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5NJT
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BU of 5njt by Molmil
Structure of the Bacillus subtilis hibernating 100S ribosome reveals the basis for 70S dimerization.
Descriptor: 16S ribosomal RNA, 23S ribosomal RNA, 30S ribosomal protein S10, ...
Authors:Beckert, B, Abdelshahid, M, Schaefer, H, Steinchen, W, Arenz, S, Berninghausen, O, Beckmann, R, Bange, G, Turgay, K, Wilson, D.N.
Deposit date:2017-03-29
Release date:2017-06-14
Last modified:2019-02-20
Method:ELECTRON MICROSCOPY (3.8 Å)
Cite:Structure of the Bacillus subtilis hibernating 100S ribosome reveals the basis for 70S dimerization.
EMBO J., 36, 2017
5OF1
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BU of 5of1 by Molmil
The structural versatility of TasA in B. subtilis biofilm formation
Descriptor: 2-HYDROXYBENZOIC ACID, Spore coat-associated protein N, ethane-1,2-diol
Authors:Roske, Y, Diehl, A, Ball, L, Chowdhury, A, Hiller, M, Moliere, N, Kramer, R, Nagaraj, M, Stoeppler, D, Worth, C.L, Schlegel, B, Leidert, M, Cremer, N, Eisenmenger, F, Lopez, D, Schmieder, P, Heinemann, U, Turgay, K, Akbey, U, Oschkinat, H.
Deposit date:2017-07-10
Release date:2018-03-21
Last modified:2018-04-11
Method:X-RAY DIFFRACTION (1.56 Å)
Cite:Structural changes of TasA in biofilm formation ofBacillus subtilis.
Proc. Natl. Acad. Sci. U.S.A., 115, 2018
5OF2
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BU of 5of2 by Molmil
The structural versatility of TasA in B. subtilis biofilm formation
Descriptor: 1,2-ETHANEDIOL, SULFATE ION, Spore coat-associated protein N
Authors:Roske, Y, Diehl, A, Ball, L, Chowdhury, A, Hiller, M, Moliere, N, Kramer, R, Nagaraj, M, Stoeppler, D, Worth, C.L, Schlegel, B, Leidert, M, Cremer, N, Eisenmenger, F, Lopez, D, Schmieder, P, Heinemann, U, Turgay, K, Akbey, U, Oschkinat, H.
Deposit date:2017-07-10
Release date:2018-03-21
Last modified:2024-01-17
Method:X-RAY DIFFRACTION (1.86 Å)
Cite:Structural changes of TasA in biofilm formation ofBacillus subtilis.
Proc. Natl. Acad. Sci. U.S.A., 115, 2018
6QAY
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BU of 6qay by Molmil
Structural investigation of the TasA anchoring protein TapA from Bacillus subtilis
Descriptor: TasA anchoring/assembly protein
Authors:Higman, V.A, Schmieder, P, Diehl, A, Oschkinat, H.
Deposit date:2018-12-20
Release date:2020-01-29
Last modified:2023-06-14
Method:SOLUTION NMR
Cite:TapA acts as specific chaperone in TasA filament formation by strand complementation.
Proc.Natl.Acad.Sci.USA, 120, 2023
3H0D
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BU of 3h0d by Molmil
Crystal structure of CtsR in complex with a 26bp DNA duplex
Descriptor: CtsR, DNA (26-MER), PHOSPHATE ION
Authors:Clausen, T, Fuhrmann, J.
Deposit date:2009-04-09
Release date:2009-06-30
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:McsB is a protein arginine kinase that phosphorylates and inhibits the heat-shock regulator CtsR
Science, 324, 2009
8AIF
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BU of 8aif by Molmil
TapA acts as specific chaperone in TasA non-amyloid filament formation
Descriptor: 1,2-ETHANEDIOL, NITRATE ION, YqxM protein required for localization of TasA to extracellular matrix
Authors:Roske, Y, Heinemann, U.
