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13. Why are ribonucleoside triphosphates the monomers required for RNA synthesis rather than ribonucleoside monophosphates? A

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13. Option c is correct answer

Why are ribonucleoside triphosphates the monomers required for RNA synthesis rather than ribonucleoside monophosphates.

Ribonucleoside triphosphates have high potential energy, making the polymerization reaction exergonic. DNA is transcribed to give RNA a copy.

Ribonucleoside triphosphates have high potential energy, making the polymerization reaction exergonic.

Because ribonucleoside triphosphates have three negatively charged phosphates close together, they have high potential energy, which is released during polymerization, making RNA synthesis spontaneous (ΔG<0) in cells.

14. option e is the correct answer

How is a mutation in a bacterial cell that deletes three base pairs 10 base pairs upstream from the +1 site likely to affect transcription and why

Initiation will be affected because sigma factor cannot bind to promoter

The +1 site is the transcription start site and the region 10 base pairs upstream is a region of the promoter critical for sigma binding and initiation.
Initiation will be inhibited because sigma cannot bind to the promoter.

15. Option d is the correct answer

Promoter sequences are DNA sequences the region in the gene where the RNA polymerase will bind and initiate the process of transcription.

16. Option b is correct answer

sigma factor (σ factor) (specificity factor) is a protein needed for initiation of transcription in bacteria. It is a bacterial transcription initiation factor that enables specific binding of RNA polymerase (RNAP) to gene promoters.

17. Option a is correct answer

Which of the following mutations is most likely to cause a phenotypic change?

Da single nucleotide deletion in an exon coding for an active site

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