| Literature DB >> 30880081 |
Maria Agustina Dominguez-Martin1, Tomáš Polívka2, Markus Sutter3, Bryan Ferlez1, Sigal Lechno-Yossef1, Beronda L Montgomery4, Cheryl A Kerfeld5.
Abstract
The Helical Carotenoid Proteins (HCPs) are a large group of newly identified carotenoid-binding proteins found in ecophysiologically diverse cyanobacteria. They likely evolved before becoming the effector (quenching) domain of the modular Orange Carotenoid Protein (OCP). The number of discrete HCP families-at least nine-suggests they are involved in multiple distinct functions. Here we report the 1.7 Å crystal structure of HCP2, one of the most widespread HCPs found in nature, from the chromatically acclimating cyanobacterium Tolypothrix sp. PCC 7601. By purifying HCP2 from the native source we are able to identify its natively-bound carotenoid, which is exclusively canthaxanthin. In solution, HCP2 is a monomer with an absorbance maximum of 530 nm. However, the HCP2 crystals have a maximum absorbance at 548 nm, which is accounted by the stacking of the β1 rings of the carotenoid in the two molecules in the asymmetric unit. Our results demonstrate how HCPs provide a valuable system to study carotenoid-protein interactions and their spectroscopic implications, and contribute to efforts to understand the functional roles of this large, newly discovered family of pigment proteins, which to-date remain enigmatic.Entities:
Keywords: Carotenoid aggregates; Crystal structure; Cyanobacteria; Helical carotenoid protein; Photoprotection; Spectroscopic
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Year: 2019 PMID: 30880081 DOI: 10.1016/j.bbabio.2019.03.004
Source DB: PubMed Journal: Biochim Biophys Acta Bioenerg ISSN: 0005-2728 Impact factor: 3.991