ne of the main lessons of this chapter is that several bacterial genes are often transcribed from a single promoter into a large multigene (polycistronic) transcript. The region of DNA containing the set of genes that are cotranscribed, along with all of the regulatory elements that control the expression of these genes, is called an operon. a. Which of the mechanisms in the following list (i-vi) could explain differences in the levels of the protein products of different genes in the same operon? Different promoters might have different DNA sequences Different promoters might be recognized by different types of RNA polymerase The secondary structures of mRNAs might differ which will influence the rate at which they are degraded by ribonucleases. In an operon, some genes are farther away from the promoter than other genes The translational initiation sequences at the beginning of different open reading frames in an operon might result in different efficiencies of translation Proteins encoded by different genes in an operon might have different stabilities

Biology (MindTap Course List)
11th Edition
ISBN:9781337392938
Author:Eldra Solomon, Charles Martin, Diana W. Martin, Linda R. Berg
Publisher:Eldra Solomon, Charles Martin, Diana W. Martin, Linda R. Berg
Chapter14: Gene Regulation
Section: Chapter Questions
Problem 13TYU: INTERPRET DATA Develop a simple hypothesis that would explain the behavior of each of the following...
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ne of the main lessons of this chapter is that several bacterial genes are often transcribed from a single promoter into a large multigene (polycistronic) transcript. The region of DNA containing the set of genes that are cotranscribed, along with all of the regulatory elements that control the expression of these genes, is called an operon.

a. Which of the mechanisms in the following list (i-vi) could explain differences in the levels of the protein products of different genes in the same operon?

  1. Different promoters might have different DNA sequences
  2. Different promoters might be recognized by different types of RNA polymerase
  3. The secondary structures of mRNAs might differ which will influence the rate at which they are degraded by ribonucleases.
  4. In an operon, some genes are farther away from the promoter than other genes
  5. The translational initiation sequences at the beginning of different open reading frames in an operon might result in different efficiencies of translation
  6. Proteins encoded by different genes in an operon might have different stabilities
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