Characterization of a saporin isoform with lower ribosome-inhibiting activity

Author:

FABBRINI M. Serena1,RAPPOCCIOLO Emilia1,CARPANI Daniela1,SOLINAS Michela2,VALSASINA Barbara3,BREME Umberto3,CAVALLARO Ugo1,NYKJAER Anders4,ROVIDA Ermanna1,LEGNAME Giuseppe5,SORIA Marco R.1

Affiliation:

1. Department of Biological and Technological Research – Dibit, San Raffaele Scientific Institute, via Olgettina 58, 20132 Milano, Italy

2. Istituto Biosintesi Vegetali del Consiglio Nazionale delle Ricerche, via Bassini, 15, 20133 Milano, Italy

3. Biotechnology Department, Pharmacia & Upjohn, via Giovanni XXIII 20014 Nerviano, Italy

4. Department of Medical Biochemistry, University of Aarhus, Ole Worms Allè, DK-800 Aarhus C, Denmark

5. Italfarmaco Research Center, via dei Lavoratori 54, 20092 Cinisello Balsamo, Milano, Italy

Abstract

We have expressed in Escherichia coli five isoforms of saporin, a single-chain ribosome-inactivating protein (RIP). Translation inhibition activities of the purified recombinant polypeptides in vitrowere compared with those of recombinant dianthin 30, a less potent and closely related RIP, and of ricin A chain. Dianthin 30, and a saporin isoform encoded by a cDNA from leaf tissue (SAP-C), both had about one order of magnitude lower activity in translation inhibition assays than all other isoforms of saporin tested. We recently demonstrated that saporin extracted from seeds of Saponaria officinalis binds to α2-macroglobulin receptor (α2MR; also termed low density lipoprotein-receptor-related-protein), indicating a general mechanism of interaction of plant RIPs with the α2MR system [Cavallaro, Nykjaer, Nielsen and Soria (1995) Eur. J. Biochem. 232, 165–171]. Here we report that SAP-C bound to α2MR equally well as native saporin. However, the same isoform had about ten times lower cytotoxicity than the other saporin isoforms towards different cell lines. This indicates that the lower cell-killing ability of the SAP-C isoform is presumably due to its altered interaction with the protein synthesis machinery of target cells. Since saporin binding to the α2MR is competed by heparin, we also tested in cell-killing experiments Chinese hamster ovary cell lines defective for expression of either heparan sulphates or proteoglycans. No differences were observed in cytotoxicity using native saporin or the recombinant isoforms. Therefore saporin binding to the cell surface should not be mediated by interaction with proteoglycans, as is the case for other α2MR ligands.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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