Author results

2IW3
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ELONGATION FACTOR 3 IN COMPLEX WITH ADP
Descriptor:ELONGATION FACTOR 3A, ADENOSINE-5'-DIPHOSPHATE, SULFATE ION
Authors:Andersen, C.B.F., Becker, T., Blau, M., Anand, M., Halic, M., Balar, B., Mielke, T., Boesen, T., Pedersen, J.S., Spahn, C.M.T., Kinzy, T.G., Andersen, G.R., Beckmann, R.
Deposit date:2006-06-26
Release date:2006-08-17
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:Structure of Eef3 and the Mechanism of Transfer RNA Release from the E-Site.
Nature, 443, 2006
2IWH
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STRUCTURE OF YEAST ELONGATION FACTOR 3 IN COMPLEX WITH ADPNP
Descriptor:ELONGATION FACTOR 3A, PHOSPHOAMINOPHOSPHONIC ACID-ADENYLATE ESTER, SULFATE ION
Authors:Andersen, C.B.F., Becker, T., Blau, M., Anand, M., Halic, M., Balar, B., Mielke, T., Boesen, T., Pedersen, J.S., Spahn, C.M.T., Kinzy, T.G., Andersen, G.R., Beckmann, R.
Deposit date:2006-06-30
Release date:2006-08-09
Last modified:2019-07-24
Method:X-RAY DIFFRACTION (3 Å)
Cite:Structure of Eef3 and the Mechanism of Transfer RNA Release from the E-Site.
Nature, 443, 2006
2IX3
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STRUCTURE OF YEAST ELONGATION FACTOR 3
Descriptor:ELONGATION FACTOR 3, SULFATE ION
Authors:Andersen, C.B.F., Becker, T., Blau, M., Anand, M., Halic, M., Balar, B., Mielke, T., Boesen, T., Pedersen, J.S., Spahn, C.M.T., Kinzy, T.G., Andersen, G.R., Beckmann, R.
Deposit date:2006-07-06
Release date:2006-08-08
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2.7 Å)
Cite:Structure of Eef3 and the Mechanism of Transfer RNA Release from the E-Site.
Nature, 443, 2006
2IX8
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MODEL FOR EEF3 BOUND TO AN 80S RIBOSOME
Descriptor:ELONGATION FACTOR 3A
Authors:Andersen, C.B.F., Becker, T., Blau, M., Anand, M., Halic, M., Balar, B., Mielke, T., Boesen, T., Pedersen, J.S., Spahn, C.M.T., Kinzy, T.G., Andersen, G.R., Beckmann, R.
Deposit date:2006-07-07
Release date:2007-07-10
Last modified:2017-08-23
Method:ELECTRON MICROSCOPY (6 Å)
Cite:Structure of Eef3 and the Mechanism of Transfer RNA Release from the E-Site.
Nature, 443, 2006
3G2S
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VHS DOMAIN OF HUMAN GGA1 COMPLEXED WITH SORLA C-TERMINAL PEPTIDE
Descriptor:ADP-ribosylation factor-binding protein GGA1, C-terminal fragment of Sortilin-related receptor, HEXANE-1,6-DIOL
Authors:Cramer, J.F., Behrens, M.A., Gustafsen, C., Oliveira, C.L.P., Pedersen, J.S., Madsen, P., Petersen, C.M., Thirup, S.S.
Deposit date:2009-02-01
Release date:2009-12-15
Last modified:2014-02-05
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:GGA autoinhibition revisited
Traffic, 11, 2010
3G2T
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VHS DOMAIN OF HUMAN GGA1 COMPLEXED WITH SORLA C-TERMINAL PHOSPHOPEPTIDE
Descriptor:ADP-ribosylation factor-binding protein GGA1, Phosphorylated C-terminal fragment of Sortilin-related receptor, IODIDE ION
Authors:Cramer, J.F., Behrens, M.A., Gustafsen, C., Oliveira, C.L.P., Pedersen, J.S., Madsen, P., Petersen, C.M., Thirup, S.S.
Deposit date:2009-02-01
Release date:2009-12-15
Last modified:2014-02-05
Method:X-RAY DIFFRACTION (2 Å)
Cite:GGA autoinhibition revisited
Traffic, 11, 2010
3G2U
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VHS DOMAIN OF HUMAN GGA1 COMPLEXED WITH SOTILIN C-TERMINAL PEPTIDE
Descriptor:ADP-ribosylation factor-binding protein GGA1, C-terminal fragment of Sortilin, IODIDE ION
Authors:Cramer, J.F., Behrens, M.A., Gustafsen, C., Oliveira, C.L.P., Pedersen, J.S., Madsen, P., Petersen, C.M., Thirup, S.S.
