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Q.Four different transcription units are shown below. Choose the option with the correct image. (A) Terminator on the left, Promoter on the right; template strand 3'←…5' above (Structural gene: TACGACTACGCT), coding strand 5'…→3' below (ATGCTGATGCGA). (B) Promoter on the left, Terminator on the right; 5'…→3' above (Structural gene: TACGACTACGCT), coding strand 3'←…5' below (ATGCTGATGCGA). (C) Promoter on the left, Terminator on the right; template strand 3'←…5' above (Structural gene: TACGACTACGCT), coding strand 5'…→3' below (ATGCTGATGCGA). (D) Promoter on the left, Terminator on the right; coding strand 3'←…5' above (Structural gene: TACGACTACGCT), template strand 5'…→3' below (ATGCTGATGCGA). [Figure required: four labelled DNA transcription-unit diagrams as options A–D.]

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A transcription unit consists of a promoter, structural gene, and terminator. The promoter is upstream (left), the terminator is downstream (right). The template strand has 3' to 5' polarity and is read by RNA polymerase, while the coding strand has 5' to 3' polarity and its sequence matches the mRNA (with T instead of U).

Transcription is the process of copying genetic information from one strand of the DNA into RNA. The segment of DNA that is transcribed into an RNA molecule is called a transcription unit. Understanding its components and their arrangement is crucial for comprehending how genes are expressed.

A typical transcription unit in DNA is fundamentally defined by three regions: a promoter, the structural gene, and a terminator. These regions are arranged sequentially on the DNA molecule.

  • Promoter: This is the binding site for RNA polymerase, the enzyme responsible for transcription. It is located upstream (towards the 5' end of the coding strand) of the structural gene. Its presence dictates which strand will act as the template and in which direction transcription will proceed. In diagrams, if transcription is depicted from left to right, the promoter is typically shown on the left.

  • Terminator: Located downstream (towards the 3' end of the coding strand) of the structural gene, the terminator sequence signals the end of the transcription process. When RNA polymerase reaches this region, transcription ceases, and the newly synthesized RNA molecule is released. In diagrams, if transcription is depicted from left to right, the terminator is typically shown on the right.

  • Structural Gene: This is the segment of DNA that actually codes for the RNA molecule. Within the structural gene, there are two distinct strands, each with a specific role and polarity:

    • Template Strand: This is the DNA strand that has the polarity 3' to 5'. It serves as the template for RNA synthesis. RNA polymerase moves along this strand in the 3' to 5' direction, synthesizing RNA in the complementary 5' to 3' direction. The sequence of the RNA molecule is complementary to this template strand.

    • Coding Strand: This is the DNA strand that has the polarity 5' to 3'. It is called the coding strand because its sequence is identical to the RNA molecule that will be transcribed (with thymine 'T' in DNA replaced by uracil 'U' in RNA). Although it is called the coding strand, it does not directly participate in transcription as a template. Its sequence is used as a reference to define the gene sequence.

Important

RNA polymerase always catalyzes the polymerization in the 5' to 3' direction. This means it reads the template strand in the 3' to 5' direction.

Let's analyze the given options based on these principles:

  • Option A is incorrect because the terminator is shown on the left and the promoter on the right. The promoter should be upstream (left) and the terminator downstream (right). …

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