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Bivalent 14-mer peptide ligands of CXCR4 with polyproline linkers with anti-chemotactic activity against Jurkat cells.
Tanaka, Tomohiro; Aoki, Toru; Nomura, Wataru; Tamamura, Hirokazu.
Affiliation
  • Tanaka T; Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, 2-3-10 Kandasurugadai, Chiyoda-ku, Tokyo, 101-0062, Japan.
  • Aoki T; Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, 2-3-10 Kandasurugadai, Chiyoda-ku, Tokyo, 101-0062, Japan.
  • Nomura W; Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, 2-3-10 Kandasurugadai, Chiyoda-ku, Tokyo, 101-0062, Japan.
  • Tamamura H; Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University, 2-3-10 Kandasurugadai, Chiyoda-ku, Tokyo, 101-0062, Japan.
J Pept Sci ; 23(7-8): 574-580, 2017 Jul.
Article in En | MEDLINE | ID: mdl-28078743
Interaction of CXCR4 with its endogenous ligand, stromal-cell derived factor-1 (SDF-1)/CXCL12, induces various physiological functions involving chemotaxis. Bivalent ligands with a polyproline helix bearing a cyclic pentapeptide, FC131, were previously shown to have higher binding affinities for CXCR4 than the corresponding monovalent ligands. Bivalent ligands based on a 14-mer peptide T140 derivative with polyproline linkers have been designed and synthesized. The activity of these peptides as well as the effect of bivalency of the ligand on CXCR4 binding has been assessed. The binding affinity of these series of bivalent ligands is increased as the linker length increases up to the 12-/15-mer proline linker. The inhibitory activity against chemotaxis on Jurkat cells also depends on the linker length. The T140-derived bivalent ligands with the 9- and 12-mer proline linkers showed the most effective inhibition against chemotaxis at 1000 nM, which is even higher than that of known CXCR4 antagonists in the monomer structure. The effective metastatic inhibition by bivalent T140 derivatives indicates the therapeutic potential. Copyright © 2017 European Peptide Society and John Wiley & Sons, Ltd.
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Full text: 1 Database: MEDLINE Main subject: Peptides / Jurkat Cells / Receptors, CXCR4 Limits: Humans Language: En Journal: J Pept Sci Journal subject: BIOQUIMICA Year: 2017 Type: Article Affiliation country: Japan

Full text: 1 Database: MEDLINE Main subject: Peptides / Jurkat Cells / Receptors, CXCR4 Limits: Humans Language: En Journal: J Pept Sci Journal subject: BIOQUIMICA Year: 2017 Type: Article Affiliation country: Japan