Javascript must be enabled to continue!
Conformational search in enkephalin analogues containing a disulfide bond
View through CrossRef
AbstractA systematic Conformational search has been performed for the 14‐membered ring in model compounds for disulfide‐containing enkephalin analogues. The model compounds examined are , and the corresponding compounds with L‐amino acids at the C‐terminus. About 100 starting conformations were generated for each compound with the RNGCFM program and energy minimized with the AMBER program. Between 21 and 38 conformers within 3 kcal/mole of the apparent global minimum were found for each compound. There appeared to be fewer possible conformations of the disulfide‐containing side chain than of the main chain. , whose parent compound is selective for opioid δ receptors, was found to prefer conformers with a positive dihedral angle of the disulfide bond, which is consistent with the previous proposal that δ‐receptor selectivity may be associated with this conformational preference. Additional calculations were performed on the complete structure of (DPDPE) with various possible conformations of the tyrosine and phenylalanine side chains. Conformational free energies and entropies were computed for these conformers from the molecular vibrations obtained from a normal mode analysis. As was found previously, conformers with low energies tended to have lower entropies, which resulted in a narrowing of the free energy differences between conformers. A conformer is identified that has the lowest energy hitherto found for DPDPE. It is suggested that DPDPE may be a useful compound for evaluating conformational search strategies because of its relatively small size and the number of conformers that have already been identified. Conformational energy calculations are also reported for naltrindole using the MM2(87) program. Naltrindole, which incorporates two aromatic 6‐membered rings in a rigid structure, is a highly selective and potent opioid δ‐receptor antagonist and may be an important clue regarding the biologically active conformer of DPDPE. Various conformers of DPDPE have been superimposed quantitatively onto the structure of naltrindole using the SUPER program and those conformers of DPDPE that are the best fit to naltrindole are reported.
Title: Conformational search in enkephalin analogues containing a disulfide bond
Description:
AbstractA systematic Conformational search has been performed for the 14‐membered ring in model compounds for disulfide‐containing enkephalin analogues.
The model compounds examined are , and the corresponding compounds with L‐amino acids at the C‐terminus.
About 100 starting conformations were generated for each compound with the RNGCFM program and energy minimized with the AMBER program.
Between 21 and 38 conformers within 3 kcal/mole of the apparent global minimum were found for each compound.
There appeared to be fewer possible conformations of the disulfide‐containing side chain than of the main chain.
, whose parent compound is selective for opioid δ receptors, was found to prefer conformers with a positive dihedral angle of the disulfide bond, which is consistent with the previous proposal that δ‐receptor selectivity may be associated with this conformational preference.
Additional calculations were performed on the complete structure of (DPDPE) with various possible conformations of the tyrosine and phenylalanine side chains.
Conformational free energies and entropies were computed for these conformers from the molecular vibrations obtained from a normal mode analysis.
As was found previously, conformers with low energies tended to have lower entropies, which resulted in a narrowing of the free energy differences between conformers.
A conformer is identified that has the lowest energy hitherto found for DPDPE.
It is suggested that DPDPE may be a useful compound for evaluating conformational search strategies because of its relatively small size and the number of conformers that have already been identified.
Conformational energy calculations are also reported for naltrindole using the MM2(87) program.
Naltrindole, which incorporates two aromatic 6‐membered rings in a rigid structure, is a highly selective and potent opioid δ‐receptor antagonist and may be an important clue regarding the biologically active conformer of DPDPE.
Various conformers of DPDPE have been superimposed quantitatively onto the structure of naltrindole using the SUPER program and those conformers of DPDPE that are the best fit to naltrindole are reported.
Related Results
Cleavage of disulfide polymers. III. By disulfides
Cleavage of disulfide polymers. III. By disulfides
AbstractA study was made of the cleavage of polymeric disulfide by organic disulfides of different structures in the presence and absence of sodium disulfide. While aliphatic disul...
Conformational analysis of enkephalin analogs contaIntng a disulfide bond Models for delta‐ and mu‐receptor opioid agonists
Conformational analysis of enkephalin analogs contaIntng a disulfide bond Models for delta‐ and mu‐receptor opioid agonists
Conformational analyses of the cyclic opioids H‐Tyr‐d‐Pen‐Gly‐Phe‐d‐Pen‐OH (DPDPE) and H‐Tyr‐d‐Cys‐Gly‐Phe‐d‐Cys‐OH (DCDCE) have been performed using the AMBER program. DPDPE is co...
Effects of Enkephalins on Arterial Blood Pressure are Reduced by Propranolol
Effects of Enkephalins on Arterial Blood Pressure are Reduced by Propranolol
1. The cardiovascular effects of enkephalins have been tested in normotensive Wistar—Kyoto rats. Methionine—enkephalin and leucine—enkephalin increased blood pressure and heart rat...
Detection and Function of the Intramolecular Disulfide Bond in Arginine Racemase: An Enzyme with Broad Substrate Specificity
Detection and Function of the Intramolecular Disulfide Bond in Arginine Racemase: An Enzyme with Broad Substrate Specificity
AbstractWe found that a single intramolecular disulfide bond between the cysteines C47 and C73 exists in the primary structure of arginine racemase (ArgR) from Pseudomonas taetrole...
5143 Disulfide Bonds of Thyroid Peroxidase Are Critical Elements for Subcellular Localization, Proteasome-Dependent Degradation, and Enzyme Activity
5143 Disulfide Bonds of Thyroid Peroxidase Are Critical Elements for Subcellular Localization, Proteasome-Dependent Degradation, and Enzyme Activity
Abstract
Disclosure: H. Iwasaki: None. H. Suwanai: None. K. Kanekura: None. N. Satoshi: None. F. Yakou: None. H. Sakai: None. K. Ishii: None. N. hara: None. R. Suzuk...
Oxidative Protein-Folding Systems in Plant Cells
Oxidative Protein-Folding Systems in Plant Cells
Plants are unique among eukaryotes in having evolved organelles: the protein storage vacuole, protein body, and chloroplast. Disulfide transfer pathways that function in the endopl...
2 mils Au wire interchip wedge bond cratering study
2 mils Au wire interchip wedge bond cratering study
Au wire thermosonic wedge bonding is applied for die to die interconnect on accelerometer device. With the fragile bond pad structure of MEMS device, bond pad cratering or bond pad...
A Comprehensive Analysis of Novel Disulfide Bond Introduction Site into the Constant Domain of Human Fab
A Comprehensive Analysis of Novel Disulfide Bond Introduction Site into the Constant Domain of Human Fab
Abstract
Generally, intermolecular disulfide bond contribute to the conformational protein stability. To identify sites where intermolecular disulfide bonds can be introduc...

