Methods · 2013 · 17 citations · 37 references
In the past few years, RNA molecules have been revealed to be at the center of numerous biological processes. Long considered as passive molecules transferring genetic information from DNA to proteins, it is now well established that RNA molecules play important regulatory roles. Associated with that, the number of identified RNA binding proteins (RBPs) has increased considerably and mutations in RNA molecules or RBP have been shown to cause various diseases, such as cancers. It is therefore crucial to understand at the molecular level how these proteins specifically recognise their RNA targets in order to design new generation drug therapies targeting protein-RNA complexes. Nuclear magnetic resonance (NMR) is a particularly well-suited technique to study such protein-RNA complexes at the atomic level and can provide valuable information for new drug discovery programs. In this article, we describe the NMR strategy that we and other laboratories use for screening optimal conditions necessary for structural studies of protein-single stranded RNA complexes, using two proteins, Sam68 and T-STAR, as examples.
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Wolfgang Kabsch · Acta Crystallographica Section D Biological Crystallography · 2010 · 16.5K citations · Full text
WebLogo: A Sequence Logo Generator: Figure 1
Gavin E. Crooks, Gary C. Hon, John‐Marc Chandonia et al. · Genome Research · 2004 · 12.7K citations · Full text
Landscape of transcription in human cells
Sarah Djebali, Carrie Davis, Angelika Merkel et al. · Nature · 2012 · 5.3K citations · Full text
Insights into RNA Biology from an Atlas of Mammalian mRNA-Binding Proteins
Alfredo Castelló, Bernd Fischer, Katrin Eichelbaum et al. · Cell · 2012 · 2.2K citations · Full text
Functional Genomics, Natural Sciences, Rna Binding Proteins +10