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CBSE · Class 12 · Biology · Molecular Basis of InheritanceDescribe the concept of the Lac Operon and explain its regulation in the presence and absence of an inducer (lactose).

Step-by-Step Solution

Introduction to Lac Operon\nThe lac operon is a genetic unit found in bacteria like Escherichia coli, regulating the metabolism of lactose. It was discovered by François Jacob and Jacques Monod. An operon consists of a promoter, operator, and structural genes that function together under the control of a single promoter.

Components of Lac Operon

  • Regulatory Gene ($i$ gene): Codes for the repressor protein that binds to the operator region.
  • Promoter Gene ($p$ gene): The site where RNA polymerase binds to initiate transcription of structural genes.
  • Operator Gene ($o$ gene): Acts as a switch; it controls the transcription of structural genes by interacting with the repressor protein.
  • Structural Genes:
    • $z$ gene: Codes for $\beta$-galactosidase, which hydrolyzes lactose into glucose and galactose.
    • $y$ gene: Codes for permease, which increases the permeability of the cell to $\beta$-galactosides.
    • $a$ gene: Codes for transacetylase, transferring an acetyl group to $\beta$-galactoside.

Regulation Mechanism

  • In the Absence of Inducer (Lac Absent / Switched Off):

    • The regulatory gene ($i$) continuously transcribes mRNA to synthesize the repressor protein.
    • This active repressor protein binds tightly to the operator region ($o$) of the operon.
    • By binding to the operator, it blocks the movement of RNA polymerase along the DNA template.
    • Consequently, transcription of structural genes ($z, y, a$) does not occur, and lactose-metabolizing enzymes are not produced.
  • In the Presence of Inducer (Lac Present / Switched On):

    • When lactose (or its isomer, allolactose) enters the bacterial cell, it acts as an inducer.
    • The inducer binds to the repressor protein, causing a conformational change that inactivates the repressor.
    • The inactive repressor can no longer bind to the operator region.
    • RNA polymerase is now free to bind to the promoter and moves down to transcribe the structural genes ($z, y, a$).
    • Enzymes are synthesized, allowing the cell to metabolize lactose efficiently.

Significance\nThis operon is a classic example of negative gene regulation and substrate induction, demonstrating how prokaryotes efficiently conserve energy by expressing genes only when their products are needed.

💡 Study Guide: This question tests core syllabus concepts from Molecular Basis of Inheritance. For formulas, key summaries, and mock exam reference guides, read the full Molecular Basis of Inheritance Revision Notes.
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