Jul 2026· Cell Death and Differentiation· 0 citations· 42 references
Medicine
TL;DR
A snoRNA-chromatin-repair axis driving therapeutic resistance and support SNORA23 inhibition as a promising strategy to overcome radioresistance in ESCC are defined.
Abstract
Radioresistance remains a major barrier in esophageal squamous cell carcinoma (ESCC). This study demonstrates small nucleolar RNA SNORA23 as a pathogenic epigenetic driver of intrinsic radioresistance, with its overexpression tightly correlating with advanced T-stage, lymph node metastasis, and adverse clinical outcomes in a chemoradiotherapy cohort. Mechanistically, SNORA23 directly binds the ARID domain of histone demethylase KDM5C via a structurally defined G11-Ser169 interface-obstructing KDM5C chromatin binding to derepress DNA repair scaffolding gene SFPQ. This chromatin reprogramming enables SFPQ-facilitated recruitment of RAD51 and Ku80 to DNA double-strand breaks, accelerating homologous recombination (HR) and non-homologous end joining (NHEJ). SFPQ high expression recapitulates SNORA23-mediated repair enhancement and reduced radiosensitivity. Therapeutically, SNORA23-targeting antisense oligonucleotides (ASOs) disrupt this axis, impair DNA repair, and synergize with radiotherapy to suppress tumor growth and prolong survival in vivo without evident systemic toxicity These findings define a snoRNA-chromatin-repair axis driving therapeutic resistance and support SNORA23 inhibition as a promising strategy to overcome radioresistance in ESCC.
Radiotherapy resistance represents a critical barrier to successful treatment of esophageal squamous cell carcinoma (ESCC), driving tumor recurrence and poor patient survival. We identify constitutive overexpression of integrin α5 (ITGA5) as a key molecular determinant of ESCC radioresistance. Clinically, elevated ITGA...
ABSTRACT Radioresistance remains a significant challenge in the radiotherapy (RT) of head and neck squamous cell carcinoma (HNSCC). However, the biological factors that govern sensitivity to this therapy are not well‐understood. The DEAD‐box family is known for its role in genome stability, and inextricably linked to t...
Tian-Ru Yang, T. Shen, Yan-Fang Qiu et al.· Advancement of science· 0 citations
The hypothesis emphasizes the need to clarify the molecular mechanisms and signaling pathways associated with KAT8–H4K16ac, especially in relation to apoptotic pathways, which could offer new insights and justifications for treatment strategies in cisplatin‐resistant osteosarcoma.
Zhen-Qun Zhao, Guohui Yu, Shi-Kui Wu et al.· Med Research· 0 citations
Gastric cancer (GC) remains a leading cause of cancer mortality, with epidemiological patterns indicative of androgen signaling involvement. We establish androgen receptor (AR) as a pivotal oncogenic factor in GC and provide preclinical validation for its therapeutic targeting. AR expression was significantly eleva...
Hua-Huan Liu, Yan-Xin Yao, Xiang-Nan Zhang et al.· Cell Death & Disease· 0 citations
Non-small cell lung cancer (NSCLC) remains a major cause of cancer mortality worldwide, and radioresistance significantly compromises the efficacy of radiotherapy. However, the precise molecular determinants governing NSCLC radiosensitivity remain incompletely defined. Here, we identify SEPT5 as a key regulator of radi...
Jun-Miao Wen, Wang Zheng, Bo-Yan Wang et al.· International Immunopharmaco...· 0 citations