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Post-transcriptional Processing. Processing Events in Prokaryotes vs Eukaryotes.

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Presentation on theme: "Post-transcriptional Processing. Processing Events in Prokaryotes vs Eukaryotes."— Presentation transcript:

1 Post-transcriptional Processing

2 Processing Events in Prokaryotes vs Eukaryotes

3 Capping RNA Stability –5'-5' linkage not recognized by RNAses –Methylation of 2'OH prevents use of the hydroxyl by RNAses Translation efficiency –CAP binding factor part of translation initiation – eIF4E Triphosphatase Guanysyl transferase Guanosine- 7-methyl transferase 2'-O-methyl transferase

4 Cleavage and Polyadenylation

5 Alternative pA Site Usage in Immunoglobulin Genes

6 Pre-mRNA Splicing

7 snRNAs & snRNPs: The Splice Girls U1 snRNA U2 snRNA U4 snRNA U5 snRNA U6 snRNA U1 snRNP* U2 snRNP U4 snRNP U5 snRNP U6 snRNP snRNAs associated with various numbers of proteins to form small nuclear ribonucleoprotein complexes * Pronounced snurps

8 Splicing U1 snRNP –Recognition of 5’ splice site –Interaction with U6 snRNP U2 snRNP –Recognition of branch point sequences –Base pairs with U6 snRNP U4 snRNP –Base pairs with U6 & U5 snRNPs to recruit them to spliceosome U5 snRNP –Recognizes last nt in intron & first nucleotide in exon sequences U6 snRNP –Displaces U1 at 5' site while base pairing with U2 –Positions 5' site near branch point

9 Association of snRNAs with Pre- mRNA

10 Spliceosomal Complex

11 Capping and Splicing Occur Co-transcriptionally

12 Trans-Splicing in C. elegans Leader RNA is spliced onto 5' end of multiple pre-mRNAs

13 Alternative Splicing Regulates Drosophila Sex Determination

14 Other RNA Processing Events

15 Ribosomal RNA Processing

16 Small Nucleolar RNAs - snoRNAs

17 Some Modified Bases Found in RNA


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