SYCP3 enhances prostate cancer metastasis and modulates the DNA damage response pathway

M Maria Rodrigo-Faus I Ines del Monte-Garcia M Marina Hermosilla-Trespaderne A Alicia Gordo-Vega N Natalia Vidal J Javier Puente (Hospital Clínico Universitario San Carlos de Madrid, Madrid) M Melchor Saiz-Pardo Ángel M. Cuesta H Hui-Qi Qu H Hakon Hakonarson A Almudena Porras D Daniel Sanchez-Parcerisa P Paloma Bragado A Alvaro Gutierrez-Uzquiza

Abstract

Abstract Prostate cancer (PCa) is a prevalent male cancer with high survival rates, except in advanced or metastatic stages, for which effective treatments are lacking. Metastatic PCa involves complex mechanisms including loss of tumor suppressor genes and DNA repair molecules, which impacts therapy responses. Analyses of tumor samples demonstrated that SYCP3 expression is frequently upregulated in PCa tumors from patients in advanced stages. Due to the implication of SYCP3 on DNA repair processes, we have analyzed the role of SYCP3 on the cellular response to radiotherapy (RT) and found that its depletion induced RT resistance, suggesting a role for SYCP3 in DNA damage response and genomic instability. Additionally, based on a previous CRISPR/Cas9 genome-wide screening identifying SYCP3 as a potential regulator of metastatic invasion in DU145 PCa cells, we performed biological validation analyses, which showed that SYCP3 depletion significantly reduced the invasive and migratory abilities of DU145 cells and increased their adhesion capacity. All these data support a role for SYCP3 in PCa metastasis and provides opportunities for personalized medicine.

Article Details

Volume / Issue Vol. 1, Issue 1
Published August 03, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (14)

M

Maria Rodrigo-Faus

I

Ines del Monte-Garcia

M

Marina Hermosilla-Trespaderne

A

Alicia Gordo-Vega

N

Natalia Vidal

J

Javier Puente

Hospital Clínico Universitario San Carlos de Madrid, Madrid

M

Melchor Saiz-Pardo

Ángel M. Cuesta

H

Hui-Qi Qu

H

Hakon Hakonarson

A

Almudena Porras

D

Daniel Sanchez-Parcerisa

P

Paloma Bragado

A

Alvaro Gutierrez-Uzquiza