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Ch. 12 - Regulation of Gene Expression in Bacteria and Bacteriophage
Sanders - Genetic Analysis: An Integrated Approach 3rd Edition
Sanders3rd EditionGenetic Analysis: An Integrated ApproachISBN: 9780135564172당신이 사용하는 게 아니라요?교과서 변경
12장, 문제 4a

Identify similarities and differences between an inducible operon and a repressible operon in terms of
The transcription-regulating DNA sequences.

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1
Understand the concept of an operon: An operon is a cluster of genes under the control of a single promoter and regulatory sequences. It is a key feature in prokaryotic gene regulation.
Define an inducible operon: An inducible operon is typically off and requires the presence of an inducer molecule to activate transcription. The lac operon in E. coli is a classic example.
Define a repressible operon: A repressible operon is typically on and can be turned off when a corepressor molecule binds to the repressor protein. The trp operon in E. coli is a classic example.
Compare the transcription-regulating DNA sequences: Both types of operons have a promoter (where RNA polymerase binds) and an operator (where a repressor protein binds). However, in inducible operons, the operator is bound by a repressor that is inactivated by an inducer, while in repressible operons, the operator is bound by a repressor that is activated by a corepressor.
Summarize the differences: Inducible operons are regulated by the presence of an inducer that removes repression, allowing transcription to occur. Repressible operons are regulated by the presence of a corepressor that enhances repression, preventing transcription.

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Operon Structure

An operon is a cluster of genes under the control of a single promoter, allowing coordinated regulation of gene expression. In prokaryotes, operons can be classified as inducible or repressible based on how they respond to environmental signals. Understanding the basic structure of operons is essential for analyzing their regulatory mechanisms.
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가이드 코스
03:45
Arabinose Operon

Inducible Operon

An inducible operon is typically off but can be turned on in response to an inducer molecule. This mechanism allows the cell to respond to specific environmental changes, such as the presence of a substrate that needs to be metabolized. The classic example is the lac operon, which is activated when lactose is present, enabling the transcription of genes necessary for lactose utilization.
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가이드 코스
04:29
Induced Mutations

Repressible Operon

A repressible operon is usually active but can be turned off by a repressor molecule, often in response to the accumulation of a product. This regulation helps maintain homeostasis by preventing the overproduction of certain metabolites. The trp operon is a well-known example, where the presence of tryptophan activates the repressor, inhibiting the transcription of genes involved in tryptophan synthesis.
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가이드 코스
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Arabinose Operon
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