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RNA polymerases -- Laboratory manuals : Bacterial transcriptional control : methods and protocols / edited by Irina Artsimovitch, Thomas J. Santangelo  2015 1
 

RNA Precursor -- See RNA Precursors


RNA transcripts of the DNA that are in some unfinished stage of post-transcriptional processing (RNA PROCESSING, POST-TRANSCRIPTIONAL) required for function. RNA precursors may undergo several steps of RNA SPLICING during which the phosphodiester bonds at exon-intron boundaries are cleaved and the introns are excised. Consequently a new bond is formed between the ends of the exons. Resulting mature RNAs can then be used; for example, mature mRNA (RNA, MESSENGER) is used as a template for protein production
  1
RNA Precursors   2
 

RNA Primary Transcript -- See RNA Precursors


RNA transcripts of the DNA that are in some unfinished stage of post-transcriptional processing (RNA PROCESSING, POST-TRANSCRIPTIONAL) required for function. RNA precursors may undergo several steps of RNA SPLICING during which the phosphodiester bonds at exon-intron boundaries are cleaved and the introns are excised. Consequently a new bond is formed between the ends of the exons. Resulting mature RNAs can then be used; for example, mature mRNA (RNA, MESSENGER) is used as a template for protein production
  1
RNA Processing, Post-Transcriptional   9
RNA Processing, Post-Transcriptional -- genetics : Posttranscriptional gene regulation : RNA processing in eukaryotes / edited by Jane Wu  2013 1
RNA Processing, Post-Transcriptional -- physiology   3
 

RNA Processing, Posttranscriptional -- See RNA Processing, Post-Transcriptional


Post-transcriptional biological modification of messenger, transfer, or ribosomal RNAs or their precursors. It includes cleavage, methylation, thiolation, isopentenylation, pseudouridine formation, conformational changes, and association with ribosomal protein
  1
 

RNA-protein binding -- See RNA-protein interactions


  1
RNA-protein interactions.   23
RNA-protein interactions -- Congresses : The many faces of RNA / edited by D.S. Eggleston, C.D. Prescott, and N.D. Pearson  1998 1
RNA-protein interactions -- Laboratory manuals   9
RNA -- Purification -- Laboratory manuals.   2
 

RNA Refolding -- See RNA Folding


The processes of RNA tertiary structure formation
  1
 

RNA Refoldings -- See RNA Folding


The processes of RNA tertiary structure formation
  1
 

RNA Region, Regulatory -- See Regulatory Sequences, Ribonucleic Acid


Sequences within RNA that regulate the processing, stability (RNA STABILITY) or translation (TRANSLATION, GENETIC) of RNA
  1
 

RNA Regions, Regulatory -- See Regulatory Sequences, Ribonucleic Acid


Sequences within RNA that regulate the processing, stability (RNA STABILITY) or translation (TRANSLATION, GENETIC) of RNA
  1
 

RNA Regulatory Sequence -- See Regulatory Sequences, Ribonucleic Acid


Sequences within RNA that regulate the processing, stability (RNA STABILITY) or translation (TRANSLATION, GENETIC) of RNA
  1
 

RNA Regulatory Sequences -- See Regulatory Sequences, Ribonucleic Acid


Sequences within RNA that regulate the processing, stability (RNA STABILITY) or translation (TRANSLATION, GENETIC) of RNA
  1
RNA -- Research : Biological Relevance & Therapeutic Applications of DNA- & RNA-Quadruplexes / David Monchaud  2015 1
RNA -- Research -- Methodology. : RNA-ligand interactions. Part A: Structural biology methods / edited by Daniel W. Celander, John N. Abelson  2000 1
RNA, Ribosomal   3
RNA, Ribosomal -- analysis : Nucleolus : methods and protocols / edited by Attila NĂ©meth  2016 1
RNA, Ribosomal -- physiology   2
 

RNA, Ribosomal, Precursors -- See RNA Precursors


RNA transcripts of the DNA that are in some unfinished stage of post-transcriptional processing (RNA PROCESSING, POST-TRANSCRIPTIONAL) required for function. RNA precursors may undergo several steps of RNA SPLICING during which the phosphodiester bonds at exon-intron boundaries are cleaved and the introns are excised. Consequently a new bond is formed between the ends of the exons. Resulting mature RNAs can then be used; for example, mature mRNA (RNA, MESSENGER) is used as a template for protein production
  1
 

RNA Rodent Virus -- See RNA Viruses


Viruses whose genetic material is RNA
  1
 

RNA Rodent Viruses -- See RNA Viruses


Viruses whose genetic material is RNA
  1
 

RNA, Scan -- See RNA, Small Interfering


Small double-stranded, non-protein coding RNAs (21-31 nucleotides) involved in GENE SILENCING functions, especially RNA INTERFERENCE (RNAi). Endogenously, siRNAs are generated from dsRNAs (RNA, DOUBLE-STRANDED) by the same ribonuclease, Dicer, that generates miRNAs (MICRORNAS). The perfect match of the siRNAs' antisense strand to their target RNAs mediates RNAi by siRNA-guided RNA cleavage. siRNAs fall into different classes including trans-acting siRNA (tasiRNA), repeat-associated RNA (rasiRNA), small-scan RNA (scnRNA), and Piwi protein-interacting RNA (piRNA) and have different specific gene silencing functions
  1
  RNA Sequence -- 2 Related Subjects   2
 

