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Nat Biotech 20 (8), 831-5 (Aug 2002)
SELEX experiments new prospects applications and data analysis in inferring regulatory pathways
Biomolecular Engineering 24 (2), 179 (2007)
Molecules and cells 18 (1), 17-23 (31 Aug 2004)
Using an in vitro selection technology termed SELEX on a combinatorial RNA library with 40 nucleotide-long random sequences, we have isolated two RNA aptamers to the NFAT DNA binding domain (DBD)
Proceedings of the National Academy of Sciences 104 (10), 3742-6 (06 Mar 2007)
Journal of biomolecular techniques : JBT 16 (3), 224-34 (Sep 2005)
terapeuticky využitelné NK
Natural product reports 16 (6), 641-51 (Dec 1999)
terapeutické využití NK
Nucleic acids research. 34 (2), 635-46 (2006)
Cellular RNAs that do not function as messenger RNAs (mRNAs), transfer RNAs (tRNAs) or ribosomal RNAs (rRNAs) comprise a diverse class of molecules that are commonly referred to as non-protein-coding RNAs (ncRNAs). These molecules have been known for quite a while, but their importance was not fully appreciated until recent genome-wide searches discovered thousands of these molecules and their genes in a variety of model organisms. Some of these screens were based on biocomputational prediction of ncRNA candidates within entire genomes of model organisms. Alternatively, direct biochemical isolation of expressed ncRNAs from cells, tissues or entire organisms has been shown to be a powerful approach to identify ncRNAs both at the level of individual molecules and at a global scale. In this review, we will survey several such wet-lab strategies, i.e. direct sequencing of ncRNAs, shotgun cloning of small-sized ncRNAs (cDNA libraries), microarray analysis and genomic SELEX to identify novel ncRNAs, and discuss the advantages and limits of these approaches.
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