RNA: Difference between revisions

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Only a small fraction of the human genome codes for proteins, tRNA or rRNA. The remainder has been called "junk DNA" in the past, but some of it codes for RNA that plays a role in gene regulation.
Only a small fraction of the human genome codes for proteins, tRNA or rRNA. The remainder has been called "junk DNA" in the past, but some of it codes for RNA that plays a role in gene regulation.
====Riboswitches====
====Riboswitches====
Riboswitches work by binding to segments of RNA, thereby changing the structure of it (for example, by competing with an interaction supporting one structure, they allow it to fold into a different structure. The structure of the riboswitches is sometimes dependent on binding to small molecules, like the <scene name='49/491851/Riboswitch/1'>riboswitch bound to S-adenosylmethionine shown here</scene>.
[[Riboswitches]] work by binding to segments of RNA, thereby changing the structure of it (for example, by competing with an interaction supporting one structure, they allow it to fold into a different structure. The structure of the riboswitches is sometimes dependent on binding to small molecules, like the <scene name='49/491851/Riboswitch/1'>riboswitch bound to S-adenosylmethionine shown here</scene>.
====RNA silencing====
====RNA silencing====
<scene name='49/491851/Sirna/2'>siRNA</scene> (<jmol><jmolLink><script> select rna; selectionHalos ON; delay 0.5;selectionHalos OFF;</script><text>⚞RNA⚟</text></jmolLink> </jmol>)
<scene name='49/491851/Sirna/2'>siRNA</scene> (<jmol><jmolLink><script> select rna; selectionHalos ON; delay 0.5;selectionHalos OFF;</script><text>⚞RNA⚟</text></jmolLink> </jmol>)

Revision as of 16:41, 29 August 2019

RNA (ribonucleic acid) is a biological macromolecule that stores and processes genetic information, catalyzes chemical reactions and regulates biological processes. Just like the other nucleic acid (DNA), it is a linear polymer (a "strand") of nucleotide building blocks. These building blocks themselves are made up of a sugar linked to a (nitrogenous) base and a phosphate. RNA utilizes a different set of bases than DNA, and it sugar (ribose) contains one additional hydroxyl group compared to that of DNA (deoxyribose). Different than DNA, which mostly occurs in pairs of complementary strands in its biological context, RNA mostly lacks a complementary strand, leading to a larger variety of 3D structures and biological functions.


RNA structure and function

Drag the structure with the mouse to rotate

Chemistry

  1. Base: flat, aromatic, hydrogen-bonding capability, base modifications, base pairing, transfer RNA
  2. Sugar phosphate backbone: torsion angles, sugar pucker, phosphate-phosphate distance

Transcription and Translation

The expression of genes into proteins and is a process involving two stages called transcription and translation. In the transcription stage a strand of DNA molecule serves as a template for the synthesis of an RNA molecule called messenger RNA. In the case of RNAs that code for polypetides, this messenger RNA is then translated into proteins on Riboswitches.

Post-transcriptionally, specific nucleotides in RNA are often further modified. This is most frequent in [tRNA|transfer ribonucleic acid (tRNAs)]], the adapter molecules of Translation, and ribosomal ribonucleic acids (rRNAs) of the ribosome.

See Also

External Resources

References

Proteopedia Page Contributors and Editors (what is this?)

Karsten Theis, Wayne Decatur, Michal Harel