Deposit date:2009-02-01
Release date:2009-12-15
Last modified:2014-02-05
Method:X-RAY DIFFRACTION (2.301 Å)
Cite:GGA autoinhibition revisited
Traffic, 11, 2010
3G2V
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VHS DOMAIN OF HUMAN GGA1 COMPLEXED WITH SOTILIN C-TERMINAL PHOSPHOPEPTIDE
Descriptor:ADP-ribosylation factor-binding protein GGA1, C-terminal fragment of Sortilin, IODIDE ION
Authors:Cramer, J.F., Behrens, M.A., Gustafsen, C., Oliveira, C.L.P., Pedersen, J.S., Madsen, P., Petersen, C.M., Thirup, S.S.
Deposit date:2009-02-01
Release date:2009-12-15
Last modified:2014-02-05
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:GGA autoinhibition revisited
Traffic, 11, 2010
3G2W
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VHS DOMAIN OF HUMAN GGA1 COMPLEXED WITH A DXXLL HINGE PEPTIDE
Descriptor:ADP-ribosylation factor-binding protein GGA1, Internal peptide of the Hinge domain of ADP-ribosylation factor-binding protein GGA1
Authors:Cramer, J.F., Behrens, M.A., Gustafsen, C., Oliveira, C.L.P., Pedersen, J.S., Madsen, P., Petersen, C.M., Thirup, S.S.
Deposit date:2009-02-01
Release date:2009-12-15
Last modified:2014-02-05
Method:X-RAY DIFFRACTION (2.4 Å)
Cite:GGA autoinhibition revisited
Traffic, 11, 2010
4F4O
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STRUCTURE OF THE HAPTOGLOBIN-HAEMOGLOBIN COMPLEX
Descriptor:Hemoglobin subunit alpha, Hemoglobin subunit beta, Haptoglobin, ...
Authors:Andersen, C.B.F., Torvund-Jensen, M., Nielsen, M.J., Oliveira, C.L.P., Hersleth, H.P., Andersen, N.H., Pedersen, J.S., Andersen, G.R., Moestrup, S.K.
Deposit date:2012-05-11
Release date:2012-08-29
Last modified:2012-09-26
Method:X-RAY DIFFRACTION (2.9 Å)
Cite:Structure of the haptoglobin-haemoglobin complex.
Nature, 489, 2012
5BTS
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STRUCTURAL AND BIOPHYSICAL CHARACTERIZATION OF A COVALENT INSULIN DIMER FORMED DURING STORAGE OF NEUTRAL FORMULATION OF HUMAN INSULIN
Descriptor:Insulin A chain, Insulin B chain
Authors:Norrman, M., Hjorth, C.F.
Deposit date:2015-06-03
Release date:2016-03-09
Last modified:2019-02-20
Method:X-RAY DIFFRACTION (1.77 Å)
Cite:Structure, Aggregation, and Activity of a Covalent Insulin Dimer Formed During Storage of Neutral Formulation of Human Insulin.
J.Pharm.Sci., 105, 2016
2HXY
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CRYSTAL STRUCTURE OF HUMAN APO-EIF4AIII
Descriptor:Probable ATP-dependent RNA helicase DDX48
Authors:Johansen, J.S., Andersen, G.R.
Deposit date:2006-08-04
Release date:2006-08-15
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (3.3 Å)
Cite:Structure of the exon junction core complex with a trapped DEAD-box ATPase bound to RNA.
Science, 313, 2006
2HYI
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STRUCTURE OF THE HUMAN EXON JUNCTION COMPLEX WITH A TRAPPED DEAD-BOX HELICASE BOUND TO RNA
Descriptor:5'-R(*UP*UP*UP*UP*UP*U)-3', Protein mago nashi homolog, RNA-binding protein 8A, ...
Authors:Andersen, C.B.F., Le Hir, H., Andersen, G.R.
Deposit date:2006-08-06
Release date:2006-08-15
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (2.3 Å)
Cite:Structure of the exon junction core complex with a trapped DEAD-box ATPase bound to RNA.
Science, 313, 2006
2ML1
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SOLUTION STRUCTURE OF ALGE6R1 SUBUNIT FROM THE AZOTOBACTER VINELANDII MANNURONAN C5-EPIMERASE
Descriptor:Poly(beta-D-mannuronate) C5 epimerase 6, CALCIUM ION
Authors:Buchinger, E., Wimmer, R., Aachmann, F.L.
Deposit date:2014-02-18
Release date:2014-10-01
Last modified:2014-12-24
Method:SOLUTION NMR
Cite:Structural and Functional Characterization of the R-modules in Alginate C-5 Epimerases AlgE4 and AlgE6 from Azotobacter vinelandii
J.Biol.Chem., 289, 2014
2ML2
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SOLUTION STRUCTURE OF ALGE6R2 SUBUNIT FROM THE AZOTOBACTER VINELANDII MANNURONAN C5-EPIMERASE
Descriptor:Poly(beta-D-mannuronate) C5 epimerase 6, CALCIUM ION
Authors:Buchinger, E., Wimmer, R., Aachmann, F.L.
