RNA$70885$ - traduction vers Anglais
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RNA$70885$ - traduction vers Anglais

SraE/RygA/RygB family RNA; RygA RNA; RygB RNA; OmrA RNA; OmrB RNA; SraE RNA

RNA      
n. RNA (ribonucleïne zuur, bij erfelijkheidsmechanisme)
ribonucleic acid         
  • ochre]], proteins in blue. The active site is a small segment of rRNA, indicated in red.
  • [[Secondary structure]] of a [[telomerase RNA]].
  • Double-stranded RNA
  • Structure of a [[hammerhead ribozyme]], a ribozyme that cuts RNA
  • Watson-Crick base pairs in a [[siRNA]] (hydrogen atoms are not shown)
  • A hairpin loop from a pre-mRNA. Highlighted are the [[nucleobase]]s (green) and the ribose-phosphate backbone (blue). This is a single strand of RNA that folds back upon itself.
  • Structure of a fragment of an RNA, showing a guanosyl subunit.
  • Robert W. Holley, left, poses with his research team.
  • Uridine to pseudouridine is a common RNA modification.
  •  A diagram of how mRNA is used to create polypeptide chains.
FAMILY OF LARGE BIOLOGICAL MOLECULES
DsRNA; Ribonucleic acid; Ribonucleic Acid; RiboNucleic Acid; Ribo nucleic acid; Ribo Nucleic Acid; Ribose nucleic acid; Ribose Nucleic Acid; Double-stranded RNA; RNAs; Dsrna; Rna; SsRNA; RNA genome; Ribo-nucleic acid; Single-stranded RNA
ribonucleïne zuur (R.N.A., gedeelte van erfelijk mechanisme)
nucleic acids         
  • Swiss]] [[scientist]] [[Friedrich Miescher]] discovered nucleic acid first naming it as nuclein, in 1868. Later, he raised the idea that it could be involved in [[heredity]].<ref>[[Bill Bryson]], ''[[A Short History of Nearly Everything]]'', Broadway Books, 2015.p. 500.</ref>
LARGE BIOMOLECULES ESSENTIAL TO KNOWN LIFE
Genetic material; Nucleic Acid; Nucleic acids; Nucleic Acids; Nuclein; DNA and RNA
nucleïne zuren (bevat erfelijke factoren)

Définition

mRNA
¦ abbreviation Biology messenger RNA.

Wikipédia

OmrA-B RNA

The OmrA-B RNA gene family (also known as SraE RNA, RygA and RygB and OmrA and OmrB) is a pair of homologous OmpR-regulated small non-coding RNA that was discovered in E. coli during two large-scale screens. OmrA-B is highly abundant in stationary phase, but low levels could be detected in exponentially growing cells as well. RygB is adjacent to RygA a closely related RNA. These RNAs bind to the Hfq protein and regulate gene expression by antisense binding. They negatively regulate the expression of several genes encoding outer membrane proteins, including cirA, CsgD, fecA, fepA and ompT by binding in the vicinity of the Shine-Dalgarno sequence, suggesting the control of these targets is dependent on Hfq protein and RNase E. Taken together, these data suggest that OmrA-B participates in the regulation of outer membrane composition, responding to environmental conditions.

Together with the RNA chaperone Hfq, OmrA-B positively controls bacterial motility and negatively controls the production of acidic exopolysaccharide amylovoran in plant pathogen Erwinia amylovora.