operon - Definition. Was ist operon
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Was (wer) ist operon - definition

GROUP OF OPEN READING FRAMES UNDER THE SAME REGULATION
Operons; Operator (biology); The operon; Operator sequence; Negative regulation; Positive regulation; Operator regions (genetics); Operator gene; Operator (genetics); Operon theory; DNA operator; Polycistronic operon
  • '''''1'': RNA Polymerase, ''2'': Repressor, ''3'': Promoter, ''4'': Operator, ''5'': Lactose, ''6'': lacZ, ''7'': lacY, ''8'': lacA.
''' '''Top''': The gene is essentially turned off. There is no lactose to inhibit the repressor, so the repressor binds to the operator, which obstructs the RNA polymerase from binding to the promoter and making lactase. 
'''Bottom''': The gene is turned on. Lactose is inhibiting the repressor, allowing the RNA polymerase to bind with the promoter, and express the genes, which synthesize lactase. Eventually, the lactase will digest all of the lactose, until there is none to bind to the repressor. The repressor will then bind to the operator, stopping the manufacture of lactase.
  • A typical operon

operon         
['?p?r?n]
¦ noun Biology a unit made up of linked genes which is thought to regulate other genes responsible for protein synthesis.
Origin
1960s: from Fr. operer 'to effect, work' + -on.
Operon         
In genetics, an operon is a functioning unit of DNA containing a cluster of genes under the control of a single promoter. The genes are transcribed together into an mRNA strand and either translated together in the cytoplasm, or undergo splicing to create monocistronic mRNAs that are translated separately, i.
CPS operon         
Cps operon
The capsule biosynthesis, or CPS operon, is a section of the genome present in some Escherichia coli, of which regulates the production of polysaccharides making up the bacterial capsule. These polysaccharides help protect the bacteria from harsh environments, toxic chemicals, and bacteriophages.

Wikipedia

Operon

In genetics, an operon is a functioning unit of DNA containing a cluster of genes under the control of a single promoter. The genes are transcribed together into an mRNA strand and either translated together in the cytoplasm, or undergo splicing to create monocistronic mRNAs that are translated separately, i.e. several strands of mRNA that each encode a single gene product. The result of this is that the genes contained in the operon are either expressed together or not at all. Several genes must be co-transcribed to define an operon.

Originally, operons were thought to exist solely in prokaryotes (which includes organelles like plastids that are derived from bacteria), but since the discovery of the first operons in eukaryotes in the early 1990s, more evidence has arisen to suggest they are more common than previously assumed. In general, expression of prokaryotic operons leads to the generation of polycistronic mRNAs, while eukaryotic operons lead to monocistronic mRNAs.

Operons are also found in viruses such as bacteriophages. For example, T7 phages have two operons. The first operon codes for various products, including a special T7 RNA polymerase which can bind to and transcribe the second operon. The second operon includes a lysis gene meant to cause the host cell to burst.