NMR and crystallography have been used to study antigen conformational changes that occur in a trisaccharide-Fab complex in solution and in the solid state. NOE buildup rates from transferred NOE experiments show that the antigenic determinant of a Salmonella lipopolysaccharide, represented by the trisaccharide methyl glycoside alpha-D-Galp(1-->2 [alpha-D-Abep(1-->3)]- alpha-D-Manp1-->OMe (1), undergoes a protein-induced conformational shift about the Gal-->Man glycosidic linkage when it is bound by a monoclonal antibody in aqueous solution. The same trisaccharide was crystallized with Fab, and a solved structure at 2.1-A resolution revealed that the conformation of the trisaccharide ligand was similar to that seen in a dodesaccharide-Fab complex [Cygler et al. (1991) Science 253, 442-445), where the Gal-Man linkage also experienced a similar conformational shift. Distance constraints derived from the TRNOE buildup curves are consistent with two bound trisaccharide conformations, one of which correlates with the ligand conformation of the crystalline Fab-trisaccharide complex. In this bound conformation, short interatomic distances between Abe O-2 and Gal O-2 permit an oligosaccharide intramolecular hydrogen bond. Despite its relatively low energy, a preponderance of this conformer could not be detected in aqueous or DMSO solutions of free trisaccharide by either 1H or 13C NMR experiments. In DMSO, a different intramolecular hydrogen bond between Abe O-2 and Man O-4 was observed due to a solvent-induced shift in the conformational equilibria (relative to aqueous solution). Molecular modeling of the trisaccharide in the binding site and as the free ligand suggested that the protein imposes an induced fit on the antigen, primarily resulting in a shift of the Gal-Man phi torsional angle. This reduces the interproton separation between Abe H-3 and Gal H-1 with a marked increase in the intensity of the previously weak NOEs between the protons of the noncovalently linked galactose and abequose residues. The impact of the conformational shift on gross trisaccharide topology is sufficiently small that binding modes inferred from functional group replacements are not impaired.
[NMR paper] Solution NMR structure of the 48-kDa IIAMannose-HPr complex of the Escherichia coli m
Solution NMR structure of the 48-kDa IIAMannose-HPr complex of the Escherichia coli mannose phosphotransferase system.
Related Articles Solution NMR structure of the 48-kDa IIAMannose-HPr complex of the Escherichia coli mannose phosphotransferase system.
J Biol Chem. 2005 May 27;280(21):20775-84
Authors: Williams DC, Cai M, Suh JY, Peterkofsky A, Clore GM
The solution structure of the 48-kDa IIA(Man)-HPr complex of the mannose branch of the Escherichia coli phosphotransferase system has been solved by NMR using conjoined rigid body/torsion...
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11-24-2010 11:14 PM
[NMR paper] NMR solution structure of the isolated Apo Pin1 WW domain: comparison to the x-ray cr
NMR solution structure of the isolated Apo Pin1 WW domain: comparison to the x-ray crystal structures of Pin1.
Related Articles NMR solution structure of the isolated Apo Pin1 WW domain: comparison to the x-ray crystal structures of Pin1.
Biopolymers. 2002 Feb;63(2):111-21
Authors: Kowalski JA, Liu K, Kelly JW
The NMR solution structure of the isolated Apo Pin1 WW domain (6-39) reveals that it adopts a twisted three-stranded antiparallel beta-sheet conformation, very similar to the structure exhibited by the crystal of this domain in the...
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NMR Solution Structure of a DNA-Actinomycin D Complex Containing a Non-Hydrogen-Bondi
NMR Solution Structure of a DNA-Actinomycin D Complex Containing a Non-Hydrogen-Bonding Pair in the Binding Site
Shannen L. Cravens, Alyssa C. Navapanich, Bernhard H. Geierstanger, Deborah C. Tahmassebi and Tammy J. Dwyer
http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jacsat/0/jacsat.ahead-of-print/ja107575f/aop/images/medium/ja-2010-07575f_0011.gif
Journal of the American Chemical Society
DOI: 10.1021/ja107575f
http://feeds.feedburner.com/~ff/acs/jacsat?d=yIl2AUoC8zA
http://feeds.feedburner.com/~r/acs/jacsat/~4/tQROiStkm5c
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[NMR paper] NMR structure of an anti-gp120 antibody complex with a V3 peptide reveals a surface i
NMR structure of an anti-gp120 antibody complex with a V3 peptide reveals a surface important for co-receptor binding.
Related Articles NMR structure of an anti-gp120 antibody complex with a V3 peptide reveals a surface important for co-receptor binding.
Structure. 2000 Apr 15;8(4):385-95
Authors: Tugarinov V, Zvi A, Levy R, Hayek Y, Matsushita S, Anglister J
BACKGROUND: The protein 0.5beta is a potent strain-specific human immunodeficiency virus type 1 (HIV-1) neutralizing antibody raised against the entire envelope glycoprotein (gp120) of...
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11-18-2010 09:15 PM
[NMR paper] NMR solution structure of a complex of calmodulin with a binding peptide of the Ca2+
NMR solution structure of a complex of calmodulin with a binding peptide of the Ca2+ pump.
Related Articles NMR solution structure of a complex of calmodulin with a binding peptide of the Ca2+ pump.
Biochemistry. 1999 Sep 21;38(38):12320-32
Authors: Elshorst B, Hennig M, Försterling H, Diener A, Maurer M, Schulte P, Schwalbe H, Griesinger C, Krebs J, Schmid H, Vorherr T, Carafoli E
The three-dimensional structure of the complex between calmodulin (CaM) and a peptide corresponding to the N-terminal portion of the CaM-binding domain of the...
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11-18-2010 08:31 PM
[NMR paper] Determination of the NMR solution structure of a specific DNA complex of the Myb DNA-
Determination of the NMR solution structure of a specific DNA complex of the Myb DNA-binding domain.
Related Articles Determination of the NMR solution structure of a specific DNA complex of the Myb DNA-binding domain.
J Biomol NMR. 1995 Nov;6(3):294-305
Authors: Morikawa S, Ogata K, Sekikawa A, Sarai A, Ishii S, Nishimura Y, Nakamura H
The solution structure of a specific DNA complex of the minimum DNA-binding domain of the mouse c-Myb protein was determined by distance geometry calculations using a set of 1732 nuclear Overhauser enhancement...
[NMR paper] NMR-derived model for a peptide-antibody complex.
NMR-derived model for a peptide-antibody complex.
Related Articles NMR-derived model for a peptide-antibody complex.
Biochemistry. 1990 Oct 30;29(43):10032-41
Authors: Zilber B, Scherf T, Levitt M, Anglister J
The TE34 monoclonal antibody against cholera toxin peptide 3 (CTP3; VEVPGSQHIDSQKKA) was sequenced and investigated by two-dimensional transferred NOE difference spectroscopy and molecular modeling. The VH sequence of TE34, which does not bind cholera toxin, shares remarkable homology to that of TE32 and TE33, which are both anti-CTP3...