Zaloguj się

Unlike eukaryotes, bacteria use a single RNA Polymerase (RNAP) to transcribe all genes. The different subunits of bacterial RNAPhave distinct functions. The multisubunit structure of the bacterial RNAP helps the enzyme to maintain catalytic function, facilitate assembly, interact with DNA and RNA, and self-regulate its activity.

In most genes, the transcription site is a single base present upstream of the coding sequence. Though RNAP is a catalytically efficient enzyme, it does not recognize DNA sequences specifically. To help the RNAP recognize DNA sequences with high affinity, specialized proteins called transcription factors bind to particular regions of DNA to initiate transcription. In bacteria, the sigma factor helps the RNAP recognize the promoter sequence and secures its binding at the transcription start site. Bacteria contain a variety of sigma factors that associate with different promoter sequences. Such different sigma factors bind to the cellular pool of RNAPs to express different genes, depending on the cellular requirement.

Other prokaryotic transcription factors allow the cell to turn transcription of certain genes on or off in response to changes in environmental or cellular conditions. Depending on the number of genes targeted, these transcription factors can control gene expression locally or globally. Some transcription factors use their signal-sensing domains to sense the change and modulate the transcription rate by controlling RNAP binding on the template DNA. Thus, even with a single RNAP enzyme, bacteria can use different transcription factors to control which gene to express and when.

Tagi
Bacterial RNA PolymeraseTranscriptionMRNARibosomeProteinsRNA Polymerase Core EnzymeAlpha SubunitsBeta SubunitsOmega SubunitSigma FactorPromoter SequenceOpen promoter ComplexRNA TranscriptNucleotidesGene Transcribed

Z rozdziału 8:

article

Now Playing

8.4 : Bacterial RNA Polymerase

Transcription: DNA to RNA

25.8K Wyświetleń

article

8.1 : Co to jest ekspresja genów?

Transcription: DNA to RNA

25.3K Wyświetleń

article

8.2 : Struktura RNA

Transcription: DNA to RNA

23.1K Wyświetleń

article

8.3 : Stabilność RNA

Transcription: DNA to RNA

10.3K Wyświetleń

article

8.5 : Rodzaje RNA

Transcription: DNA to RNA

23.0K Wyświetleń

article

8.6 : Transkrypcja

Transcription: DNA to RNA

33.8K Wyświetleń

article

8.7 : Czynniki transkrypcyjne

Transcription: DNA to RNA

19.5K Wyświetleń

article

8.8 : Polimerazy eukariotycznego RNA

Transcription: DNA to RNA

21.1K Wyświetleń

article

8.9 : Białka pomocnicze polimerazy II RNA

Transcription: DNA to RNA

8.9K Wyświetleń

article

8.10 : Czynniki wydłużenia transkrypcji

Transcription: DNA to RNA

10.5K Wyświetleń

article

8.11 : Przetwarzanie przed mRNA

Transcription: DNA to RNA

24.1K Wyświetleń

article

8.12 : RNA Splicing

Transcription: DNA to RNA

16.7K Wyświetleń

article

8.13 : Struktura chromatyny reguluje przetwarzanie pre-mRNA

Transcription: DNA to RNA

6.8K Wyświetleń

article

8.14 : Eksport jądrowy mRNA

Transcription: DNA to RNA

7.4K Wyświetleń

article

8.15 : Synteza rybosomalnego RNA

Transcription: DNA to RNA

12.9K Wyświetleń

See More

JoVE Logo

Prywatność

Warunki Korzystania

Zasady

Badania

Edukacja

O JoVE

Copyright © 2025 MyJoVE Corporation. Wszelkie prawa zastrzeżone