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PDB: 4 results

7A0I
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NMR structure of flagelliform spidroin (FlagSp) N-terminal domain from Trichonephila clavipes at pH 7.2
Descriptor: Flagelliform spidroin variant 1
Authors:Sarr, M, Kitoka, K, Walsh-White, K.-A, Kaldmae, M, Landreh, M, Rising, A, Johansson, J, Jaudzems, K, Kronqvist, N.
Deposit date:2020-08-09
Release date:2021-08-18
Last modified:2023-06-14
Method:SOLUTION NMR
Cite:The dimerization mechanism of the N-terminal domain of spider silk proteins is conserved despite extensive sequence divergence.
J.Biol.Chem., 298, 2022
7A0O
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NMR structure of flagelliform spidroin (FlagSp) N-terminal domain from Trichonephila clavipes at pH 5.5
Descriptor: Flagelliform spidroin variant 1
Authors:Sarr, M, Kitoka, K, Walsh-White, K.-A, Kaldmae, M, Landreh, M, Rising, A, Johansson, J, Jaudzems, K, Kronqvist, N.
Deposit date:2020-08-10
Release date:2021-08-18
Last modified:2023-06-14
Method:SOLUTION NMR
Cite:The dimerization mechanism of the N-terminal domain of spider silk proteins is conserved despite extensive sequence divergence.
J.Biol.Chem., 298, 2022
5NDA
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NMR Structural Characterisation of Pharmaceutically Relevant Proteins Obtained Through a Novel Recombinant Production: The Case of The Pulmonary Surfactant Polypeptide C Analogue rSP-C33Leu.
Descriptor: rSP-C33Leu -RECOMBINANT PULMONARY SURFACTANT-ASSOCIATED POLYPEPTIDE C ANALOGUE-
Authors:Venturi, L, Pioselli, B, Johansson, J, Rising, A, Kronqvist, N, Nordling, K.
Deposit date:2017-03-08
Release date:2017-06-07
Last modified:2023-06-14
Method:SOLUTION NMR
Cite:Efficient protein production inspired by how spiders make silk.
Nat Commun, 8, 2017
2MFZ
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NMR structure of C-terminal domain from A. ventricosus minor ampullate spidroin (MiSp)
Descriptor: Minor ampullate spidroin
Authors:Otikovs, M, Jaudzems, K, Andersson, M, Chen, G, Landreh, M, Nordling, K, Kronqvist, N, Westermark, P, Jornvall, H, Knight, S, Ridderstrale, Y, Holm, L, Meng, Q, Chesler, M, Johansson, J, Rising, A.
Deposit date:2013-10-24
Release date:2014-08-20
Method:SOLUTION NMR
Cite:Carbonic Anhydrase Generates CO2 and H+ That Drive Spider Silk Formation Via Opposite Effects on the Terminal Domains
Plos Biol., 12, 2014

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