Issue 7, 2003

Photochromic chromopeptides derived from phycoerythrocyanin: biophysical and biochemical characterization

Abstract

Truncated chromopeptides have been prepared from the small photo- and redox-switchable biliprotein α-phycoerythrocyanin (α-PEC). The native chromoprotein consists of a C-terminal globin domain containing the chromophore and the regulatory cysteins 98 and 99, and a two-helix (X,Y) N-terminal domain responsible for aggregation. Digestion with chymotrypsin-free trypsin leads to three chromopeptides, (N-30, N-33 and N-35), basically lacking the two N-terminal helices X and Y. The photo- and redox chemistry of the major product (N-33) is identical, qualitatively and quantitatively, to that of native α-PEC. A series of N- and C-terminally truncated polypeptides were expressed in E. coli and subjected to autocatalytic and enzymatic reconstitution with phycocyanobilin. Enzymatic reconstitution was possible with N-terminally truncated polypeptides up to 45 aa, while neither a more extensively shortened (N-63) peptide, nor two C-terminally shortened polypeptides could be reconstituted. All chromopeptides recovered from enzymatic reconstitution contained the native phycoviolobilin chromophore and showed the photochemical and redox reactivity of α-PEC, albeit quantitatively reduced in the N-45 chromopeptide.

Graphical abstract: Photochromic chromopeptides derived from phycoerythrocyanin: biophysical and biochemical characterization

Article information

Article type
Paper
Submitted
21 Mar 2003
Accepted
14 May 2003
First published
23 Jun 2003

Photochem. Photobiol. Sci., 2003,2, 741-748

Photochromic chromopeptides derived from phycoerythrocyanin: biophysical and biochemical characterization

K. Zhao, J. Zhu, M. Deng, M. Zhou, M. Storf, A. Parbel and H. Scheer, Photochem. Photobiol. Sci., 2003, 2, 741 DOI: 10.1039/B303233G

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