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PMID: 11222759 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Radical SAM, a novel protein superfamily linking unresolved steps in familiar biosynthetic pathways with radical mechanisms: functional characterization using new analysis and information visualization methods.

Nucleic acids research ·Vol. 29 ·No. 5 ·2001-03-01 ·Pages 1097-106

Sofia HJ, Chen G, Hetzler BG, Reyes-Spindola JF, Miller NE

Abstract

A novel protein superfamily with over 600 members was discovered by iterative profile searches and analyzed with powerful bioinformatics and information visualization methods. Evidence exists that these proteins generate a radical species by reductive cleavage of S:-adenosylmethionine (SAM) through an unusual Fe-S center. The superfamily (named here Radical SAM) provides evidence that radical-based catalysis is important in a number of previously well- studied but unresolved biochemical pathways and reflects an ancient conserved mechanistic approach to difficult chemistries. Radical SAM proteins catalyze diverse reactions, including unusual methylations, isomerization, sulfur insertion, ring formation, anaerobic oxidation and protein radical formation. They function in DNA precursor, vitamin, cofactor, antibiotic and herbicide biosynthesis and in biodegradation pathways. One eukaryotic member is interferon-inducible and is considered a candidate drug target for osteoporosis; another is observed to bind the neuronal Cdk5 activator protein. Five defining members not previously recognized as homologs are lysine 2,3-aminomutase, biotin synthase, lipoic acid synthase and the activating enzymes for pyruvate formate-lyase and anaerobic ribonucleotide reductase. Two functional predictions for unknown proteins are made based on integrating other data types such as motif, domain, operon and biochemical pathway into an organized view of similarity relationships.

MeSH Terms
Amino Acid Sequence Databases, Factual Free Radicals Molecular Sequence Data Phylogeny Proteins/genetics S-Adenosylmethionine/chemistry,genetics,metabolism Sequence Alignment Sequence Homology, Amino Acid
Chemicals
Free Radicals Proteins S-Adenosylmethionine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Sofia H J
Applied Mathematics, Environmental Molecular Sciences Laboratory (EMSL), Pacific Northwest National Laboratory, Richland, WA 99352, USA. heidi.sofia@pnl.gov
Chen G
Hetzler B G
Reyes-Spindola J F
Miller N E
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Article Info
Journal
Nucleic acids research
Abbr.
Nucleic Acids Res
ISSN
1362-4962
Published
2001-03-01
Pages
1097-106
Language
English
Region
England
NLM ID
0411011
PMCID
PMC29726
Subset
IM
Analysis Services
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