Proton chemical shifts and coupling constants of 3-quinuclidinol and 3-quinuclidinyl benzilate were determined by computer analysis. The relatively broad lines of the quinuclidine protons have their origin in numerous non-resolved transitions arising from the extensively coupled spin system of 12 nu
3D structure of microperoxidase-11 by NMR and molecular dynamic studies
β Scribed by Rosanna Mondelli; Leonardo Scaglioni; Stefania Mazzini; Giorgio Bolis; Graziella Ranghino
- Publisher
- John Wiley and Sons
- Year
- 2000
- Tongue
- English
- Weight
- 181 KB
- Volume
- 38
- Category
- Article
- ISSN
- 0749-1581
No coin nor oath required. For personal study only.
β¦ Synopsis
Microperoxidase-11 (MP11)
is an undecapeptide, obtained from enzymatic cleavage of cytochrome c, which still exhibits peroxidase activity. It retains residues 11-21 of the protein, the heme-c group and His18 as fifth ligand at the iron atom. We studied MP11 in the paramagnetic, Fe(III) low-spin state by NMR and constrained molecular dynamics (MD). Well-resolved 1 H and 13 C spectra were obtained in water-trifluoroethanol and water-methanol mixtures with different axial ligands to the iron, i.e. imidazole, NH 3 , OH, CN, at different temperatures from 15 to C25 Β°C. All the protons of the heme and the peptide moiety were assigned by using TOCSY and NOESY experiments. Some stereospecific assignments were also performed and eight coupling constants between the amide and the Λ-protons were measured. Seventy-one inter-residue and heme peptide and 40 intra-residue NOE interactions were translated into inter-proton distances. Ten structures satisfying these distance constraints to within Ε‘0.4 Γ were obtained and showed that almost the whole peptide (segment 12-19) can form a right-handed helix. The envelope structure of the peptide around the heme is well defined based on a number of NOE interactions between heme and peptide protons. Variabletemperature experiments were performed in order to obtain information on the protons affected by the paramagnetic shift. An inverted temperature dependence (Curie law) was observed for the heme and meso protons, except for 3-Me, when the sixth axial ligand is NH 3 or imidazole. The pattern of 13 C hyperfine shifts of heme methyl groups, similar in MP11 and cytochrome c, suggests that the orientation of His ring along the Λ-meso axis is conserved in MP11, which is consistent with MD calculations.
π SIMILAR VOLUMES
Methyl-methacrylate-grafted natural rubber was prepared by free radical polymerization of methyl methacrylate in natural rubber latex, and their structure and dynamics were investigated by dynamic mechanical analysis and solid-state nuclear magnetic resonance (NMR). Samples were prepared by chemical
Two macrocyclic polyether isomers were obtained by radical cyclization of (E)-8-iodo-3,6-dioxaoctyl-3ethoxycarbonylpropenoate and separated by liquid-solid chromatography over silica gel. They were characterized, for the Γrst time, by two-dimensional NMR ; notably, the HMBC experiment gave access to
A molecular dynamics simulation has been performed for a two-dimensional LennardJones (12-6) fluid. A saturated liquid at low temperature, compressed liquid, and fluid at supercritical temperatures with various densities were analyzed. Number of bonds per molecule, lifetime of bonds, connectivity of
The structure of a new chromone glycoside isolated from smilax glabru, named smiglanin [3,5,7trihydroxychromone 3-O-a-~-rhamnopyranoside] (C15H1609), was determined using NMR techniques. The carbon skeleton of the molecule was established mainly by the 2D INADEQUATE method coupled with a computerize