2015-01-12 Chemical Shifts: 1 set
Solution structure of the CLAVATA encoded peptide of Arabidopsis thaliana - AtCLE10 Inferring function of CLE peptides from high resolution tertiary structures Download bibtex for citation iamge Benjamin G Bobay, David Mck Bird, Peter M DiGennaro
19678 2014-12-22 Chemical Shifts: 1 set
Solution structure of the CLAVATA-like encoded peptide of Meloidogyne hapla - MhCLE5 Inferring function of CLE peptides from high resolution tertiary structures Download bibtex for citation iamge Benjamin M Bobay, David Mck Bird, Peter G DiGennaro
19675 2014-12-22 Chemical Shifts: 1 set
Solution structure of the CLAVATA encoded peptide of Arabidopsis thaliana - AtCLE44 Inferring function of CLE peptides from high resolution tertiary structures Download bibtex for citation iamge Benjamin G Bobay, David Mck Bird, Peter M DiGennaro
19677 2014-12-22 Chemical Shifts: 1 set
Solution structure of the CLAVATA-like encoded peptide of Meloidogyne hapla - MhCLE4 Inferring function of CLE peptides from high resolution tertiary structures Download bibtex for citation iamge Benjamin G Bobay, David Mck Bird, Peter M DiGennaro
19679 2014-12-22 Chemical Shifts: 1 set
Solution structure of the CLAVATA-like encoded peptide of Meloidogyne hapla - MhCLE6/7 Inferring function of CLE peptides from high resolution tertiary structures Download bibtex for citation iamge Benjamin G Bobay, David Mck Bird, Peter M DiGennaro
18753 2013-09-10 Chemical Shifts: 1 set
Structure of the biofilm matrix promoter AbbA from B. subtilis Structure of the biofilm matrix promoter AbbA from B. subtilis Download bibtex for citation iamge Allison V Banse, Andrew L Olson, Ashley T Tucker, Benjamin G Bobay, John Cavanagh, Kristen M Varney, Richard Losick, Richele J Thompson
11034 2008-12-11 Chemical Shifts: 1 set
Backbone 1H, 13C, and 15N Chemical Shift Assignments for N-terminal DNA Recognition Domain of the Bacillus subtilis transition-state regulator SpoVT Insights into the nature of DNA-binding of AbrB-like transcription factors Download bibtex for citation iamge Benjamin G Bobay, Daniel M Sullivan, Douglas J Kojetin, John Cavanagh, Mark A Strauch, Mark Rance, Richele J Thompson