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CHK1/RAD17 mRNA refers to the messenger RNA transcripts of Checkpoint kinase 1 (CHEK1) and Cell cycle checkpoint protein RAD17, which are pivotal nodes in the ATR-mediated DNA damage response (DDR) pathway [4, 7]. RAD17 facilitates the loading of the 9-1-1 complex onto damaged DNA, while CHK1 serves as the downstream kinase responsible for enforcing S and G2/M phase cell cycle checkpoints [7, 10]. Therapeutic targeting of these mRNAs, primarily through RNA interference (RNAi) or antisense oligonucleotides, aims to disrupt the DDR, thereby sensitizing cancer cells to genotoxic chemotherapy or radiotherapy [2, 6]. This strategy is especially relevant in p53-mutant cancers, which rely heavily on the G2/M checkpoint for DNA repair; its abrogation leads to mitotic catastrophe and cell death [3, 5]. Experimental constructs, such as siRNA-gemcitabine conjugates, have demonstrated synergistic efficacy in preclinical models of pancreatic and breast cancer by simultaneously delivering a cytotoxic agent and silencing these protective checkpoint genes [2, 9].
The primary mechanism involves RNA interference (RNAi) mediated degradation of CHK1 and RAD17 mRNAs, leading to the depletion of their respective proteins and subsequent abrogation of the ATR-dependent DNA damage checkpoint.
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