RNA Sequence Analyses -- See Sequence Analysis, RNA


A multistage process that includes cloning, physical mapping, subcloning, sequencing, and information analysis of an RNA SEQUENCE
  1
 

RNA Sequence Analysis -- See Sequence Analysis, RNA


A multistage process that includes cloning, physical mapping, subcloning, sequencing, and information analysis of an RNA SEQUENCE
  1
 

RNA Sequence Database -- See Databases, Nucleic Acid


Databases containing information about NUCLEIC ACIDS such as BASE SEQUENCE; SNPS; NUCLEIC ACID CONFORMATION; and other properties. Information about the DNA fragments kept in a GENE LIBRARY or GENOMIC LIBRARY is often maintained in DNA databases
  1
 

RNA Sequence Databases -- See Databases, Nucleic Acid


Databases containing information about NUCLEIC ACIDS such as BASE SEQUENCE; SNPS; NUCLEIC ACID CONFORMATION; and other properties. Information about the DNA fragments kept in a GENE LIBRARY or GENOMIC LIBRARY is often maintained in DNA databases
  1
 

RNA Sequence Determination -- See Sequence Analysis, RNA


A multistage process that includes cloning, physical mapping, subcloning, sequencing, and information analysis of an RNA SEQUENCE
  1
 

RNA Sequence Determinations -- See Sequence Analysis, RNA


A multistage process that includes cloning, physical mapping, subcloning, sequencing, and information analysis of an RNA SEQUENCE
  1
 

RNA Sequences -- See Base Sequence


The sequence of PURINES and PYRIMIDINES in nucleic acids and polynucleotides. It is also called nucleotide sequence
  1
 

RNA Sequencing -- See Sequence Analysis, RNA


A multistage process that includes cloning, physical mapping, subcloning, sequencing, and information analysis of an RNA SEQUENCE
  1
 

RNA Sequencing, High-Throughput -- See High-Throughput Nucleotide Sequencing


Techniques of nucleotide sequence analysis that increase the range, complexity, sensitivity, and accuracy of results by greatly increasing the scale of operations and thus the number of nucleotides, and the number of copies of each nucleotide sequenced. The sequencing may be done by analysis of the synthesis or ligation products, hybridization to preexisting sequences, etc
  1
 

RNA, Short Hairpin -- See RNA, Small Interfering


Small double-stranded, non-protein coding RNAs (21-31 nucleotides) involved in GENE SILENCING functions, especially RNA INTERFERENCE (RNAi). Endogenously, siRNAs are generated from dsRNAs (RNA, DOUBLE-STRANDED) by the same ribonuclease, Dicer, that generates miRNAs (MICRORNAS). The perfect match of the siRNAs' antisense strand to their target RNAs mediates RNAi by siRNA-guided RNA cleavage. siRNAs fall into different classes including trans-acting siRNA (tasiRNA), repeat-associated RNA (rasiRNA), small-scan RNA (scnRNA), and Piwi protein-interacting RNA (piRNA) and have different specific gene silencing functions
  1
 

RNA, Short Interfering -- See RNA, Small Interfering


Small double-stranded, non-protein coding RNAs (21-31 nucleotides) involved in GENE SILENCING functions, especially RNA INTERFERENCE (RNAi). Endogenously, siRNAs are generated from dsRNAs (RNA, DOUBLE-STRANDED) by the same ribonuclease, Dicer, that generates miRNAs (MICRORNAS). The perfect match of the siRNAs' antisense strand to their target RNAs mediates RNAi by siRNA-guided RNA cleavage. siRNAs fall into different classes including trans-acting siRNA (tasiRNA), repeat-associated RNA (rasiRNA), small-scan RNA (scnRNA), and Piwi protein-interacting RNA (piRNA) and have different specific gene silencing functions
  1
  RNA silencing -- 2 Related Subjects   2
 

RNA, Small Hairpin -- See RNA, Small Interfering


Small double-stranded, non-protein coding RNAs (21-31 nucleotides) involved in GENE SILENCING functions, especially RNA INTERFERENCE (RNAi). Endogenously, siRNAs are generated from dsRNAs (RNA, DOUBLE-STRANDED) by the same ribonuclease, Dicer, that generates miRNAs (MICRORNAS). The perfect match of the siRNAs' antisense strand to their target RNAs mediates RNAi by siRNA-guided RNA cleavage. siRNAs fall into different classes including trans-acting siRNA (tasiRNA), repeat-associated RNA (rasiRNA), small-scan RNA (scnRNA), and Piwi protein-interacting RNA (piRNA) and have different specific gene silencing functions
  1
  RNA, Small Interfering -- 3 Related Subjects   3
RNA, Small Interfering   36
RNA, Small Interfering -- analysis   2
RNA, Small Interfering -- genetics   2
RNA, Small Interfering -- physiology   4
RNA, Small Interfering -- therapeutic use   4
 

RNA, Small Nuclear, Precursors -- See RNA Precursors


RNA transcripts of the DNA that are in some unfinished stage of post-transcriptional processing (RNA PROCESSING, POST-TRANSCRIPTIONAL) required for function. RNA precursors may undergo several steps of RNA SPLICING during which the phosphodiester bonds at exon-intron boundaries are cleaved and the introns are excised. Consequently a new bond is formed between the ends of the exons. Resulting mature RNAs can then be used; for example, mature mRNA (RNA, MESSENGER) is used as a template for protein production
  1
RNA, Small Nucleolar -- physiology : Small RNAs : analysis and regulatory functions / Wolfgang Nellen, Christian Hammann (eds.)  2006 1
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