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Items: 1 to 20 of 86

1.

Subtle dynamics of holo glutamine binding protein revealed with a rigid paramagnetic probe.

Liu Z, Gong Z, Guo DC, Zhang WP, Tang C.

Biochemistry. 2014 Mar 11;53(9):1403-9. doi: 10.1021/bi4015715. Epub 2014 Feb 26.

PMID:
24555491
2.

Conformational and dynamics changes induced by bile acids binding to chicken liver bile acid binding protein.

Eberini I, Guerini Rocco A, Ientile AR, Baptista AM, Gianazza E, Tomaselli S, Molinari H, Ragona L.

Proteins. 2008 Jun;71(4):1889-98. doi: 10.1002/prot.21875.

PMID:
18175325
3.

Ligand-free open-closed transitions of periplasmic binding proteins: the case of glutamine-binding protein.

Bermejo GA, Strub MP, Ho C, Tjandra N.

Biochemistry. 2010 Mar 9;49(9):1893-902. doi: 10.1021/bi902045p.

4.

Interdomain dynamics and ligand binding: molecular dynamics simulations of glutamine binding protein.

Pang A, Arinaminpathy Y, Sansom MS, Biggin PC.

FEBS Lett. 2003 Aug 28;550(1-3):168-74.

5.

Open-to-closed transition in apo maltose-binding protein observed by paramagnetic NMR.

Tang C, Schwieters CD, Clore GM.

Nature. 2007 Oct 25;449(7165):1078-82.

PMID:
17960247
6.

An NMR strategy for fragment-based ligand screening utilizing a paramagnetic lanthanide probe.

Saio T, Ogura K, Shimizu K, Yokochi M, Burke TR Jr, Inagaki F.

J Biomol NMR. 2011 Nov;51(3):395-408. doi: 10.1007/s10858-011-9566-5. Epub 2011 Sep 17.

7.

Closed form of liganded glutamine-binding protein by rotational-echo double-resonance NMR.

Klug CA, Tasaki K, Tjandra N, Ho C, Schaefer J.

Biochemistry. 1997 Aug 5;36(31):9405-8.

PMID:
9235984
9.
10.

NMR dynamic studies suggest that allosteric activation regulates ligand binding in chicken liver bile acid-binding protein.

Ragona L, Catalano M, Luppi M, Cicero D, Eliseo T, Foote J, Fogolari F, Zetta L, Molinari H.

J Biol Chem. 2006 Apr 7;281(14):9697-709. Epub 2006 Jan 26.

11.

An investigation of the ligand-binding site of the glutamine-binding protein of Escherichia coli using rotational-echo double-resonance NMR.

Hing AW, Tjandra N, Cottam PF, Schaefer J, Ho C.

Biochemistry. 1994 Jul 26;33(29):8651-61.

PMID:
8038154
12.

Temperature dependence of molecular interactions involved in defining stability of glutamine binding protein and its complex with L-glutamine.

Pistolesi S, Tjandra N.

Biochemistry. 2012 Jan 17;51(2):643-52. doi: 10.1021/bi201494h. Epub 2012 Jan 6.

13.

A recombinant glutamine-binding protein from Escherichia coli: effect of ligand-binding on protein conformational dynamics.

Herman P, Vecer J, Scognamiglio V, Staiano M, Rossi M, D'Auria S.

Biotechnol Prog. 2004 Nov-Dec;20(6):1847-54.

PMID:
15575721
14.

Dynamics of cellular retinoic acid binding protein I on multiple time scales with implications for ligand binding.

Krishnan VV, Sukumar M, Gierasch LM, Cosman M.

Biochemistry. 2000 Aug 8;39(31):9119-29.

PMID:
10924105
15.

Comparison of backbone dynamics of apo- and holo-acyl-coenzyme A binding protein using 15N relaxation measurements.

Rischel C, Madsen JC, Andersen KV, Poulsen FM.

Biochemistry. 1994 Nov 29;33(47):13997-4002.

PMID:
7947808
16.

The bacterial periplasmic histidine-binding protein. structure/function analysis of the ligand-binding site and comparison with related proteins.

Oh BH, Kang CH, De Bondt H, Kim SH, Nikaido K, Joshi AK, Ames GF.

J Biol Chem. 1994 Feb 11;269(6):4135-43.

17.

Molecular dynamics simulations of ligand-induced backbone conformational changes in the binding site of the periplasmic lysine-, arginine-, ornithine-binding protein.

Yang AY, Mancera RL.

J Comput Aided Mol Des. 2008 Nov;22(11):799-814. doi: 10.1007/s10822-008-9215-6. Epub 2008 Apr 15.

PMID:
18415021
18.

Ligand-release pathways in the pheromone-binding protein of Bombyx mori.

Gräter F, de Groot BL, Jiang H, Grubmüller H.

Structure. 2006 Oct;14(10):1567-76.

20.

Binding of retinol induces changes in rat cellular retinol-binding protein II conformation and backbone dynamics.

Lu J, Lin CL, Tang C, Ponder JW, Kao JL, Cistola DP, Li E.

J Mol Biol. 2000 Jul 14;300(3):619-32.

PMID:
10884357

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