6.3 Transcription and RNA Processing
- Syllabus
- 2025
- Topic
- 6.3
- Level
- —
Transcription transfers genetic information from one DNA template strand into a complementary RNA molecule. The RNA base sequence and the molecule's structure then determine its function in the flow of information from DNA toward protein.
| RNA type | Information-flow role |
|---|---|
| Messenger RNA (mRNA) | Carries information from DNA in the nucleus to ribosomes in the cytoplasm |
| Transfer RNA (tRNA) | Carries a specific amino acid and uses its anticodon to pair with an mRNA codon |
| Ribosomal RNA (rRNA) | Forms functional building blocks of ribosomes |
RNA polymerase uses a single DNA strand as the template. It reads that template in the 3′→5′ direction while adding complementary RNA bases so the RNA grows in the 5′→3′ direction. Thus, template reading and RNA synthesis proceed in opposite directions.
| Eukaryotic mRNA modification | Consequence |
|---|---|
| Add a poly-A tail | Makes the mRNA more stable |
| Add a GTP cap | Helps ribosomal recognition |
| Excise introns and splice retained exons | Produces a mature mRNA sequence |
| Retain different exon combinations | Produces different mature mRNA versions through alternative splicing |
A single initial eukaryotic transcript can be processed with different retained exon combinations. The resulting mature mRNAs have different base sequences, so they can direct production of different protein versions from the same gene.
RNA polymerase does not copy both DNA strands for one transcript, and it does not synthesize RNA 3′→5′. Introns are excised; exons are the sequences spliced together and retained in mature mRNA.