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Question 46 of 67

Q.Describe briefly the structure of lac operon. What are the functions of the following enzymes in DNA replication?

(a) Helicase
(b) Primase. (3+2) OR Mention the contributions of Charles Darwin in relation to Biological evolution. Mention the embryological evidence of evolution. (3+2)
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2023Subjective· 5mImportance★★★★★
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The lac operon is an inducible gene-cluster switch that controls lactose-digesting enzymes in E. coli; helicase and primase are two essential enzymes that prepare the DNA template for replication.

Structure of the lac operon (found in E. coli, an inducible operon for lactose metabolism):

  • Regulatory gene (lacI): located just before the operon; it constitutively produces a repressor protein.
  • Promoter (p): the site where RNA polymerase binds to initiate transcription of the structural genes.
  • Operator (o): the DNA sequence, located between the promoter and structural genes, to which the repressor protein binds; when bound, it physically blocks RNA polymerase from transcribing the structural genes.
  • Structural genes: three genes transcribed together as a single polycistronic mRNA —
    • lacZ: codes for β-galactosidase, which hydrolyses lactose into glucose and galactose.
    • lacY: codes for permease, which increases the permeability of the cell to allow lactose to enter.
    • lacA: codes for transacetylase.

Regulation: in the absence of lactose, the repressor (from lacI) binds tightly to the operator, blocking transcription — the operon is "off." When lactose is present, a metabolite of lactose (allolactose) acts as an inducer, binding to the repressor and changing its shape so it can no longer bind the operator. This releases the operator, allowing RNA polymerase to transcribe the structural genes — the operon is switched "on," and the enzymes needed to metabolise lactose are produced only when lactose is actually available.

Functions of two enzymes in DNA replication: …

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