The Use of Hexokinase 2-Displacing Peptides as an Anti-Neoplastic Approach for Malignant Peripheral Nerve Sheath Tumors

Author:

Ciscato Francesco12ORCID,Masgras Ionica12,Gori Alessandro3ORCID,Fantuz Marco45ORCID,Bergamaschi Greta3ORCID,Komarov Denis1,La Spina Martina1,Ghasemi-Firouzabadi Shiva1,Pizzi Marco6,Dei Tos Angelo Paolo6,Chiara Federica78ORCID,Carrer Alessandro45ORCID,Rasola Andrea1ORCID

Affiliation:

1. Department of Biomedical Sciences, University of Padova, 35131 Padova, Italy

2. Institute of Neuroscience, National Research Council (CNR), 35131 Padova, Italy

3. SCITEC Institute of Chemical Science and Technology “Giulio Natta”, National Research Council (CNR), 20133 Milano, Italy

4. Veneto Institute for Molecular Medicine (VIMM), 35129 Padova, Italy

5. Department of Biology, University of Padova, 35131 Padova, Italy

6. General Pathology and Cytopathology Unit, Department of Medicine (DMED), University of Padova, 35128 Padova, Italy

7. Department of Surgery, Oncology and Gastroenterology, University of Padova, 35128 Padova, Italy

8. Veneto Institute of Oncology IOV-IRCCS, 35128 Padova, Italy

Abstract

Malignant Peripheral Nerve Sheath Tumors (MPNSTs) are aggressive sarcomas that can arise both sporadically and in patients with the genetic syndrome Neurofibromatosis type 1 (NF1). Prognosis is dismal, as large dimensions, risk of relapse, and anatomical localization make surgery poorly effective, and no therapy is known. Hence, the identification of MPNST molecular features that could be hit in an efficient and selective way is mandatory to envision treatment options. Here, we find that MPNSTs express high levels of the glycolytic enzyme Hexokinase 2 (HK2), which is known to shield cancer cells from noxious stimuli when it localizes at MAMs (mitochondria-associated membranes), contact sites between mitochondria and endoplasmic reticulum. A HK2-targeting peptide that dislodges HK2 from MAMs rapidly induces a massive death of MPNST cells. After identifying different matrix metalloproteases (MMPs) expressed in the MPNST microenvironment, we have designed HK2-targeting peptide variants that harbor cleavage sites for these MMPs, making such peptides activatable in the proximity of cancer cells. We find that the peptide carrying the MMP2/9 cleavage site is the most effective, both in inhibiting the in vitro tumorigenicity of MPNST cells and in hampering their growth in mice. Our data indicate that detaching HK2 from MAMs could pave the way for a novel anti-MPNST therapeutic strategy, which could be flexibly adapted to the protease expression features of the tumor microenvironment.

Funder

Italian Association for Cancer Research

Children’s Tumor Foundation

Italian Ministry of University and Research

Young Investigator Award Grant from Children’s Tumor Foundation

Publisher

MDPI AG

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