Deposit date:2014-02-18
Release date:2014-10-01
Last modified:2018-08-01
Method:SOLUTION NMR
Cite:Structural and Functional Characterization of the R-modules in Alginate C-5 Epimerases AlgE4 and AlgE6 from Azotobacter vinelandii
J.Biol.Chem., 289, 2014
2ML3
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SOLUTION STRUCTURE OF ALGE6R3 SUBUNIT FROM THE AZOTOBACTER VINELANDII MANNURONAN C5-EPIMERASE
Descriptor:Poly(beta-D-mannuronate) C5 epimerase 6, CALCIUM ION
Authors:Buchinger, E., Wimmer, R., Aachmann, F.L.
Deposit date:2014-02-18
Release date:2014-10-01
Last modified:2014-12-24
Method:SOLUTION NMR
Cite:Structural and Functional Characterization of the R-modules in Alginate C-5 Epimerases AlgE4 and AlgE6 from Azotobacter vinelandii
J.Biol.Chem., 289, 2014
2PET
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LUTHERAN GLYCOPROTEIN, N-TERMINAL DOMAINS 1 AND 2.
Descriptor:Lutheran blood group glycoprotein
Authors:Burton, N., Brady, R.L.
Deposit date:2007-04-03
Release date:2007-12-04
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (1.7 Å)
Cite:The Laminin 511/521-binding site on the Lutheran blood group glycoprotein is located at the flexible junction of Ig domains 2 and 3.
Blood, 110, 2007
2PF6
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LUTHERAN GLYCOPROTEIN, N-TERMINAL DOMAINS 1 AND 2
Descriptor:Lutheran blood group glycoprotein
Authors:Burton, N., Brady, R.L.
Deposit date:2007-04-04
Release date:2007-12-04
Last modified:2017-10-18
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:The Laminin 511/521-binding site on the Lutheran blood group glycoprotein is located at the flexible junction of Ig domains 2 and 3.
Blood, 110, 2007
3CU7
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HUMAN COMPLEMENT COMPONENT 5
Descriptor:Complement C5, N-ACETYL-D-GLUCOSAMINE, CADMIUM ION
Authors:Fredslund, F., Andersen, G.R.
Deposit date:2008-04-16
Release date:2008-06-10
Last modified:2017-10-25
Method:X-RAY DIFFRACTION (3.105 Å)
Cite:Structure of and influence of a tick complement inhibitor on human complement component 5
Nat.Immunol., 9, 2008
3KFU
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CRYSTAL STRUCTURE OF THE TRANSAMIDOSOME
Descriptor:Non-discriminating and archaeal-type aspartyl-tRNA synthetase, Glutamyl-tRNA(Gln) amidotransferase subunit A, Aspartyl/glutamyl-tRNA(Asn/Gln) amidotransferase subunit B, ...
Authors:Blaise, M., Bailly, M., Frechin, M., Thirup, S., Becker, H.D., Kern, D.
Deposit date:2009-10-28
Release date:2010-08-25
Last modified:2011-07-13
Method:X-RAY DIFFRACTION (3 Å)
Cite:Crystal structure of a transfer-ribonucleoprotein particle that promotes asparagine formation.
Embo J., 29, 2010
5EZD
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CRYSTAL STRUCTURE OF A HEPATOCYTE GROWTH FACTOR ACTIVATOR INHIBITOR-1 (HAI-1) FRAGMENT COVERING THE PKD-LIKE 'INTERNAL' DOMAIN AND KUNITZ DOMAIN 1
Descriptor:Kunitz-type protease inhibitor 1, POTASSIUM ION, ACETATE ION
Authors:Hong, Z., Andreasen, P.A., Morth, J.P., Jensen, J.K.
Deposit date:2015-11-26
Release date:2016-05-18
Last modified:2016-07-13
Method:X-RAY DIFFRACTION (2.1 Å)
Cite:Crystal Structure of a Two-domain Fragment of Hepatocyte Growth Factor Activator Inhibitor-1: FUNCTIONAL INTERACTIONS BETWEEN THE KUNITZ-TYPE INHIBITOR DOMAIN-1 AND THE NEIGHBORING POLYCYSTIC KIDNEY DISEASE-LIKE DOMAIN.
J.Biol.Chem., 291, 2016
6EWY
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RIPA PEPTIDOGLYCAN HYDROLASE (RV1477, MYCOBACTERIUM TUBERCULOSIS) N-TERMINAL DOMAIN
Descriptor:Peptidoglycan endopeptidase RipA
Authors:Schnell, R., Steiner, E.M., Schneider, G., Guy, J., Bourenkov, G.
Deposit date:2017-11-07
Release date:2018-05-02
Last modified:2018-10-24
Method:X-RAY DIFFRACTION (2.2 Å)
Cite:The structure of the N-terminal module of the cell wall hydrolase RipA and its role in regulating catalytic activity.
Proteins, 86, 2018