Kolenda Tomasz, Chałaj Piotr, Cichowicz Aleksandra, Trojańska Aleksandra, Bałoniak Andrzej, Kwaśniewska Malwina, Odrobińska Magda, Guglas Kacper, Kozłowska-Masłoń Joanna, Gieremek Paulina, Poter Paulina, Janiczek-Polewska Marlena, Florczak-Substyk Anna, Przybyła Anna, Mantaj Patrycja, Regulska Katarzyna, Stanisz Beata Jadwiga, Cybulski Zefiryn, Kazimierczak Urszula
Laboratory of Cancer Genetics, Greater Poland Cancer Centre, Poznan, Poland.
Department of Cancer Immunology, Chair of Medical Biotechnology, Poznan University of Medical Sciences, Poznan, Poland.
Rep Pract Oncol Radiother. 2025 Aug 7;30(3):366-384. doi: 10.5603/rpor.106096. eCollection 2025.
Initially, pseudogenes were considered to be "junk DNA", and their biological role was unclear. However, some of the pseudogenes are engaged in the process of cancerogenesis and perform essential functions in competing for endogenous ribonucleic acid (ceRNA) networks and competing for RNA binding proteins (RBPs). They either positively or negatively regulate gene expression and act as suppressive and oncogenic transcripts. In this review, we look at some of the pseudogenes that play a role in the epithelial-to-mesenchymal transition (EMT) process and the maintenance of cancer-initiating cells (CIC), which are essential in understanding cancer development and progression metastasis and resistance to commonly used therapies. The group of discussed pseudogenes consists of , , , , , or , which are connected with different molecular pathways. Moreover, we discussed pseudogenes as potential diagnostic molecules that can be used as a new class of biomarkers. This potential usage may be valuable for oncology and personalized medicine in the future.
最初,假基因被认为是“垃圾DNA”,其生物学作用尚不清楚。然而,一些假基因参与了肿瘤发生过程,并在竞争性内源核糖核酸(ceRNA)网络和竞争性RNA结合蛋白(RBP)中发挥重要作用。它们要么正向要么负向调节基因表达,并作为抑制性和致癌性转录本发挥作用。在本综述中,我们探讨了一些在上皮-间质转化(EMT)过程和癌症起始细胞(CIC)维持中起作用的假基因,这对于理解癌症的发展、进展转移以及对常用疗法的耐药性至关重要。所讨论的假基因组包括 、 、 、 、 或 ,它们与不同的分子途径相关。此外,我们还讨论了假基因作为潜在诊断分子的可能性,其可作为一类新型生物标志物。这种潜在用途未来可能对肿瘤学和个性化医学具有重要价值。