| Literature DB >> 23607538 |
Linlin Yang1, Renae S Nelson, Alhosna Benjdia, Gengjie Lin, Joshua Telser, Stefan Stoll, Ilme Schlichting, Lei Li.
Abstract
Spore photoproduct lyase (SPL) repairs a covalent UV-induced class="Chemical">thymine dimer, class="Chemical">spore photoproduct (SP), in germinating endoclass="Chemical">spores and is reclass="Chemical">sponsible for the strong UV resistance of endoclass="Chemical">spores. SPL is a <class="Chemical">span class="Chemical">radical S-adenosyl-l-methionine (SAM) enzyme, which uses a [4Fe-4S](+) cluster to reduce SAM, generating a catalytic 5'-deoxyadenosyl radical (5'-dA(•)). This in turn abstracts a H atom from SP, generating an SP radical that undergoes β scission to form a repaired 5'-thymine and a 3'-thymine allylic radical. Recent biochemical and structural data suggest that a conserved cysteine donates a H atom to the thymine radical, resulting in a putative thiyl radical. Here we present structural and biochemical data that suggest that two conserved tyrosines are also critical in enzyme catalysis. One [Y99(Bs) in Bacillus subtilis SPL] is downstream of the cysteine, suggesting that SPL uses a novel hydrogen atom transfer (HAT) pathway with a pair of cysteine and tyrosine residues to regenerate SAM. The other tyrosine [Y97(Bs)] has a structural role to facilitate SAM binding; it may also contribute to the SAM regeneration process by interacting with the putative (•)Y99(Bs) and/or 5'-dA(•) intermediates to lower the energy barrier for the second H abstraction step. Our results indicate that SPL is the first member of the radical SAM superfamily (comprising more than 44000 members) to bear a catalytically operating HAT chain.Entities:
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Year: 2013 PMID: 23607538 PMCID: PMC3666868 DOI: 10.1021/bi3016247
Source DB: PubMed Journal: Biochemistry ISSN: 0006-2960 Impact factor: 3.162