Residential College | false |
Status | 已發表Published |
Polymerization of MIP-1 chemokine (CCL3 and CCL4) and clearance of MIP-1 by insulin-degrading enzyme | |
Ren M.2; Guo Q.2; Guo L.3; Lenz M.2; Qian F.1; Koenen R.R.4; Xu H.1; Schilling A.B.1; Weber C.4; Ye R.D.1; Dinner A.R.2; Tang W.-J.2 | |
2010-12-01 | |
Source Publication | EMBO Journal |
ISSN | 02614189 14602075 |
Volume | 29Issue:23Pages:3952-3966 |
Abstract | Macrophage inflammatory protein-1 (MIP-1), MIP-1α (CCL3) and MIP-1β (CCL4) are chemokines crucial for immune responses towards infection and inflammation. Both MIP-1α and MIP-1β form high-molecular-weight aggregates. Our crystal structures reveal that MIP-1 aggregation is a polymerization process and human MIP-1α and MIP-1β form rod-shaped, double-helical polymers. Biophysical analyses and mathematical modelling show that MIP-1 reversibly forms a polydisperse distribution of rod-shaped polymers in solution. Polymerization buries receptor-binding sites of MIP-1α, thus depolymerization mutations enhance MIP-1α to arrest monocytes onto activated human endothelium. However, same depolymerization mutations render MIP-1α ineffective in mouse peritoneal cell recruitment. Mathematical modelling reveals that, for a long-range chemotaxis of MIP-1, polymerization could protect MIP-1 from proteases that selectively degrade monomeric MIP-1. Insulin-degrading enzyme (IDE) is identified as such a protease and decreased expression of IDE leads to elevated MIP-1 levels in microglial cells. Our structural and proteomic studies offer a molecular basis for selective degradation of MIP-1. The regulated MIP-1 polymerization and selective inactivation of MIP-1 monomers by IDE could aid in controlling the MIP-1 chemotactic gradient for immune surveillance. © 2010 European Molecular Biology Organization. |
Keyword | Chemokine Chemotactic Gradient Insulin-degrading Enzyme Mip-1 Polymerization X-ray Crystallography |
DOI | 10.1038/emboj.2010.256 |
URL | View the original |
Language | 英語English |
WOS ID | WOS:000285392100008 |
Scopus ID | 2-s2.0-78649694743 |
Fulltext Access | |
Citation statistics | |
Document Type | Journal article |
Collection | University of Macau |
Affiliation | 1.University of Illinois at Chicago 2.University of Chicago 3.Illinois Institute of Technology 4.Rheinisch-Westfalische Technische Hochschule Aachen |
Recommended Citation GB/T 7714 | Ren M.,Guo Q.,Guo L.,et al. Polymerization of MIP-1 chemokine (CCL3 and CCL4) and clearance of MIP-1 by insulin-degrading enzyme[J]. EMBO Journal, 2010, 29(23), 3952-3966. |
APA | Ren M.., Guo Q.., Guo L.., Lenz M.., Qian F.., Koenen R.R.., Xu H.., Schilling A.B.., Weber C.., Ye R.D.., Dinner A.R.., & Tang W.-J. (2010). Polymerization of MIP-1 chemokine (CCL3 and CCL4) and clearance of MIP-1 by insulin-degrading enzyme. EMBO Journal, 29(23), 3952-3966. |
MLA | Ren M.,et al."Polymerization of MIP-1 chemokine (CCL3 and CCL4) and clearance of MIP-1 by insulin-degrading enzyme".EMBO Journal 29.23(2010):3952-3966. |
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