Units / BCH3031
BCH3031 · Functional genomics and molecular medicine
2026 Handbook6 credit pointsLevel 3Faculty of Science
Last checked: 23 Aug 2026 UTCOverview
This unit provides an understanding of DNA as the genetic component of organisms and cells, encompassing the information content, the organisation of DNA sequences, and the expression of this information into RNA and proteins. Topics include global aspects of genome organisation and expression outcomes (genomics and proteomics, respectively). Other themes include the molecular diagnosis and treatment of human genetic disease using emerging technologies such as genome mining and novel gene therapy strategies.
Areas of study: Biochemistry Microbiology
Offerings
| Campus | Teaching period | Mode |
|---|---|---|
| Clayton | First semester | Teaching activities are on-campus (ON-CAMPUS) |
Assessment
The Handbook lists an examination for this unit.
| # | Assessment | Type | Weight | Hurdle |
|---|---|---|---|---|
| 1 | In-semester quizzes on lecture material | Quiz / Test | 20% | — |
| 2 | Practical/small group teaching | Demonstration | 30% | Threshold |
| 3 | Literature review | Written | 15% | — |
| 4 | Final assessment - Exam (2 hours and 10 minutes) | Examination | 35% | Threshold |
Assessment details may change. Please refer to the assessment information in Moodle closer to the start of the teaching period.
Requisites
The Handbook lists no prerequisite, corequisite or prohibition for this unit.
Learning outcomes
- Describe the structure, organisation and functional rearrangement of eukaryotic genomes;
- Explain the mechanism of DNA replication in eukaryotic cells;
- Illustrate how gene expression is regulated in eukaryotes and how studies of DNA, RNA and protein levels contribute to our understanding of these processes;
- Discuss how cell and animal models are used to build our understanding of disease processes and to develop potential therapies;
- Describe how the application of genomic and other technologies is used to further our understanding of genomes and the treatment of disease;
- Demonstrate the ability to organise, plan and successfully execute laboratory experiments relevant to advanced molecular biology, as well as analyse and report the results in a meaningful way;
- Demonstrate the ability to undertake literature based research to collect and evaluate information relevant to current problems in biochemistry and molecular biology and to effectively communicate ideas in writing or orally.
Workload
• Two 1-hour lectures • One 1-hour tutorial and • One 3-hour practical/ peer-group or self-directed learning exercise per week
| Activity | Duration |
|---|---|
| Workshops | 12 hours |
| Lectures | 24 hours |
| Laboratories | 36 hours |
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