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4FBS
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BU of 4fbs by Molmil
Structure of monomeric NT from Euprosthenops australis Major Ampullate Spidroin 1 (MaSp1)
Descriptor: BROMIDE ION, Major ampullate spidroin 1
Authors:Askarieh, G, Hedhammar, M, Rising, A, Johansson, J, Knight, S.D.
Deposit date:2012-05-23
Release date:2012-08-01
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:pH-Dependent Dimerization of Spider Silk N-Terminal Domain Requires Relocation of a Wedged Tryptophan Side Chain
J.Mol.Biol., 2012
2BFI
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BU of 2bfi by Molmil
Molecular basis for amyloid fibril formation and stability
Descriptor: SYNTHETIC PEPTIDE
Authors:Makin, O.S, Atkins, E, Sikorski, P, Johansson, J, Serpell, L.C.
Deposit date:2004-12-07
Release date:2005-01-06
Last modified:2024-05-08
Method:X-RAY DIFFRACTION (1.1 Å)
Cite:Molecular Basis for Amyloid Fibril Formation and Stability
Proc.Natl.Acad.Sci.USA, 102, 2005
2LTH
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BU of 2lth by Molmil
NMR structure of major ampullate spidroin 1 N-terminal domain at pH 5.5
Descriptor: Major ampullate spidroin 1
Authors:Otikovs, M, Jaudzems, K, Nordling, K, Landreh, M, Rising, A, Askarieh, G, Knight, S, Johansson, J.
Deposit date:2012-05-25
Release date:2013-11-27
Last modified:2024-05-15
Method:SOLUTION NMR
Cite:Sequential pH-driven dimerization and stabilization of the N-terminal domain enables rapid spider silk formation.
Nat Commun, 5, 2014
5NDA
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BU of 5nda by Molmil
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
3LR6
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BU of 3lr6 by Molmil
Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: Major ampullate spidroin 1, TRIETHYLENE GLYCOL
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Saenz, A, Casals, C, Rising, A, Johansson, J, Knight, S.D.
Deposit date:2010-02-10
Release date:2010-05-12
Last modified:2024-02-21
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
3LR2
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BU of 3lr2 by Molmil
Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: 1,2-ETHANEDIOL, DI(HYDROXYETHYL)ETHER, Major ampullate spidroin 1
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Johansson, J, Knight, S.D, Rising, A, Casals, C, Saenz, A.
Deposit date:2010-02-10
Release date:2010-05-12
Last modified:2024-02-21
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
3LR8
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BU of 3lr8 by Molmil
Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: 1,2-ETHANEDIOL, DI(HYDROXYETHYL)ETHER, Major ampullate spidroin 1, ...
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Rising, A, Johansson, J, Knight, S.D.
Deposit date:2010-02-10
Release date:2010-05-12
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
3LRD
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BU of 3lrd by Molmil
Self-assembly of spider silk proteins is controlled by a pH-sensitive relay
Descriptor: 1,2-ETHANEDIOL, Major ampullate spidroin 1, TRIETHYLENE GLYCOL
Authors:Askarieh, G, Hedhammar, H, Nordling, K, Rising, A, Johansson, J, Knight, S.D, Saenz, A, Casals, C.
Deposit date:2010-02-11
Release date:2010-05-12
Last modified:2024-04-03
Method:X-RAY DIFFRACTION (2.15 Å)
Cite:Self-assembly of spider silk proteins is controlled by a pH-sensitive relay.
Nature, 465, 2010
2LPI
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BU of 2lpi by Molmil
NMR structure of a monomeric mutant (A72R) of major ampullate spidroin 1 N-terminal domain
Descriptor: Major ampullate spidroin 1
Authors:Jaudzems, K, Nordling, K, Landreh, M, Rising, A, Askarieh, G, Knight, S.D, Johansson, J.
Deposit date:2012-02-14
Release date:2012-06-27
Last modified:2024-05-15
Method:SOLUTION NMR
Cite:pH-Dependent Dimerization of Spider Silk N-Terminal Domain Requires Relocation of a Wedged Tryptophan Side Chain.
J.Mol.Biol., 422, 2012
2LPJ
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BU of 2lpj by Molmil
NMR structure of major ampullate spidroin 1 N-terminal domain at pH 7.2
Descriptor: Major ampullate spidroin 1
Authors:Jaudzems, K, Nordling, K, Landreh, M, Rising, A, Askarieh, G, Knight, S.D, Johansson, J.
Deposit date:2012-02-14
Release date:2012-06-27
Last modified:2024-05-15
Method:SOLUTION NMR
Cite:pH-Dependent Dimerization of Spider Silk N-Terminal Domain Requires Relocation of a Wedged Tryptophan Side Chain.
