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The diagram shows a strand of mRNA undergoing splicing - Scottish Highers Human Biology - Question 4 - 2022

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The diagram shows a strand of mRNA undergoing splicing. Y Z Y Z Y Z Y primary mRNA transcript Y Y Y Y Y mature mRNA transcript (a) Name the regions labelled Y. ... show full transcript

Worked Solution & Example Answer:The diagram shows a strand of mRNA undergoing splicing - Scottish Highers Human Biology - Question 4 - 2022

Step 1

Name the regions labelled Y.

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Answer

Exons

Step 2

Calculate how many amino acids are present in the protein coded for by the mature transcript.

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Answer

To find the number of amino acids, we first calculate the total number of bases in the mature mRNA transcript. The primary transcript had 3150 bases, and 600 bases were spliced out, so:

Total bases in mature transcript:

3150600=25503150 - 600 = 2550

Since each amino acid is coded for by a codon (3 bases), we divide the total number of bases by 3:

Number of amino acids:

25503=850\frac{2550}{3} = 850

However, we must subtract 1 for the stop codon. Thus, the total number of amino acids is:

8501=848850 - 1 = 848

Step 3

Name the process that results in different proteins being expressed from a single gene.

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Answer

Alternative (RNA) splicing.

Step 4

Describe how this process leads to the formation of different proteins.

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Answer

Alternative splicing allows for different combinations of exons to be included or excluded from the final mRNA transcript. This means that a single gene can produce multiple mRNA variants, which can each code for distinct proteins due to variations in their exon composition.

Step 5

Describe the effect that this mutation has had on the mature mRNA.

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Answer

The mutation has retained an intron in the mature mRNA transcript, meaning that not all introns have been removed. This may affect the sequencing and composition of the final protein product.

Step 6

Suggest how this mutation may affect the structure of the protein formed.

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Answer

The presence of the intron in the mature mRNA could disrupt the reading frame of the coding sequence, potentially leading to the production of a truncated protein or a protein with an altered shape/length. This may result in a dysfunctional protein that cannot perform its intended biological role.

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