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Wahl, K. L.

Publications and source records attributed to Wahl, K. L..

2 recordsLinked to original sources

Innate receptors with high specificity for HLA class I-peptide complexes

Genetic studies associate killer-cell immunoglobulin-like receptors (KIR) and their HLA class I ligands with a variety of human diseases. The basis for these associations, and the relative contribution of inhibitory and activating KIR to NK cell responses are unclear. As KIR binding to HLA-I is peptide-dependent, we performed systematic screens totaling over 3,500 specific interactions to determine the specificity of five KIR for peptides presented by four HLA-C ligands. Inhibitory KIR2DL1 was largely peptide sequence agnostic, binding approximately 60% of hundreds of HLA-peptide complexes tested. Inhibitory KIR2DL2, KIR2DL3, and activating KIR2DS1 and KIR2DS4 bound only 10%, down to 1% of HLA-peptide complexes tested, respectively. Activating KIR2DS1, previously described as weak, had high binding affinity for HLA-C with high peptide sequence specificity. Our data revealed MHC-restricted peptide recognition by germ-line encoded NK receptors and imply that NK cell responses can be shaped by HLA-I bound immunopeptidomes in the context of disease or infection.

immunology↗

Resistance-guided mining of bacterial genotoxins defines a family of DNA glycosylases

Unique DNA repair enzymes that provide self-resistance against genotoxic natural products have been discovered recently in bacterial biosynthetic gene clusters (BGCs). The DNA glycosylase AlkZ belongs to a superfamily of uncharacterized proteins found in antibiotic producers and pathogens, but despite its importance to azinomycin B resistance, the roles of AlkZ orthologs in production of other natural products are unknown. Here, we analyze the genomic distribution and use a resistance-based genome mining approach to identify Streptomyces AlkZ homologs associated with known and uncharacterized BGCs. We show that the ortholog associated with synthesis of the alkylating agent hedamycin excises hedamycin-DNA adducts and provides resistance to the genotoxin in cells. Our results define AlkZ in self-resistance to specific antimicrobials and implicate a related but distinct homolog, which we name AlkX, in protection against an array of genotoxins. This work provides a framework for targeted discovery of new genotoxic compounds with therapeutic potential.

molecular biology↗