Your browser does not fully support modern features. Please upgrade for a smoother experience.
RNA Transcription: History
Please note this is an old version of this entry, which may differ significantly from the current revision.
Contributor: Yu Peng

RNA transcription is the template-directed enzymatic synthesis of an RNA molecule from a defined DNA sequence. It is catalyzed by RNA polymerase, which locally separates the DNA strands, reads the template strand in the 3′→5′ direction, and polymerizes complementary ribonucleoside triphosphates into an RNA chain in the 5′→3′ direction through phosphodiester-bond formation [1][2]. The resulting transcript has a nucleotide sequence complementary to the DNA template and corresponds, apart from uracil replacing thymine, to the coding-strand sequence.

The process comprises ordered stages of promoter recognition and initiation, promoter escape, elongation of the nascent RNA, and termination with release of the RNA product and polymerase from the transcription unit [2][3]. Its molecular components include a DNA template containing regulatory and transcribed regions, RNA polymerase, ribonucleoside triphosphate substrates, divalent metal ions in the catalytic center, and accessory factors that direct polymerase recruitment, start-site selection, processivity, pausing, RNA processing, and termination [2][3][4]. In eukaryotes, RNA polymerases I, II, and III synthesize specialized RNA classes through associated transcription machineries, with RNA polymerase II producing precursor messenger RNAs and numerous regulatory non-coding RNAs [3][4].

  • RNA polymerase
  • promoter
  • transcription initiation
  • transcription elongation

RNA and protein synthesis mechanisms • Molecular Biology • Biochemistry, Genetics and Molecular Biology • Life Sciences

References

  1. Michael Chamberlin; Paul Berg; Deoxyribonucleic acid-directed synthesis of ribonucleic acid by an enzyme from Escherichia coli.. Proc. Natl. Acad. Sci. 1962, 48, 81-94, 10.1073/pnas.48.1.81.
  2. Patrick Cramer; Multisubunit RNA polymerases. Curr. Opin. Struct. Biol. 2002, 12, 89-97, 10.1016/s0959-440x(02)00294-4.
  3. Patrick Cramer; Organization and regulation of gene transcription. Nature 2019, 573, 45-54, 10.1038/s41586-019-1517-4.
  4. Stephen R. Archuleta; James A. Goodrich; Jennifer F. Kugel; Mechanisms and Functions of the RNA Polymerase II General Transcription Machinery during the Transcription Cycle. Biomol. 2024, 14, 176, 10.3390/biom14020176.
More
This entry is offline, you can click here to edit this entry!
Academic Video Service