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Manipulating genomes

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Question 1

Gene therapy is a rapidly advancing biomedical field aimed at correcting genetic defects. Depending on the target cell population, these therapeutic interventions are categorized as either somatic or germ-line.

a.

CRISPR-Cas9 genome editing can be applied in two clinical pathways: Group A involves editing mature T-lymphocytes to treat leukemia, while Group B involves editing pre-implantation embryos. State which group's genetic modifications can be inherited by future offspring, and explain why.

[2]
b.

Compare somatic and germ-line gene therapy with respect to:

  • The biological types of cells targeted for modification.
  • The long-term persistence of the therapeutic genetic change within the patient’s own tissues over time.
[2]
c.

In clinical trials for X-linked Severe Combined Immunodeficiency (SCID-X1), researchers used a retroviral vector to integrate a functional copy of the missing IL2RG gene into patients' hematopoietic stem cells. However, some patients subsequently developed T-cell leukemia because the viral genome integrated near the LMO2 proto-oncogene.

Explain how the insertion of a therapeutic gene sequence can alter the expression and function of a neighboring host gene.

[2]
d.

Adenosine Deaminase (ADA) deficiency is an autosomal recessive metabolic disorder that can be treated by introducing a normal, functional copy of the ADA gene (gene addition therapy).

In contrast, familial Amyotrophic Lateral Sclerosis (fALS) can be caused by a dominant mutation in the SOD1 gene, which codes for a misfolded, toxic enzyme that aggregates and kills motor neurons.

Suggest why standard gene addition therapy is unlikely to be an effective treatment for this form of fALS.

[2]

Manipulating genomes Questions

  1. A Level
  2. /Biology
  3. /Manipulating genomes