Amino-terminal Truncation of Chemokines by CD26/Dipeptidyl-peptidase IV

Paul Proost, Ingrid De Meester, Dominique Schols, Sofie Struyf, Anne‐Marie Lambeir, Anja Wuyts, Ghislain Opdenakker, Erik De Clercq, Simon Scharpé, Jo Van Damme

Journal of Biological Chemistry · 1998 · 267 citations · 28 references

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Concepts

TL;DR

Chemokines orchestrate inflammation and infection, and naturally occurring forms of GCP‑2 and RANTES lacking two N‑terminal residues have been isolated from leukocytes and tumor cells. CD26/dipeptidyl‑peptidase IV cleaves the first two N‑terminal residues of GCP‑2 and RANTES, producing truncated chemokines while sparing MCP‑1, MCP‑2, and MCP‑3. The CD26‑generated RANTES(3‑68) loses chemotactic and calcium‑mobilizing potency, behaves as a chemotaxis inhibitor, requires tenfold higher concentrations for Ca²⁺ signaling, and inhibits HIV‑1 infection five‑fold more efficiently, whereas GCP‑2 activity and neutrophil activation remain unchanged.

Abstract

Chemokines are key players in inflammation and infection. Natural forms of the C-X-C chemokine granulocyte chemotactic protein-2 (GCP-2) and the C-C chemokine regulated on activation normal T cell expressed and secreted (RANTES), which miss two NH2-terminal residues, including a Pro in the penultimate position, have been isolated from leukocytes or tumor cells. In chemotaxis and intracellular calcium mobilization assays, the truncation caused a reduction in the specific activity of RANTES but not of GCP-2. The serine protease CD26/dipeptidyl-peptidase IV (CD26/DPP IV) could induce this observed NH2-terminal truncation of GCP-2 and RANTES but not that of the monocyte chemotactic proteins MCP-1, MCP-2 and MCP-3. No significant difference in neutrophil activation was detected between intact and CD26/DPP IV-truncated GCP-2. In contrast to intact natural RANTES(1-68), which still chemoattracts monocytes at 10 ng/ml, CD26/DPP IV-truncated RANTES(3-68) was inactive at 300 ng/ml and behaved as a natural chemotaxis inhibitor. Compared with intact RANTES, only a 10-fold higher concentration of RANTES(3-68) induced a significant Ca2+ response. Furthermore, RANTES(3-68) inhibited infection of mononuclear cells by an M-tropic HIV-1 strain 5-fold more efficiently than intact RANTES. Thus, proteolytic processing of RANTES by CD26/DPP IV may constitute an important regulatory mechanism during anti-inflammatory and antiviral responses.

References

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