Related ArticlesComparative 2D NMR studies of human insulin and des-pentapeptide insulin: sequential resonance assignment and implications for protein dynamics and receptor recognition.
Biochemistry. 1991 Jun 4;30(22):5505-15
Authors: Hua QX, Weiss MA
The solution structure and dynamics of human insulin are investigated by 2D 1H NMR spectroscopy in reference to a previously analyzed analogue, des-pentapeptide(B26-B30) insulin (DPI; Hua, Q.X., & Weiss, M.A. (1990) Biochemistry 29, 10545-10555). This spectroscopic comparison is of interest since (i) the structure of the C-terminal region of the B-chain has not been determined in the monomeric state and (ii) the role of this region in binding to the insulin receptor has been the subject of long-standing speculation. The present NMR studies are conducted in the presence of an organic cosolvent (20% acetic acid), under which conditions both proteins are monomeric and stably folded. Complete sequential assignment of human insulin is obtained and leads to the following conclusions. (1) The secondary structure of the insulin monomer (three alpha-helices and B-chain beta-turn) is similar to that observed in the 2-Zn crystal state. (2) The folding of DPI is essentially the same as the corresponding portion of intact insulin, in accord with the similarities between their respective crystal structures. However, differences between insulin and DPI are observed in the extent of conformational broadening of amide resonances, indicating that the presence or absence of residues B26-B30 influences the overall dynamics of the protein on the millisecond time scale. (3) Residues B24-B28 adopt an extended configuration in the monomer and pack against the hydrophobic core as in crystallographic dimers; residues B29 and B30 are largely disordered. This configuration differs from that described in a more organic milieu (35% acetonitrile; Kline, A.D., & Justice, R.M., Jr. (1990) Biochemistry 29, 2906-2913), suggesting that the conformation of insulin in the latter study may have been influenced by solvent composition. (4) The insulin fold is shown to provide a model for collective motions in a protein with implications for the mechanism of protein-protein recognition. To our knowledge, this paper describes the first detailed analysis of a protein NMR spectrum under conditions of extensive conformational broadening. Such an analysis is made possible in the present case by comparative study of an analogue (DPI) with more tractable spectroscopic properties.
[NMR paper] Structure and dynamics of a protein assembly. 1H-NMR studies of the 36 kDa R6 insulin
Structure and dynamics of a protein assembly. 1H-NMR studies of the 36 kDa R6 insulin hexamer.
http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--linkinghub.elsevier.com-ihub-images-PubMedLink.gif Related Articles Structure and dynamics of a protein assembly. 1H-NMR studies of the 36 kDa R6 insulin hexamer.
J Mol Biol. 1996 Apr 26;258(1):136-57
Authors: Jacoby E, Hua QX, Stern AS, Frank BH, Weiss MA
The structure and dynamics of the R6 human insulin hexamer are investigated by two- and three-dimensional homonuclear 1H-NMR spectroscopy....
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[NMR paper] Solution structure of the B-chain of insulin as determined by 1H NMR spectroscopy. Co
Solution structure of the B-chain of insulin as determined by 1H NMR spectroscopy. Comparison with the crystal structure of the insulin hexamer and with the solution structure of the insulin monomer.
Related Articles Solution structure of the B-chain of insulin as determined by 1H NMR spectroscopy. Comparison with the crystal structure of the insulin hexamer and with the solution structure of the insulin monomer.
Int J Pept Protein Res. 1995 Nov;46(5):424-33
Authors: Hawkins B, Cross K, Craik D
The solution structure of the isolated B-chain of...
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[NMR paper] Comparative studies of the interaction of human and bovine platelet factor 4 with hep
Comparative studies of the interaction of human and bovine platelet factor 4 with heparin using histidine NMR resonances as spectroscopic probes.
Related Articles Comparative studies of the interaction of human and bovine platelet factor 4 with heparin using histidine NMR resonances as spectroscopic probes.
J Protein Chem. 1993 Jun;12(3):303-9
Authors: Talpas CJ, Lee L
The pKa values of His-38 and His-50 of the heparin-binding protein, bovine platelet factor 4, are 5.6 and 6.5, respectively, as determined by 1H NMR spectroscopy. The 1H NMR...
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[NMR paper] 1H-NMR assignment and secondary structure of human insulin-like growth factor-I (IGF-
1H-NMR assignment and secondary structure of human insulin-like growth factor-I (IGF-I) in solution.
Related Articles 1H-NMR assignment and secondary structure of human insulin-like growth factor-I (IGF-I) in solution.
J Biochem. 1992 Apr;111(4):529-36
Authors: Sato A, Nishimura S, Ohkubo T, Kyogoku Y, Koyama S, Kobayashi M, Yasuda T, Kobayashi Y
Human insulin-like growth factor-I (IGF-I) was studied by two-dimensional 1H-NMR spectroscopy. Resonance assignments were obtained for all the backbone protons and almost all of the sidechain protons...
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[NMR paper] Heteronuclear 2D NMR studies of an engineered insulin monomer: assignment and charact
Heteronuclear 2D NMR studies of an engineered insulin monomer: assignment and characterization of the receptor-binding surface by selective 2H and 13C labeling with application to protein design.
Related Articles Heteronuclear 2D NMR studies of an engineered insulin monomer: assignment and characterization of the receptor-binding surface by selective 2H and 13C labeling with application to protein design.
Biochemistry. 1991 Jul 30;30(30):7373-89
Authors: Weiss MA, Hua QX, Lynch CS, Frank BH, Shoelson SE
Insulin provides an important model for...
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[NMR paper] Heteronuclear 2D NMR studies of an engineered insulin monomer: assignment and charact
Heteronuclear 2D NMR studies of an engineered insulin monomer: assignment and characterization of the receptor-binding surface by selective 2H and 13C labeling with application to protein design.
Related Articles Heteronuclear 2D NMR studies of an engineered insulin monomer: assignment and characterization of the receptor-binding surface by selective 2H and 13C labeling with application to protein design.
Biochemistry. 1991 Jul 30;30(30):7373-89
Authors: Weiss MA, Hua QX, Lynch CS, Frank BH, Shoelson SE
Insulin provides an important model for...
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[NMR paper] Complete sequence-specific 1H NMR assignments for human insulin.
Complete sequence-specific 1H NMR assignments for human insulin.
Related Articles Complete sequence-specific 1H NMR assignments for human insulin.
Biochemistry. 1990 Mar 27;29(12):2906-13
Authors: Kline AD, Justice RM
Solvent conditions where human insulin could be studied by high-resolution NMR were determined. Both low pH and addition of acetonitrile were required to overcome the protein's self-association and to obtain useful spectra. Two hundred eighty-six 1H resonances were located and assigned to specific sites on the protein by using...