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| Mechanistic pillar | What the review says it supports | Key risk/uncertainty |
|---|---|---|
| Drosha/Dicer-dependent DDR | Drosha/DICER depletion impairs recruitment of repair factors and reduces HR/NHEJ efficiency, with DDR ubiquitin cascade recruitment effects described. | Whether the RNA step is sequence-specific (DDRNA) vs indirect expression changes remains mechanistically unresolved. |
| RNase H and R-loops | RNase H overexpression reduces HR/NHEJ efficiency and impairs repair factor recruitment; DRIP-Seq using endogenous DSB systems shows hybrids early in repair with transcription-dependent features near breaks. | S9.6 antibody specificity and sequence-affinity variation could bias hybrid detection and protein-interaction mapping. |
| RDDR models (damage-induced transcription vs RNA templating) | Two non-mutually-exclusive models are discussed: (i) damage-induced transcription generating dilncRNAs/ DD RNAs, and (ii) RNA templated repair using pre-DSB transcripts; both can be linked to R-loops and DDR factor dependencies. | Endogenous-context RNA-seq evidence for bidirectional transcription can be inconsistent depending on system, and direct evidence for RNA-templated repair in mammalian contexts is described as lacking. |
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