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CryB from Rhodobacter sphaeroides: a unique class of cryptochromes with new cofactors.


ABSTRACT: Cryptochromes and photolyases are structurally related but have different biological functions in signalling and DNA repair. Proteobacteria and cyanobacteria harbour a new class of cryptochromes, called CryPro. We have solved the 2.7 Å structure of one of its members, cryptochrome B from Rhodobacter sphaeroides, which is a regulator of photosynthesis gene expression. The structure reveals that, in addition to the photolyase-like fold, CryB contains two cofactors only conserved in the CryPro subfamily: 6,7-dimethyl-8-ribityl-lumazine in the antenna-binding domain and a [4Fe-4S] cluster within the catalytic domain. The latter closely resembles the iron-sulphur cluster harbouring the large primase subunit PriL, indicating that PriL is evolutionarily related to the CryPro class of cryptochromes.

SUBMITTER: Geisselbrecht Y 

PROVIDER: S-EPMC3323124 | biostudies-literature | 2012 Mar

REPOSITORIES: biostudies-literature

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CryB from Rhodobacter sphaeroides: a unique class of cryptochromes with new cofactors.

Geisselbrecht Yann Y   Frühwirth Sebastian S   Schroeder Claudia C   Pierik Antonio J AJ   Klug Gabriele G   Essen Lars-Oliver LO  

EMBO reports 20120301 3


Cryptochromes and photolyases are structurally related but have different biological functions in signalling and DNA repair. Proteobacteria and cyanobacteria harbour a new class of cryptochromes, called CryPro. We have solved the 2.7 Å structure of one of its members, cryptochrome B from Rhodobacter sphaeroides, which is a regulator of photosynthesis gene expression. The structure reveals that, in addition to the photolyase-like fold, CryB contains two cofactors only conserved in the CryPro subf  ...[more]

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