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Topic: 3’UTRs

Seminar
2 seminars
Seminar · Molecular Biology

How do protein-RNA condensates form and contribute to disease?

Jernej Ule · UK Dementia Research Institute

Fri, May 6, 2022 · 12:00 UTC

In recent years, it has become clear that intrinsically disordered regions (IDRs) of RBPs, and the structure of RNAs, often contribute to the condensation of RNPs. To understand the transcriptomic features of such RNP condensates, we’ve used an improved individual nucleotide resolution CLIP protocol (iiCLIP), which produces highly sensitive and specific data, and thus enables quantitative comparisons of interactions across conditions (Lee et al., 2021). This showed how the IDR-dependent condensation properties of TDP-43 specify its RNA binding and regulatory repertoire (Hallegger et al., 2021)

Seminar · Neuroscience

Neuronal RNA signatures: Regulation and Function

Valérie Hilgers, PhD · Max-Planck-Institute of Immunobiology and Epigenetics; Freiburg, Germany

Wed, Jan 19, 2022 · 17:00 UTC

Neurons are uniquely complex cells characterized by the expression of RNA sequences that are found in no other cell type: neuron-specific mRNA splice isoforms, circular RNAs, microRNAs, and ultra-long 3’UTRs. Although relatively little is known about how these neuronal RNA signatures control neuronal development and function, the importance of RNA-directed regulation in the brain is exemplified by its implication in neurological diseases. Our goal is to gain mechanistic and functional insight of the neuron-specific RNA landscape that drives neural function in health and disease.

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