Deposit date:2022-07-26
Release date:2023-04-12
Last modified:2024-02-07
Method:X-RAY DIFFRACTION (1.07 Å)
Cite:TapA acts as specific chaperone in TasA filament formation by strand complementation.
Proc.Natl.Acad.Sci.USA, 120, 2023
6YXA
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BU of 6yxa by Molmil
Structure of the bifunctional Rel enzyme from B. subtilis
Descriptor: GTP pyrophosphokinase, MANGANESE (II) ION
Authors:Pausch, P, Bange, G.
Deposit date:2020-04-30
Release date:2020-09-23
Last modified:2024-01-24
Method:X-RAY DIFFRACTION (3.95 Å)
Cite:Structural Basis for Regulation of the Opposing (p)ppGpp Synthetase and Hydrolase within the Stringent Response Orchestrator Rel.
Cell Rep, 32, 2020
6HQC
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BU of 6hqc by Molmil
Structural investigation of the TasA anchoring protein TapA from Bacillus subtilis
Descriptor: 1,2-ETHANEDIOL, TasA anchoring/assembly protein
Authors:Roske, Y, Heinemann, U.
Deposit date:2018-09-24
Release date:2019-10-09
Last modified:2023-04-26
Method:X-RAY DIFFRACTION (1.28 Å)
Cite:TapA acts as specific chaperone in TasA filament formation by strand complementation.
Proc.Natl.Acad.Sci.USA, 120, 2023
6EM9
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BU of 6em9 by Molmil
S.aureus ClpC resting state, asymmetric map
Descriptor: ATP-dependent Clp protease ATP-binding subunit ClpC
Authors:Carroni, M, Mogk, A, Bukau, B, Franke, K.
Deposit date:2017-10-01
Release date:2017-12-27
Last modified:2018-11-28
Method:ELECTRON MICROSCOPY (8.4 Å)
Cite:Regulatory coiled-coil domains promote head-to-head assemblies of AAA+ chaperones essential for tunable activity control.
Elife, 6, 2017
6EMW
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BU of 6emw by Molmil
Structure of S.aureus ClpC in complex with MecA
Descriptor: ATP-dependent Clp protease ATP-binding subunit, ATP-dependent Clp protease ATP-binding subunit ClpC, Adapter protein MecA, ...
Authors:Carroni, M, Mogk, A, Bukau, B, Franke, K.
Deposit date:2017-10-03
Release date:2017-12-27
Last modified:2019-09-25
Method:ELECTRON MICROSCOPY (11 Å)
Cite:Regulatory coiled-coil domains promote head-to-head assemblies of AAA+ chaperones essential for tunable activity control.
Elife, 6, 2017
6HTQ
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BU of 6htq by Molmil
Stringent response control by a bifunctional RelA enzyme in the presence and absence of the ribosome
Descriptor: 16S rRNA, 23S ribosomal RNA, 30S ribosomal protein S10, ...
Authors:Wilson, D.N, Abdelshahid, M.
Deposit date:2018-10-04
Release date:2019-10-23
Last modified:2020-09-30
Method:ELECTRON MICROSCOPY (4.5 Å)
Cite:Structural Basis for Regulation of the Opposing (p)ppGpp Synthetase and Hydrolase within the Stringent Response Orchestrator Rel.
Cell Rep, 32, 2020
6EM8
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BU of 6em8 by Molmil
S.aureus ClpC resting state, C2 symmetrised
Descriptor: ATP-dependent Clp protease ATP-binding subunit ClpC
Authors:Carroni, M, Mogk, A.
Deposit date:2017-10-01
Release date:2017-12-27
Last modified:2019-12-11
Method:ELECTRON MICROSCOPY (8.4 Å)
Cite:Regulatory coiled-coil domains promote head-to-head assemblies of AAA+ chaperones essential for tunable activity control.
Elife, 6, 2017

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