Omar Eladl, Alaa Abdelhady, Moustafa A. TagElDein
Epitranscriptomic RNA modifications form a dynamic regulatory layer that shapes gene expression and cellular function. While N6-methyladenosine (m 6 A) has been extensively studied, other modifications—including m 5 C, m 1 A, m 3 C, m 7 G, and Ψ—play critical roles in RNA folding, stability, translation, and stress responses. Initially, studies focused on each RNA modification individually, but recent evidence has revealed that these modifications often occur together, forming interconnected networks in which each modification can influence others, ultimately determining transcript fate and cellular states. In this review, we synthesize insights across the full spectrum of RNA modifications, highlight combinatorial regulation, and examine technological advances that enable mechanistic dissection and translational exploration. By emphasizing how modifications cooperate rather than act alone, this review aims to shift the field toward a holistic, network-based understanding of epitranscriptomic regulation in human disease.