Medicine

B. Pessoa, Nathalia Da Roz D'Alessandre, G. Guardia, Juliana Moreira Marques, C. Gruetzmacher, Flora Ladeira Craveiro, P. Asprino, P. A. Favoretto Galante, R. L. Batista

2026.2.24MOLECULAR CANCER RESEARCH

DOI: 10.1158/1541-7786.mcr-25-0682

tlooto-Zusammenfassung

This Review provides a focused synthesis of the mechanistic consequences of LINE-1 reactivation in endocrine tumors, and positions LINE-1 derepression as a unifying framework with both biological and clinical relevance in endocrine-related cancers.

Abstract

LINE-1 retrotransposons are increasingly recognized as active molecular players in tumorigenesis, particularly through mechanisms involving genomic instability, epigenetic deregulation, and disruption of transcriptional networks. However, their specific role in endocrine-related cancers remains underexplored despite accumulating evidence of widespread LINE-1 derepression in tumors of the thyroid, adrenal, pituitary, and prostate glands. In this Review, we provide a focused synthesis of the mechanistic consequences of LINE-1 reactivation in endocrine tumors. We discuss how hypomethylation of LINE-1 loci and overexpression of retrotransposon-encoded proteins (ORF1p and ORF2p) may contribute to DNA damage, copy number alterations, and impaired p53 signaling. We also explore emerging evidence that ORF1p may act as a co-regulator of nuclear hormone receptors, thereby linking retroelement biology with hormone-dependent tumor behavior. Beyond these molecular insights, we highlight translational opportunities rooted in LINE-1 biology, including the use of ORF1p as a surrogate biomarker of epigenetic instability, and therapeutic strategies targeting the retrotransposon life cycle. By bridging foundational mechanisms with endocrine-specific tumor phenotypes, this Review positions LINE-1 derepression as a unifying framework with both biological and clinical relevance in endocrine-related cancers.

Zitationsformat

PESSOA, B., et al. LINE-1 activation in endocrine-related cancers: Molecular mechanisms and translational implications. MOLECULAR CANCER RESEARCH, 2026, 24(6): 434–443.