Crystal structure of allophycocyanin from red algae Porphyra yezoensis at 2.2-angstrom resolution

Citation
Jy. Liu et al., Crystal structure of allophycocyanin from red algae Porphyra yezoensis at 2.2-angstrom resolution, J BIOL CHEM, 274(24), 1999, pp. 16945-16952
Citations number
27
Categorie Soggetti
Biochemistry & Biophysics
Journal title
JOURNAL OF BIOLOGICAL CHEMISTRY
ISSN journal
00219258 → ACNP
Volume
274
Issue
24
Year of publication
1999
Pages
16945 - 16952
Database
ISI
SICI code
0021-9258(19990611)274:24<16945:CSOAFR>2.0.ZU;2-1
Abstract
The crystal structure of allophycocyanin from red algae Porphyra yezoensis (APC-PY) at 2.2-Angstrom resolution has been determined by the molecular re placement method. The crystal belongs to space group R32 with cell paramete rs a = b = 105.3 Angstrom, c = 189.4 Angstrom, alpha = beta = 90 degrees, g amma = 120 degrees, After several cycles of refinement using program X-PLOR and model building based on the electron density map, the crystallographic R-factor converged to 19.3% (R-free factor is 26.9%) in the range of 10.0 to 2.2 Angstrom The r.m.s. deviations of bond length and angles are 0.015 A ngstrom and 2.9 degrees, respectively. In the crystal, two APC-PY trimers associate face to face into a hexamer, T he assembly of two trimers within the hexamer is similar to that of C-phyco cyanin (C-PC) and R-phycoerythrin (R-PE) hexamers, but the assembly tightne ss of the two trimers to the hexamer is not so high as that in C-PC and R-P E hexamers, The chromophore-protein interactions and possible pathway of energy transfe r were discussed. Phycocyanobilin 1 alpha 84 of APC-PY forms 5 hydrogen bon ds with 3 residues in subunit 2 beta of another monomer, In R-PE and C-PC, chromophore 1 alpha 84 only forms 1 hydrogen bond with 2 beta 77 residue in subunit 2 beta. This result may support and explain great spectrum differe nce exists between APC trimer and monomer.