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Updated: Mar 18, 2026

Optical Tweezers to Study RNA-Protein Interactions in Translation Regulation
Published on: February 12, 2022
Cooperativity in RNA-protein interactions: the complex is more than the sum of its partners
Tilmann Achsel1, Claudia Bagni2
1VIB Centre for the Biology of Disease, and KU Leuven, Centre for Human Genetics and Leuven Research Institute for Neuroscience and Disease (LIND), Leuven, Belgium; Department of Fundamental Neuroscience (DNF), University of Lausanne, Switzerland.
Abstract:
Mutations in RNA-binding proteins (RBPs) are often linked to specific neurological disorders, suggesting that each of these RBPs regulates a particular neuronal function. Instead, they recognise many mRNAs and often participate in various post-transcriptional processes. To gain specificity, RBPs bind to RNA in collaboration with other RBPs. This model also explains how an RBP can play diverse roles: many RBPs do not contain an effector domain, which joins the RNA-protein complex as an additional unit. Different complexes, even if anchored on the same RBP, recruit diverse effectors. Therefore, the combination of RBPs determines the fate of an mRNA. We argue that new experimental and bioinformatic paradigms are needed to elucidate the combination of RBPs acting on a given mRNA.
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