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PMID: 2215480 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Structural comparison of murine T-cell (B151K12)-derived T-cell-replacing factor (IL-5) with rIL-5: dimer formation is essential for the expression of biological activity.

Molecular immunology ·Vol. 27 ·No. 9 ·1990-09-00 ·Pages 911-20

Takahashi T, Yamaguchi N, Mita S, Yamaguchi Y, Suda T, Tominaga A, Kikuchi Y, Miura Y, Takatsu K

Abstract

T-cell-replacing factor (TRF)/IL-5 is a T-cell-derived glycoprotein which has pleiotropic activity on lymphoid and myeloid cells. IL-5 polypeptide translated into Xenopus oocytes are heterogeneous in molecular size (40,000 to 60,000 under nonreducing conditions) and yields a monomeric form (Mr of 25,000 to 30,000) under reducing conditions (J. Immun., 140, 1175-1181, 1988). We purified T-cell-derived TRF and rIL-5 using anti-TRF/IL-5 antibody-coupled affinity column from supernatants of a T-cell hybridoma B151K12 and supernatants of HeLa cells, respectively, which had been transfected with murine IL-5 cDNA, and determined their partial N-terminal amino acid sequence (27 residues for B151-TRF and 13 residues for rIL-5). A single amino acid sequence of each sample obtained beginning from methionine that was identical to that predicted from IL-5 cDNA. This finding supports the notion that secreted B151-TRF polypeptide consists of 113 amino acids. Purified B151-TRF supported eosinophilopoiesis of human bone marrow cells as effective as mouse rIL-5 and human rIL-5. B151-TRF competitively inhibited 35S-labeled rIL-5 binding to target cells to the same extent at rIL-5. Treatment of purified rIL-5 and B151-TRF with reducing reagents such as 2-ME, sodium borohydride or dithiothreitol produced a monomeric form of IL-5 which did not exert a biological activity. Reduction and alkylation of rIL-5 caused the loss of binding to its target cells. These results strongly suggest that B151-TRF exists as a homodimer and its primary structure and secondary structures are identical to those of rIL-5. Moreover, the formation of inter-molecular disulfide bond(s) linked by two pairs of cystein residues is essential for the expression of the biological activity of mouse IL-5.

MeSH Terms
Amino Acid Sequence Animals Cell Differentiation Cell Line Chromatography, Affinity Disulfides Eosinophils/cytology Female Interleukin-5/chemistry,isolation & purification,physiology Macromolecular Substances Mice Mice, Inbred BALB C Molecular Sequence Data Protein Binding Recombinant Proteins/chemistry Structure-Activity Relationship T-Lymphocytes/metabolism
Chemicals
Disulfides Interleukin-5 Macromolecular Substances Recombinant Proteins
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Takahashi T
Department of Biology, Kumamoto University Medical School, Japan.
Yamaguchi N
Mita S
Yamaguchi Y
Suda T
Tominaga A
Kikuchi Y
Miura Y
Takatsu K
Article Info
Journal
Molecular immunology
Abbr.
Mol Immunol
ISSN
0161-5890
Published
1990-09-00
Pages
911-20
Language
English
Region
England
NLM ID
7905289
Subset
IM
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