Impact of disruptions in antigen processing and presentation machinery on sarcoma

Author:

Renne Salvatore Lorenzo1,Samà Laura2,Kumar Sonia1,Mintemur Omer2,Ruspi Laura2,Santori Ilaria1,Sicoli Federico2,Bertuzzi Alexia Francesca2,Laffi Alice2,Bonometti Arturo1,Colombo Piergiuseppe1,D'Amato Vittoria2,Bressan Alessandra1,Scorsetti Marta1,Terracciano Luigi1,Navarria Pierina2,D'Incalci Maurizio1,Quagliuolo Vittorio Lorenzo2,Pasqualini Fabio1,Grizzi Fabio1,Cananzi Ferdinando Carlo Maria1

Affiliation:

1. Humanitas University

2. IRCCS Humanitas Research Hospital

Abstract

Abstract

Background: The antigen processing machinery (APM) plays a critical role in generating tumor-specific antigens that can be recognized and targeted by the immune system. The status of the APM in sarcomas is not well characterized. Methods: We investigated 126 patients with 8 types of bone and soft tissue sarcoma operated between 2001-2021. Tissue microarrays mapped 11 specific areas in each case. The presence/absence of APM protein was determined through immunohistochemistry. Bayesian networks were used. Results: All investigated sarcomas had some defects in APM. The least damaged component was HLA Class I subunit β2-microglobulin and HLA Class II. The proteasome LMP10 subunit was defective in leiomyosarcoma (LMS), myxoid liposarcoma (MLPS), and dedifferentiated liposarcoma (DDLPS), while MHC I transporting unit TAP2 was altered in undifferentiated pleomorphic sarcoma (UPS), gastrointestinal stromal tumor (GIST), and chordoma (CH). Among different neoplastic areas, high-grade areas showed different patterns of expression compared to high lymphocytic infiltrate areas. Heterogeneity at the patient level was also observed. Loss of any APM component was prognostic of distant metastasis (DM) for LMS and DDLPS and of overall survival (OS) for LMS. Conclusion: Sarcomas exhibit a high degree of defects in APM components, with differences among histotypes and tumoral areas. The most commonly altered APM components were HLA Class I subunit β2-microglobulin, HLA Class I subunit α (HC10), and MHC I transporting unit TAP2. The loss of APM components was prognostic of DM and OS and clinically relevant for LMS and DDLPS. This study explores sarcoma molecular mechanisms, enriching personalized therapeutic approaches.

Publisher

Springer Science and Business Media LLC

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