Centre for Immunology and Regenerative Medicine, Institute of Dentistry, Barts and the London School of Medicine and Dentistry, Queen Mary University of London, London E1 4NS, UK.
Liverpool Head and Neck Centre, Molecular and Clinical Cancer Medicine, University of Liverpool, Liverpool L69 3BX, UK.
Int J Mol Sci. 2024 Apr 7;25(7):4092. doi: 10.3390/ijms25074092.
We explore the possibility that defects in genes associated with the response and repair of DNA double strand breaks predispose oral potentially malignant disorders (OPMD) to undergo malignant transformation to oral squamous cell carcinoma (OSCC). Defects in the homologous recombination/Fanconi anemia (HR/FA), but not in the non-homologous end joining, causes the DNA repair pathway to appear to be consistent with features of familial conditions that are predisposed to OSCC (FA, Bloom's syndrome, Ataxia Telangiectasia); this is true for OSCC that occurs in young patients, sometimes with little/no exposure to classical risk factors. Even in Dyskeratosis Congenita, a disorder of the telomerase complex that is also predisposed to OSCC, attempts at maintaining telomere length involve a pathway with shared HR genes. Defects in the HR/FA pathway therefore appear to be pivotal in conditions that are predisposed to OSCC. There is also some evidence that abnormalities in the HR/FA pathway are associated with malignant transformation of sporadic cases OPMD and OSCC. We provide data showing overexpression of HR/FA genes in a cell-cycle-dependent manner in a series of OPMD-derived immortal keratinocyte cell lines compared to their mortal counterparts. The observations in this study argue strongly for an important role of the HA/FA DNA repair pathway in the development of OSCC.
我们探讨了与 DNA 双链断裂反应和修复相关的基因缺陷是否使口腔潜在恶性疾病(OPMD)易发生恶性转化为口腔鳞状细胞癌(OSCC)的可能性。同源重组/范可尼贫血(HR/FA)缺陷,但非非同源末端连接缺陷,导致 DNA 修复途径似乎具有易发生 OSCC(FA、Bloom 综合征、共济失调毛细血管扩张症)的家族性疾病的特征;这对于发生在年轻患者中的 OSCC 是正确的,有时几乎没有/没有接触到经典的危险因素。即使在也易发生 OSCC 的端粒酶复合物缺陷的先天性角化不良症中,维持端粒长度的尝试涉及具有共享 HR 基因的途径。因此,HR/FA 途径的缺陷似乎在易发生 OSCC 的情况下至关重要。也有一些证据表明,HR/FA 途径的异常与散发性 OPMD 和 OSCC 的恶性转化有关。我们提供的数据显示,与相应的永生角质形成细胞系相比,一系列 OPMD 衍生的永生化角质形成细胞系中 HR/FA 基因呈细胞周期依赖性过表达。本研究中的观察结果强烈支持 HA/FA DNA 修复途径在 OSCC 发展中的重要作用。