A novel protein from the serum of Python sebae, structurally homologous with type-γ phospholipase A2 inhibitor, displays antitumour activity

Author:

Donnini Sandra1,Finetti Federica1,Francese Simona2,Boscaro Francesca3,Dani Francesca R.3,Maset Fabio4,Frasson Roberta4,Palmieri Michele1,Pazzagli Mario5,De Filippis Vincenzo4,Garaci Enrico6,Ziche Marina1

Affiliation:

1. Department of Biotechnology and Istituto Toscano Tumori (ITT), University of Siena, Via A. Moro 2, 53100 Siena, Italy

2. Biomedical Research Centre, Sheffield Hallam University, Howard Street, Sheffield, S1 1WT, U.K.

3. Mass Spectrometry Center (C.I.S.M.), Viale Pieraccini 6, 50139 Florence, Italy

4. Department of Pharmaceutical Sciences, University of Padua, Via F. Marzolo 5, 35130 Padua, Italy

5. Department of Clinical Physiopathology, University of Florence, Viale Pieraccini 6, 50139 Florence, Italy

6. Department of Experimental Medicine and Biochemical Sciences, University of Rome ‘Tor Vergata’, Viale Regina Elena 299, 00133 Rome, Italy

Abstract

Cytotoxic and antitumour factors have been documented in the venom of snakes, although little information is available on the identification of cytotoxic products in snake serum. In the present study, we purified and characterized a new cytotoxic factor from serum of the non-venomous African rock python (Python sebae), endowed with antitumour activity. PSS (P. sebae serum) exerted a cytotoxic activity and reduced dose-dependently the viability of several different tumour cell lines. In a model of human squamous cell carcinoma xenograft (A431), subcutaneous injection of PSS in proximity of the tumour mass reduced the tumour volume by 20%. Fractionation of PSS by ion-exchange chromatography yielded an active protein fraction, F5, which significantly reduced tumour cell viability in vitro and, strikingly, tumour growth in vivo. F5 is composed of P1 (peak 1) and P2 subunits interacting in a 1:1 stoichiometric ratio to form a heterotetramer in equilibrium with a hexameric form, which retained biological activity only when assembled. The two peptides share sequence similarity with PIP {PLI-γ [type-γ PLA2 (phospholipase A2) inhibitor] from Python reticulatus}, existing as a homohexamer. More importantly, although PIP inhibits the hydrolytic activity of PLA2, the anti-PLA2 function of F5 is negligible. Using high-resolution MS, we covered 87 and 97% of the sequences of P1 and P2 respectively. In conclusion, in the present study we have identified and thoroughly characterized a novel protein displaying high sequence similarity to PLI-γ and possessing remarkable cytotoxic and antitumour effects that can be exploited for potential pharmacological applications.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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