LINE-1 Activation in Endocrine-Related Cancers: Molecular Mechanisms and Translational Implications.
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
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.