Related ArticlesNMR characterization of the metallo-beta-lactamase from Bacteroides fragilis and its interaction with a tight-binding inhibitor: role of an active-site loop.
Understanding the structure and dynamics of the enzymes that mediate antibiotic resistance of pathogenic bacteria will allow us to take steps to combat this increasingly serious public health hazard. Complete backbone NMR resonance assignments have been made for the broad-specificity metallo-beta-lactamase CcrA from Bacteroides fragilis in the presence and absence of a tight-binding inhibitor. Chemical shift indices show that the secondary structure of the CcrA molecule in solution is very similar to that in published crystal structures. A loop adjacent to the two-zinc catalytic site exhibits significant structural variation in the published structures, but appears from the NMR experiments to be a regular beta-hairpin. Backbone heteronuclear NOE measurements indicate that this region has slightly greater flexibility on a picosecond to nanosecond time scale than the molecule as a whole. The loop appears to have an important role in the binding of substrates and inhibitors. Binding of the inhibitor 3-[2'-(S)-benzyl-3'-mercaptopropanoyl]-4-(S)-carboxy-5, 5-dimethylthiazolidine causes a marked increase in the stability of the protein toward unfolding and aggregation, and causes changes in the NMR resonance frequencies of residues close to the active (zinc-binding) site, including the beta-hairpin loop. There is a small but significant increase in the heteronuclear NOE for this loop upon inhibitor binding, indicative of a decrease in flexibility. In particular, the NOE of the indole ring of tryptophan 49, at the tip of the beta-hairpin loop, changes from a low value characteristic of a random coil chain to a significantly higher value, close to that observed for the backbone amides in this region of the protein. These results strongly suggest that the hairpin loop participates in the binding of substrate and in the shielding of the zinc sites from solvent. The broad specificity of the CcrA metallo-beta-lactamase may in fact reside in the plasticity of this part of the protein, which allows it to accommodate and bind tightly to substrates of a variety of shapes and sizes.
[NMR paper] alpha-->beta transition of beta-lactoglobulin as evidenced by heteronuclear NMR.
alpha-->beta transition of beta-lactoglobulin as evidenced by heteronuclear NMR.
Related Articles alpha-->beta transition of beta-lactoglobulin as evidenced by heteronuclear NMR.
J Mol Biol. 1998 Nov 6;283(4):731-9
Authors: Kuwata K, Hoshino M, Era S, Batt CA, Goto Y
Whereas bovine beta-lactoglobulin is a predominantly beta-sheet protein, it has a marked alpha-helical preference and can be considered to be a useful model of the alpha-->beta transition, a key issue for understanding the folding and biological function of a number of proteins....
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[NMR paper] High helicity of peptide fragments corresponding to beta-strand regions of beta-lacto
High helicity of peptide fragments corresponding to beta-strand regions of beta-lactoglobulin observed by 2D-NMR spectroscopy.
Related Articles High helicity of peptide fragments corresponding to beta-strand regions of beta-lactoglobulin observed by 2D-NMR spectroscopy.
Fold Des. 1996;1(4):255-63
Authors: Kuroda Y, Hamada D, Tanaka T, Goto Y
BACKGROUND: Whereas protein fragments, when they are structured, adopt conformations similar to that found in the native state, the high helical propensity of beta-lactoglobulin, a predominantly beta-sheet...
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[NMR paper] Solution structure of rat apo-S100B(beta beta) as determined by NMR spectroscopy.
Solution structure of rat apo-S100B(beta beta) as determined by NMR spectroscopy.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--pubs.acs.org-images-acspubs.jpg Related Articles Solution structure of rat apo-S100B(beta beta) as determined by NMR spectroscopy.
Biochemistry. 1996 Sep 10;35(36):11577-88
Authors: Drohat AC, Amburgey JC, Abildgaard F, Starich MR, Baldisseri D, Weber DJ
S100B(beta beta), a member of the S100 protein family, is a Ca(2+)-binding protein with noncovalent interactions at its dimer interface. Each apo-S100 beta...
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[NMR paper] High-resolution solution structure of the beta chemokine hMIP-1 beta by multidimensio
High-resolution solution structure of the beta chemokine hMIP-1 beta by multidimensional NMR.
Related Articles High-resolution solution structure of the beta chemokine hMIP-1 beta by multidimensional NMR.
Science. 1994 Mar 25;263(5154):1762-7
Authors: Lodi PJ, Garrett DS, Kuszewski J, Tsang ML, Weatherbee JA, Leonard WJ, Gronenborn AM, Clore GM
The three-dimensional structure of a member of the beta subfamily of chemokines, human macrophage inflammatory protein-1 beta (hMIP-1 beta), has been determined with the use of solution multidimensional...
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[NMR paper] High-resolution solution structure of the beta chemokine hMIP-1 beta by multidimensio
High-resolution solution structure of the beta chemokine hMIP-1 beta by multidimensional NMR.
Related Articles High-resolution solution structure of the beta chemokine hMIP-1 beta by multidimensional NMR.
Science. 1994 Mar 25;263(5154):1762-7
Authors: Lodi PJ, Garrett DS, Kuszewski J, Tsang ML, Weatherbee JA, Leonard WJ, Gronenborn AM, Clore GM
The three-dimensional structure of a member of the beta subfamily of chemokines, human macrophage inflammatory protein-1 beta (hMIP-1 beta), has been determined with the use of solution multidimensional...
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[NMR paper] Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding inte
Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--www3.interscience.wiley.com-aboutus-images-wiley_interscience_pubmed_logo_FREE_120x27.gif Related Articles Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
Eur J Biochem. 1991 Sep 1;200(2):345-51
Authors: Blanco FJ, Jiménez MA, Rico M, Santoro J, Herranz J, Nieto JL
In order to determine whether regions of a protein that are turns in the native...
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[NMR paper] Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding inte
Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--www3.interscience.wiley.com-aboutus-images-wiley_interscience_pubmed_logo_FREE_120x27.gif Related Articles Tendamistat (12-26) fragment. NMR characterization of isolated beta-turn folding intermediates.
Eur J Biochem. 1991 Sep 1;200(2):345-51
Authors: Blanco FJ, Jiménez MA, Rico M, Santoro J, Herranz J, Nieto JL
In order to determine whether regions of a protein that are turns in the native...