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B A C T E R I A L
G E N E T I C S :
T r p
O P E R O N
L E C T U R E -
1 0
 The tryptophan operon is the regulation of transcription of the gene
responsible for biosynthesis of tryptophan from chorismite.
 Trp operon can define as a repressible system, which regulates the
gene expression for the biosynthesis of tryptophan according to the
binding or uncoupling of a repressor with the operator region.
 The association and dissociation of the repressor protein strongly
depend upon the tryptophan level in the surrounding.
 High level of tryptophan or effector molecule escalates the binding
affinity of a repressor protein with the operator sequence, which in
turn terminates the gene transcription.
 In contrast, a low level of tryptophan results in detachment of the
repressor from the operator region and allows gene expression.
It is the region on a bacterial chromosome that comprises
a specific nucleotide sequence, where an RNA
polymerase can specifically bind to initiate
transcription.
The binding of a repressor protein with the operator inhibits
the binding of RNA polymerase with the promoter
sequence, which in turn terminates the transcription.
PROMOTOR
GENE
 It is the specific nucleotide sequence on chromosomal
DNA of E.coli, where a repressor protein can bind by the
association of an effector molecule or tryptophan.
 Here, the tryptophan molecule works as a corepressor
that aids activation of aporepressor protein.
OPERATOR
GENE
REGULATOR
Y GENE
Tryptophan operon is a repressor system, in which a
regulatory gene of chromosome encodes trp
repressor protein that recognizes the operator sequence.
The repressor protein switch on the operon system at low
trp level in the surrounding, while switching off the system at
high trp level in the environment.
Therefore, a repressor protein is associated with the
synthesis of five gene products mediated by the level of
tryptophan in the surrounding.
A repressor becomes active or inactive by the presence or
absence of corepressor or effector molecule (tryptophan).
ATTENEUTOR
REGION It is found in the middle of operator region and structural
genes.
Attenuator region comprises leader sequences (160bp in
size) that regulate the transcription via attenuation.
Its mechanism is to attenuate the efficiency
of transcription at sufficient tryptophan inside the bacterial
cell by the formation of dimers.
 Oppositely, the RNAp can traverse through the attenuator
region and can transcribe the genes necessary for trp
construction, at low tryptophan level.
 In tryptophan operon, there are five structural genes,
namely Trp A, B, C, D and E.
 The structural genes encodes for the enzymes and its
subunits important for the biosynthesis of tryptophan from
chorismic acid.
STRUCTURAL
GENES
R E G U L AT I O N O F t r p O P E R O N
Explain about repressible operon?
What is gene regulation and explain the induction and repression
of gene regulation in prokaryotes?
Write the difference between inducible and repressible operons?
Write the difference between lac operon and trp operon?
Ambe 101 @ lec 9-trp operon

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Ambe 101 @ lec 9-trp operon

  • 1. B A C T E R I A L G E N E T I C S : T r p O P E R O N L E C T U R E - 1 0
  • 2.  The tryptophan operon is the regulation of transcription of the gene responsible for biosynthesis of tryptophan from chorismite.  Trp operon can define as a repressible system, which regulates the gene expression for the biosynthesis of tryptophan according to the binding or uncoupling of a repressor with the operator region.  The association and dissociation of the repressor protein strongly depend upon the tryptophan level in the surrounding.
  • 3.  High level of tryptophan or effector molecule escalates the binding affinity of a repressor protein with the operator sequence, which in turn terminates the gene transcription.  In contrast, a low level of tryptophan results in detachment of the repressor from the operator region and allows gene expression.
  • 4.
  • 5. It is the region on a bacterial chromosome that comprises a specific nucleotide sequence, where an RNA polymerase can specifically bind to initiate transcription. The binding of a repressor protein with the operator inhibits the binding of RNA polymerase with the promoter sequence, which in turn terminates the transcription. PROMOTOR GENE
  • 6.  It is the specific nucleotide sequence on chromosomal DNA of E.coli, where a repressor protein can bind by the association of an effector molecule or tryptophan.  Here, the tryptophan molecule works as a corepressor that aids activation of aporepressor protein. OPERATOR GENE
  • 7. REGULATOR Y GENE Tryptophan operon is a repressor system, in which a regulatory gene of chromosome encodes trp repressor protein that recognizes the operator sequence. The repressor protein switch on the operon system at low trp level in the surrounding, while switching off the system at high trp level in the environment. Therefore, a repressor protein is associated with the synthesis of five gene products mediated by the level of tryptophan in the surrounding. A repressor becomes active or inactive by the presence or absence of corepressor or effector molecule (tryptophan).
  • 8. ATTENEUTOR REGION It is found in the middle of operator region and structural genes. Attenuator region comprises leader sequences (160bp in size) that regulate the transcription via attenuation. Its mechanism is to attenuate the efficiency of transcription at sufficient tryptophan inside the bacterial cell by the formation of dimers.  Oppositely, the RNAp can traverse through the attenuator region and can transcribe the genes necessary for trp construction, at low tryptophan level.
  • 9.  In tryptophan operon, there are five structural genes, namely Trp A, B, C, D and E.  The structural genes encodes for the enzymes and its subunits important for the biosynthesis of tryptophan from chorismic acid. STRUCTURAL GENES
  • 10.
  • 11. R E G U L AT I O N O F t r p O P E R O N
  • 12.
  • 13.
  • 14.
  • 15.
  • 16.
  • 17.
  • 18.
  • 19.
  • 20. Explain about repressible operon? What is gene regulation and explain the induction and repression of gene regulation in prokaryotes? Write the difference between inducible and repressible operons? Write the difference between lac operon and trp operon?