has been determined. Crystals grown from petroleum ether are orthorhombic, space group P2,2'2', with cell parameters a = 16.41 ( 1 ) , b = 18.76 ( 1 ) , c = 25.86 ( 1 ) A, and 2 = 4. The atomic coordinates for nonhydrogen atoms, except those of terminal carbons on one side chain, were refined in the
Molecular structure of cyclo[-(D-Val-L-Hyi-L-Val-D-Hyi)2-] revealed by X-ray analysis
β Scribed by P. Grochulski; G. D. Smith; D. A. Langs; W. L. Duax; V. Z. Pletnev; V. T. Ivanov
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 1992
- Tongue
- English
- Weight
- 521 KB
- Volume
- 32
- Category
- Article
- ISSN
- 0006-3525
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Hyi-0-Val-t-Hyi) . 2H20 has been solved by x-ray direct methods. The crystals (grown from a mixture of octane/CH2C12) are an orthorhombic, centrosymmetric space group Pbca, cell parameters a = 11.458( 2), b = 25.613(3), c = 23.691 (3) k, Z = 4; therefore the molecule lies on a center of inversion i
## Abstract Direct xβray analysis has been used to determine the crystal structure of [DβHyi^2^, LβHyi^4^]__meso__βvalinomycin {cyclo[βDβValβDβHyiβLβValβLβHyiβ(DβValβLβHyiβLβValβDβHyi)~2~β], C~60~H~102~N~6~O~18~}, which crystallized from acetone with two solvent molecules. The crystals are trigonal
## Synopsis The crystal structure of the valinomycin analog, cyclo-[(-D-Val-Hyi-Val-D-Hyi-)3-] (rneso-valinomycin, C ~~H I O ~N ~O ~S ) has been determined by direct x-ray diffraction procedures. The crystals are triclinic, space group Pi, number of molecules per unit cell 2 = 1, and cell paramete
The crystal and molecular structure of the valinomycin analogue, cyclo [(D-Val-L-Lac-L-Ala-D-Hyi) 2 (D-Val-L-Lac-L-Val-D-Hyi)] has been solved by x-ray direct methods using the ''Shake and Bake'' procedure. The crystals, grown from a mixture of octane/CH 2 Cl 2 , belong to space group P2 1 (Z Γ 4) w
Both independent molecules in the crystal adopt a similar distorted bracelet structure with a sterically inaccessible, partially formed, ion-binding center that is stabilized by six 4 r 1 type H bonds. The observed conformation accounts for the inability of the molecule to complex ions. Close examin