Related ArticlesCell adhesion promoting peptide GVKGDKGNPGWPGAP from the collagen type IV triple helix: cis/trans proline-induced multiple 1H NMR conformations and evidence for a KG/PG multiple turn repeat motif in the all-trans proline state.
Biochemistry. 1991 Aug 20;30(33):8251-67
Authors: Mayo KH, Parra-Diaz D, McCarthy JB, Chelberg M
Peptide GVKGDKGNPGWPGAPY (called peptide IV-H1), derived from the protein sequence of human collagen type IV, triple-helix domain residues 1263-1277, represents an RGD-independent, cell-specific, adhesion, spreading, and motility promoting domain in type IV collagen. In this study, peptide IV-H1 has been investigated by 1H NMR (500 MHz) spectroscopy. Cis-trans proline isomerization at each of the three proline residues gives rise to a number of slowly exchanging (500-MHz NMR time scale) conformation states. At least five such states are observed, for example, for the well-resolved A14 beta H3 group, and K3, which is six residues sequentially removed from the nearest proline, i.e., P9, shows two sets. The presence of more than two sets of resonances for residues sequentially proximal to a proline, e.g., A14-cis-P15 and A14-trans-P15, and more than one set for a residue sequentially well-removed from a proline, e.g., K3, indicates long range conformation interactions and the presence of preferred structure in this short linear peptide. Many resonances belonging to these multiple species have been assigned by using mono-proline-substituted analogues. Conformational (isomer) state-specific 2D 1H NMR assignments for the combination of cis and trans proline states have been made via analysis of COSY-type, HOHAHA, and NOESY spectra. Peptide IV-H1 in the all-trans proline state ttt exists in relatively well-defined conformation populations showing numerous short- and long-range NOEs and long-lived backbone amide protons and reduced backbone NH temperature coefficients, suggesting hydrogen-bonding, and structurally informative 3J alpha N coupling constants. The NMR data indicate significant beta-turn populations centered at K3-G4, K5-G6, P9-G10, and P12-G13, and a C-terminal gamma-turn within the A14-P15-Y16 sequence. These NMR data are supported by circular dichroic studies which indicate the presence of 52% beta-turn, 10% helix, and 38% random coil structural populations. Since equally spaced KG and PG residues are found on both sides of peptide IV-H1 in the native collagen type IV sequence, this multiple turn repeat motif may continue through a longer segment of the protein. Synthetic peptide IV-H1 overlapping sequence "walk throughs" indicate that the primary biological activity is localized in the GNPGWPGAP double beta-turn domain, which contains the backbone constraining proline residues. This proline-domain conformation may suggest a collagen type IV receptor-specific, metastatic cell adhesion promoting binding domain.
[NMR paper] Multiple quantum filtered NMR studies of the interaction between collagen and water i
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J Am Chem Soc. 2002 Mar 27;124(12):3125-32
Authors: Eliav U, Navon G
We studied the physical processes and the chemical reactions involved in magnetization transfer between water and large proteins, such as collagen, in bovine Achilles tendon. Since the NMR spectrum for such proteins is broadened by very large dipolar interactions,...
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[NMR paper] Effect of thermal denaturation on water-collagen interactions: NMR relaxation and dif
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Biopolymers. 1999 Dec;50(7):690-6
Authors: Rochdi A, Foucat L, Renou JP
The dependence of the proton spin-lattice relaxation rate, and of the enthalpy and temperature of denaturation on water content, were studied by nmr and differential scanning calorimetry (DSC) in native and...
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The Arctic mutation alters helix length and type in the 11-28 beta-amyloid peptide mo
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J Struct Biol. 2008 Nov;164(2):199-209
Authors: Rodziewicz-Motowid?o S, Czaplewska P, Sikorska E, Spodzieja M, Ko?odziejczyk AS
The beta-amyloid (Abeta) is the major peptide constituent of neuritic plaques in Alzheimer's disease, and its aggregation is believed to...
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19F NMR analysis of the antimicrobial peptide PGLa bound to native cell membranes fro
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J Am Chem Soc. 2010 Jul 7;132(26):8822-4
Authors: Ieronimo M, Afonin S, Koch K, Berditsch M, Wadhwani P, Ulrich AS
(19)F NMR is a unique tool to examine the structure of fluorine-labeled peptides in their native cellular environment, due to an exquisite sensitivity...
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Exploring collagen self-assembly by NMR.
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Phys Chem Chem Phys. 2010 Sep 28;
Authors: Lisitza N, Huang X, Hatabu H, Patz S
The time-dependence of the NMR signal intensity of collagen type I is representative of protein aggregation. It is pH sensitive and can be related to aggregation mechanism.
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[NMR paper] NMR study of collagen-water interactions.
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Authors: Renou JP, Bonnet M, Bielicki G, Rochdi A, Gatellier P
A proton magnetic resonance study of different cross-linked collagens was performed as a function of water content and temperature. Collagens from three connective tissues (calf, steer, and cow) were chosen according to the different number of nonreducible multivalent cross-links, which increases during the life of animal. Samples were hydrated...
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[NMR paper] 1H NMR assignment and secondary structure of the cell adhesion type III module of fib
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Biochemistry. 1992 Feb 25;31(7):2068-73
Authors: Baron M, Main AL, Driscoll PC, Mardon HJ, Boyd J, Campbell ID
The secondary structure of the tenth type III module from human fibronectin has been determined using NMR. This type of module appears many times in a wide variety of proteins. The type III module described here contains an...
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[NMR paper] Cell adhesion promoting peptide GVKGDKGNPGWPGAP from the collagen type IV triple heli
Cell adhesion promoting peptide GVKGDKGNPGWPGAP from the collagen type IV triple helix: cis/trans proline-induced multiple 1H NMR conformations and evidence for a KG/PG multiple turn repeat motif in the all-trans proline state.
Related Articles Cell adhesion promoting peptide GVKGDKGNPGWPGAP from the collagen type IV triple helix: cis/trans proline-induced multiple 1H NMR conformations and evidence for a KG/PG multiple turn repeat motif in the all-trans proline state.
Biochemistry. 1991 Aug 20;30(33):8251-67
Authors: Mayo KH, Parra-Diaz D, McCarthy JB,...