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Entry ID Original Release date Data summary Entry Title Citation Title Authors
34551 2021-08-17 Chemical Shifts: 1 set
NMR structure of flagelliform spidroin (FlagSp) N-terminal domain from Trichonephila clavipes at pH 5.5 The dimerization mechanism of the N-terminal domain of spider silk proteins is conserved despite extensive sequence divergence Download bibtex for citation iamge Alessandro Mantese, Anna Rising, Dipen Shah, Jan Johansson, Kaspar Tars, Kellie-Ann A Walsh-White, Kristaps Jaudzems, Kristine Kitoka, Margit Kaldmae, Medoune Sarr, Michael Landreh, Nina Kronqvist, Rimants Metlans
34550 2021-08-17 Chemical Shifts: 1 set
NMR structure of flagelliform spidroin (FlagSp) N-terminal domain from Trichonephila clavipes at pH 7.2 The dimerization mechanism of the N-terminal domain of spider silk proteins is conserved despite extensive sequence divergence Download bibtex for citation iamge Alessandro Mantese, Anna Rising, Dipen Shah, Jan Johansson, Kaspar Tars, Kellie-Ann A Walsh-White, Kristaps Jaudzems, Kristine Kitoka, Margit Kaldmae, Medoune Sarr, Michael Landreh, Nina Kronqvist, Rimants Metlans
34473 2021-02-04 Chemical Shifts: 1 set
NMR structure of N-terminal domain from A. argentata tubuliform spidroin (TuSp) at pH 5.5 Solution Structure of Tubuliform Spidroin N-Terminal Domain and Implications for pH Dependent Dimerization Download bibtex for citation iamge Anna Rising, Jan Johansson, Jekabs Fridmanis, Kristaps Jaudzems, Martins Otikovs, Megija Sede, Nina Kronqvist
34114 2017-06-02 Chemical Shifts: 1 set
Spectral_peak_list: 1 set
NMR Structural Characterisation of Pharmaceutically Relevant Proteins Obtained Through a Novel Recombinant Production: The Case of The Pulmonary Surfactant Polypeptide C Analogue rSP-C33Leu. Efficient protein production inspired by how spiders make silk Download bibtex for citation iamge A Lindqvist, A Rising, B Pioselli, C V Robinson, H Biverstal, H Hebert, H Jornvall, J Johansson, K Jaudzems, K Nordling, L Sjoberg, L Venturi, M Landreh, M Otikovs, M Sarr, N Kronqvist, N Pelizzi, P Purhonen, T Curstedt, Z Toleikis
18480 2013-11-26 Chemical Shifts: 1 set
NMR structure of major ampullate spidroin 1 N-terminal domain at pH 5.5 Sequential pH-driven dimerization and stabilization of the N-terminal domain enables rapid spider silk formation. Download bibtex for citation iamge Anna Rising, Daniel Otzen, Gefei Chen, Hans Jornvall, Jan Johansson, Jerker Widengren, Kerstin Nordling, Kristaps Jaudzems, Marlene Andersson, Martins Otikovs, Medoune Sarr, Michael Landreh, Nina Kronqvist, Qing Meng, Stefan D Knight, Stefan Wennmalm, Volodymyr Chmyrov