11.2
Riboswitches are intricately folded mRNA structures that bind directly to a metabolite and switch the expression of downstream genes on the transcript on and off.
These structures regulate the synthesis of various metabolites including guanine, coenzyme B12, and lysine. They are usually located at the 5’ non-coding ends of prokaryotic mRNA and do not need proteins to function.
Riboswitches have two major domains – an aptamer, a highly specific metabolite-binding sensor, and an expression platform, which acts as an effector for transcription or translation.
If there is an insufficient amount of a metabolite, it cannot bind to the aptamer. This causes the expression platform to form an anti-terminator structure which allows transcription and translation to proceed.
When a metabolite is present above a threshold concentration, it binds to the aptamer. This changes the conformation of the expression platform from the anti-terminator to the terminator structure which inhibits transcription and translation.
A riboswitch can regulate gene expression by two distinct mechanisms.
The first mechanism affects gene transcription. When a metabolite binds to the aptamer, the anti-terminator converts into the terminator. This results in the release of RNA polymerase from the mRNA and the DNA template, leading to termination of the transcription.
The second mechanism affects mRNA translation. When a metabolite binds to the aptamer, the terminator blocks the ribosome binding site making the site unavailable for ribosome binding and preventing the initiation of translation.
Riboswitches are non-coding mRNA domains that regulate the transcription and translation of downstream genes without the help of proteins. Riboswitche…
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