| Title |
Molecular basis for manganese sequestration by calprotectin and roles in the innate immune response to invading bacterial pathogens
|
|---|---|
| Published in |
Proceedings of the National Academy of Sciences of the United States of America, February 2013
|
| DOI | 10.1073/pnas.1220341110 |
| Pubmed ID | |
| Authors |
Steven M. Damo, Thomas E. Kehl-Fie, Norie Sugitani, Marilyn E. Holt, Subodh Rathi, Wesley J. Murphy, Yaofang Zhang, Christine Betz, Laura Hench, Günter Fritz, Eric P. Skaar, Walter J. Chazin |
| Abstract |
The S100A8/S100A9 heterodimer calprotectin (CP) functions in the host response to pathogens through a mechanism termed "nutritional immunity." CP binds Mn(2+) and Zn(2+) with high affinity and starves bacteria of these essential nutrients. Combining biophysical, structural, and microbiological analysis, we identified the molecular basis of Mn(2+) sequestration. The asymmetry of the CP heterodimer creates a single Mn(2+)-binding site from six histidine residues, which distinguishes CP from all other Mn(2+)-binding proteins. Analysis of CP mutants with altered metal-binding properties revealed that, despite both Mn(2+) and Zn(2+) being essential metals, maximal growth inhibition of multiple bacterial pathogens requires Mn(2+) sequestration. These data establish the importance of Mn(2+) sequestration in defense against infection, explain the broad-spectrum antimicrobial activity of CP relative to other S100 proteins, and clarify the impact of metal depletion on the innate immune response to infection. |
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X Demographics
Geographical breakdown
| Country | Count | As % |
|---|---|---|
| United States | 1 | 100% |
Demographic breakdown
| Type | Count | As % |
|---|---|---|
| Scientists | 1 | 100% |
Mendeley readers
Geographical breakdown
| Country | Count | As % |
|---|---|---|
| United States | 3 | 1% |
| Iran, Islamic Republic of | 2 | <1% |
| Portugal | 1 | <1% |
| Netherlands | 1 | <1% |
| United Kingdom | 1 | <1% |
| Unknown | 262 | 97% |
Demographic breakdown
| Readers by professional status | Count | As % |
|---|---|---|
| Student > Ph. D. Student | 70 | 26% |
| Researcher | 39 | 14% |
| Student > Bachelor | 24 | 9% |
| Student > Master | 21 | 8% |
| Student > Doctoral Student | 14 | 5% |
| Other | 33 | 12% |
| Unknown | 69 | 26% |
| Readers by discipline | Count | As % |
|---|---|---|
| Agricultural and Biological Sciences | 53 | 20% |
| Biochemistry, Genetics and Molecular Biology | 50 | 19% |
| Chemistry | 31 | 11% |
| Immunology and Microbiology | 29 | 11% |
| Medicine and Dentistry | 14 | 5% |
| Other | 24 | 9% |
| Unknown | 69 | 26% |