Splicing Machinery Is Impaired in Oral Squamous Cell Carcinomas and Linked to Key Pathophysiological Features

Author:

Sanjuan-Sanjuan Alba1234ORCID,Alors-Perez Emilia1256,Sanchez-Frías Marina127,Monserrat-Barbudo José A.123,Falguera Uceda Mabel123ORCID,Heredero-Jung Susana123,Luque Raúl M.1256ORCID

Affiliation:

1. Maimonides Biomedical Research Institute of Cordoba (IMIBIC), 14004 Cordoba, Spain

2. Reina Sofia University Hospital (HURS), 14004 Cordoba, Spain

3. Oral and Maxillofacial Surgery Department, HURS, 14004 Cordoba, Spain

4. Oral and Maxillofacial Surgery Department, CAMC Hospital, Charleston, WV 25301, USA

5. Department of Cell Biology, Physiology, and Immunology, University of Cordoba, 14014 Cordoba, Spain

6. CIBER Physiopathology of Obesity and Nutrition (CIBERobn), 14004 Cordoba, Spain

7. Anatomical Pathology Service, IMIBIC/HURS, 14004 Cordoba, Spain

Abstract

Alternative splicing dysregulation is an emerging cancer hallmark, potentially serving as a source of novel diagnostic, prognostic, or therapeutic tools. Inhibitors of the activity of the splicing machinery can exert antitumoral effects in cancer cells. We aimed to characterize the splicing machinery (SM) components in oral squamous cell carcinoma (OSCC) and to evaluate the direct impact of the inhibition of SM-activity on OSCC-cells. The expression of 59 SM-components was assessed using a prospective case-control study of tumor and healthy samples from 37 OSCC patients, and the relationship with clinical and histopathological features was assessed. The direct effect of pladienolide-B (SM-inhibitor) on the proliferation rate of primary OSCC cell cultures was evaluated. A significant dysregulation in several SM components was found in OSCC vs. adjacent-healthy tissues [i.e., 12 out of 59 (20%)], and their expression was associated with clinical and histopathological features of less aggressiveness and overall survival. Pladienolide-B treatment significantly decreased OSCC-cell proliferation. Our data reveal a significantly altered expression of several SM-components and link it to pathophysiological features, reinforcing a potential clinical and pathophysiological relevance of the SM dysregulation in OSCC. The inhibition of SM-activity might be a therapeutic avenue in OSCC, offering a clinically relevant opportunity to be explored.

Funder

Ministry of Science and Innovation of Spain

Instituto de Salud Carlos III

European Union

Junta de Andalucia

CIBERobn

Publisher

MDPI AG

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