J.Mol.Biol., 422, 2012
2MFZ
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BU of 2mfz by Molmil
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
Last modified:2024-05-01
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
2MX8
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BU of 2mx8 by Molmil
NMR structure of N-terminal domain from A. ventricosus minor ampullate spidroin (MiSp) at pH 7.2
Descriptor: Minor ampullate spidroin
Authors:Otikovs, M, Jaudzems, K, Chen, G, Nordling, K, Rising, A, Johansson, J.
Deposit date:2014-12-17
Release date:2015-08-19
Last modified:2023-06-14
Method:SOLUTION NMR
Cite:Diversified Structural Basis of a Conserved Molecular Mechanism for pH-Dependent Dimerization in Spider Silk N-Terminal Domains.
Chembiochem, 16, 2015
2MX9
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BU of 2mx9 by Molmil
NMR structure of N-terminal domain from A. ventricosus minor ampullate spidroin (MiSp) at pH 5.5
Descriptor: Minor ampullate spidroin
Authors:Otikovs, M, Jaudzems, K, Chen, G, Nordling, K, Rising, A, Johansson, J.
Deposit date:2014-12-17
Release date:2015-08-19
Method:SOLUTION NMR
Cite:Diversified Structural Basis of a Conserved Molecular Mechanism for pH-Dependent Dimerization in Spider Silk N-Terminal Domains.
Chembiochem, 16, 2015
8CJ7
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BU of 8cj7 by Molmil
HDAC6 selective degraded (difluoromethyl)-1,3,4-oxadiazole substrate inhibitor
Descriptor: 6-[(5-pyridin-2-yl-1,2$l^{4},3,4-tetrazacyclopenta-1,3-dien-2-yl)methyl]pyridine-3-carbohydrazide, Histone deacetylase 6, IODIDE ION, ...
Authors:Sandmark, J, Ek, M, Ripa, L.
Deposit date:2023-02-12
Release date:2023-10-18
Last modified:2023-11-01
Method:X-RAY DIFFRACTION (1.51 Å)
Cite:Selective and Bioavailable HDAC6 2-(Difluoromethyl)-1,3,4-oxadiazole Substrate Inhibitors and Modeling of Their Bioactivation Mechanism.
J.Med.Chem., 66, 2023
8C7S
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BU of 8c7s by Molmil
Transcriptional pleiotropic repressor CodY from Staphylococcus aureus in complex with Ile, GTP, and a 30-bp DNA fragment encompassing two overlapping binding sites
Descriptor: DNA (30-MER), GUANOSINE-5'-TRIPHOSPHATE, Global transcriptional regulator CodY (Fragment), ...
Authors:Hainzl, T, Sauer-Eriksson, A.E.
Deposit date:2023-01-17
Release date:2023-07-19
Last modified:2023-11-15
Method:X-RAY DIFFRACTION (3.05 Å)
Cite:Structural insights into CodY activation and DNA recognition.
Nucleic Acids Res., 51, 2023
6T5I
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BU of 6t5i by Molmil
The Transcriptional Regulator PrfA from Listeria Monocytogenes in complex with inhibitor of WNT production (IWP)-2
Descriptor: DIMETHYL SULFOXIDE, Listeriolysin positive regulatory factor A, SODIUM ION, ...
Authors:Oelker, M, Grundstrom, C, Blumenthal, A, Sauer-Eriksson, A.E.
Deposit date:2019-10-16
Release date:2021-10-27
Last modified:2024-01-24
Method:X-RAY DIFFRACTION (2 Å)
Cite:Inhibition of the master regulator of Listeria monocytogenes virulence enables bacterial clearance from spacious replication vacuoles in infected macrophages.
Plos Pathog., 18, 2022
7OOM
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BU of 7oom by Molmil
N-terminal domain of FlSp spidroin from Nephila clavipes
Descriptor: Flagelliform spidroin variant 1
Authors:Tars, K, Metlans, R, Fridmanis, J, Jaudzems, K.
Deposit date:2021-05-28
Release date:2022-06-08
Last modified:2023-06-14
Method:X-RAY DIFFRACTION (1.8 Å)
Cite:The dimerization mechanism of the N-terminal domain of spider silk proteins is conserved despite extensive sequence divergence.
J.Biol.Chem., 298, 2022
7NHL
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BU of 7nhl by Molmil
VgaA-LC, an antibiotic resistance ABCF, in complex with 70S ribosome from Staphylococcus aureus
Descriptor: 16S rRNA, 23S rRNA, 30S ribosomal protein S10, ...
Authors:Crowe-McAuliffe, C, Murina, V, Hauryliuk, V, Wilson, D.N.
Deposit date:2021-02-10
Release date:2021-05-05
Last modified:2024-05-01
Method:ELECTRON MICROSCOPY (3.1 Å)
Cite:Structural basis of ABCF-mediated resistance to pleuromutilin, lincosamide, and streptogramin A antibiotics in Gram-positive pathogens.
