Bēlöw is thế TEMPLATE strand of DNA for a particular gene. Template strand: 5' AATCАTAAСТСАТTG 3' A. Write the CODING strand of this sequence, including the 5' and 3' end designations. B. Write the amino acid sequence coded by this mRNA. The start codon is the first codon in the sequence that codes for M

Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
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Below is the TEMPLATE strand of DNA for a particular gene.
Template strand:
5' AATCАТАAСТСАТTG 3'
A. Write the CODING strand of this sequence, including the 5' and 3' end designations.
B. Write the amino acid sequence coded by this mRNA. The start codon is the first codon in the sequence that codes for Met.
Transcribed Image Text:Below is the TEMPLATE strand of DNA for a particular gene. Template strand: 5' AATCАТАAСТСАТTG 3' A. Write the CODING strand of this sequence, including the 5' and 3' end designations. B. Write the amino acid sequence coded by this mRNA. The start codon is the first codon in the sequence that codes for Met.
Below is the TEMPLATE strand of DNA for a particular gene.
Template strand:
5' AATCАТАAСТСАТTG 3'
A. Write the CODING strand of this sequence, including the 5' and 3' end designations.
B. Write the amino acid sequence coded by this mRNA. The start codon is the first codon in the sequence that codes for Met.
Transcribed Image Text:Below is the TEMPLATE strand of DNA for a particular gene. Template strand: 5' AATCАТАAСТСАТTG 3' A. Write the CODING strand of this sequence, including the 5' and 3' end designations. B. Write the amino acid sequence coded by this mRNA. The start codon is the first codon in the sequence that codes for Met.
Expert Solution
Step 1

The two types of strands in DNA are coding (non-template) and template (non-coding). Both strands are beneficial to one another. Replication happens on both strands, resulting in the formation of two new daughter strands that are complementary to the original strand. During transcription, DNA converts to an mRNA strand that is identical to the coding strand except for the addition of uracil. Outside the nucleus, post-transcriptional processes such as methylation and adenylation of mRNA translation take place.

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