CONFORMATIONAL-ANALYSIS AND COMPUTER MODELING OF MURAMIC ACID DELTA-LACTAM STRUCTURES

Citation
Z. Banic et al., CONFORMATIONAL-ANALYSIS AND COMPUTER MODELING OF MURAMIC ACID DELTA-LACTAM STRUCTURES, Carbohydrate research, 259(2), 1994, pp. 159-174
Citations number
25
Categorie Soggetti
Chemistry Inorganic & Nuclear
Journal title
ISSN journal
00086215
Volume
259
Issue
2
Year of publication
1994
Pages
159 - 174
Database
ISI
SICI code
0008-6215(1994)259:2<159:CACMOM>2.0.ZU;2-L
Abstract
Conformational analysis of 1,6-anhydromuramic acid delta-lactam, muram ic acid delta-lactam, and 1,6-anhydromuramic acid was studied by X-ray structure analysis, molecular mechanics and dynamics calculations, an d computer modelling (BIOSYM package). The X-ray structure of -[(R)-1- carboxyethyl]-2-deoxy-beta-D-glucopyranose 1',2-lactam (1) was determi ned. The crystals of 1 are monoclinic, space group P2(1), with the uni t cell parameters: a = 10.446(4), b = 4.891(1), c = 18.780(7) Angstrom ; beta = 94.33(2)degrees; and Z = 2. The stability of the B-O,B-3, con formation of the beta-D-glucopyranose ring involved in the tricyclic s tructures of 1 and -[(R)-1-carboxyethyl]-2-deoxy-beta-D-glucopyranose 1',2-lactam (2) was examined by computational chemistry methods. The i nfluence of the 1,6-anhydro and delta-lactam rings on the conformation of the fused beta-D-glucopyranose component was studied by computer s imulations performed on 2. New compounds (3 alpha,beta and 4) were gen erated from 2 by opening of the 1,6-anhydro ring and cleavage of the d elta-lactam ring, respectively. Conformational analysis of 3 alpha,bet a showed the minimum energy conformer of the D-glucopyranose ring to b e C-4(1), whereas a distorted chair/sofa conformation C-1(4)/E(O) was obtained for 4.