Nat Commun, 12, 2021
7NHN
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BU of 7nhn by Molmil
VgaL, an antibiotic resistance ABCF, in complex with 70S ribosome from Listeria monocytogenes
Descriptor: 16S rRNA, 23S rRNA, 30S ribosomal protein S10, ...
Authors:Crowe-McAuliffe, C, Turnbull, K.J, Hauryliuk, V, Wilson, D.N.
Deposit date:2021-02-10
Release date:2021-05-05
Last modified:2024-05-01
Method:ELECTRON MICROSCOPY (2.9 Å)
Cite:Structural basis of ABCF-mediated resistance to pleuromutilin, lincosamide, and streptogramin A antibiotics in Gram-positive pathogens.
Nat Commun, 12, 2021
7NHM
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BU of 7nhm by Molmil
70S ribosome from Staphylococcus aureus
Descriptor: 16S rRNA, 23S rRNA, 30S ribosomal protein S10, ...
Authors:Crowe-McAuliffe, C, Murina, V, Hauryliuk, V, Wilson, D.N.
Deposit date:2021-02-10
Release date:2021-05-05
Last modified:2024-05-01
Method:ELECTRON MICROSCOPY (3.1 Å)
Cite:Structural basis of ABCF-mediated resistance to pleuromutilin, lincosamide, and streptogramin A antibiotics in Gram-positive pathogens.
Nat Commun, 12, 2021
7NHK
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BU of 7nhk by Molmil
LsaA, an antibiotic resistance ABCF, in complex with 70S ribosome from Enterococcus faecalis
Descriptor: 1,4-DIAMINOBUTANE, 16S rRNA, 23S rRNA, ...
Authors:Crowe-McAuliffe, C, Kasari, M, Hauryliuk, V.H, Wilson, D.N.
Deposit date:2021-02-10
Release date:2021-05-05
Last modified:2021-06-23
Method:ELECTRON MICROSCOPY (2.9 Å)
Cite:Structural basis of ABCF-mediated resistance to pleuromutilin, lincosamide, and streptogramin A antibiotics in Gram-positive pathogens.
Nat Commun, 12, 2021
6TV5
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BU of 6tv5 by Molmil
NMR structure of N-terminal domain from A. argentata tubuliform spidroin (TuSp) at pH 5.5
Descriptor: Tubuliform spidroin 1
Authors:Fridmanis, J, Jaudzems, K.
Deposit date:2020-01-09
Release date:2021-01-27
Last modified:2023-06-14
Method:SOLUTION NMR
Cite:Solution Structure of Tubuliform Spidroin N-Terminal Domain and Implications for pH Dependent Dimerization.
Front Mol Biosci, 9, 2022
8A63
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BU of 8a63 by Molmil
Cryo-EM structure of Listeria monocytogenes 50S ribosomal subunit.
Descriptor: 1,4-DIAMINOBUTANE, 23S ribosomal RNA, 50S ribosomal protein L13, ...
Authors:Koller, T.O, Crowe-McAuliffe, C, Wilson, D.N.
Deposit date:2022-06-16
Release date:2022-11-02
Last modified:2022-11-16
Method:ELECTRON MICROSCOPY (3.1 Å)
Cite:Structural basis for HflXr-mediated antibiotic resistance in Listeria monocytogenes.
Nucleic Acids Res., 50, 2022
8A5I
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BU of 8a5i by Molmil
Cryo-EM structure of Lincomycin bound to the Listeria monocytogenes 50S ribosomal subunit.
Descriptor: 1,4-DIAMINOBUTANE, 23S ribosomal RNA, 50S ribosomal protein L13, ...
Authors:Koller, T.O, Crowe-McAuliffe, C, Wilson, D.N.
Deposit date:2022-06-15
Release date:2022-11-02
Last modified:2022-11-16
Method:ELECTRON MICROSCOPY (2.3 Å)
Cite:Structural basis for HflXr-mediated antibiotic resistance in Listeria monocytogenes.
Nucleic Acids Res., 50, 2022
8A57
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BU of 8a57 by Molmil
Cryo-EM structure of HflXr bound to the Listeria monocytogenes 50S ribosomal subunit.
Descriptor: 1,4-DIAMINOBUTANE, 23S ribosomal RNA, 50S ribosomal protein L11, ...
Authors:Koller, T.O, Crowe-McAuliffe, C, Wilson, D.N.
Deposit date:2022-06-14
Release date:2022-11-02
Last modified:2022-11-16
Method:ELECTRON MICROSCOPY (2.3 Å)
Cite:Structural basis for HflXr-mediated antibiotic resistance in Listeria monocytogenes.
Nucleic Acids Res., 50, 2022

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