BPS3031 Computational drug design
Faculty of Pharmacy and Pharmaceutical Sciences
BPS3031 Computational drug design is a level 3, 6-credit-point, undergraduate unit from the Faculty of Pharmacy and Pharmaceutical Sciences, offered in 2021 in Semester 1 at Parkville. It needs BPS2022.
- Credit points
- 6
- Offered in 2021
- Semester 1
- Parkville
- Assessment
- Exam 50%
- and 3 other tasks
This is the 2021 handbook entry. See the 2027 entry.
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Requisites
Before BPS3031
Prerequisites
Pass these before you enrol.
After BPS3031
No unit lists BPS3031 as a prerequisite in the 2021 handbook.
Overview
The unit contains two streams:
- Modelling methods; which introduces quantum mechanics, molecular mechanics, energy optimisation and molecular simulation and
- Modelling applications; which covers quantitative structure-activity relationships (QSAR), pharmacophores, structure-based drug design and homology modelling.
This will involve:
- Modelling methods in computational chemistry
- Applications of molecular modelling
Offerings in 2021
| Teaching period | Campus | Mode |
|---|---|---|
| First semester | Parkville | On campus |
Assessment
- Workshop tasksWorkshopThreshold hurdle10%
- Laboratory reportsReportThreshold hurdle20%
- Mid-semester testIn class testThreshold hurdle20%
- End-of-semester examExamThreshold hurdle50%
Learning outcomes
When you finish this unit, you should be able to:
- 1
Describe:
- A broad understanding of computational chemistry and its application to drug bimolecular problems
- The molecular interactions (including bonded and non-bonded) which govern drug-target interactions
- Molecular mechanics energy calculations and the information that these calculations can provide
- The components making up molecular mechanic force fields including bond stretching, angle bending, dihedral angle terms, and nonbonded interactions (van der Waals and electrostatic)
- Molecular simulation methods
- The statistical methods used to develop QSAR equations and their application in drug discovery
- Quantum mechanical (QM) calculations and the information that they can provide
- 2
State:
- Drug Physico-chemical properties including electronic, steric, and hydrophobic
- Characteristics and their impact on biopharmaceutical properties
- 3
Explain:
- The pharmacophore concept and its use in drug discovery
- 4
Define:
- molecular potential energy surfaces and the concepts of global and local minima
- the Boltzmann distribution and the relationship between temperature and the population of energetic states
- 5
Discuss:
- Principles of structure-based drug design and ligand-based drug design
- 6
Demonstrate the following practical skills:
- Deriving pharmacophore models and QSAR equations
- Carrying out molecular mechanics, quantum mechanics and docking experiments using modelling software
- Using modelling software to study molecular conformation and analyse drug-receptor interactions
- Investigating a research topic using literature sources
- 7
Communicate effectively:
The outcomes of computational chemistry investigations in oral and written formats.
Workload and teaching
- Applied sessions12 hours
- Workshops12 hours
- Laboratories18 hours
- Teaching approachActive learning
- Twelve 1-hour online modules (discovery)
- Twenty-four 1-hour interactive lectures (online modules)
- Twelve 1-hour Q&A sessions
- Six 2-hour workshops
- Six 3-hour laboratories
Learning resources
Technology resources
For more information on Bring Your Own Device (BYOD) specifications and the technology systems and services available to students, review the Student Technology Essentials Handbook
Contacts
- Chief Examiners
- Dr David Chalmers
- Unit Coordinators
- Dr David Chalmers
Common questions
What are the prerequisites for BPS3031?
You need BPS2022 before you enrol.
When is BPS3031 offered?
In 2021, BPS3031 runs in Semester 1 at Parkville.
Does BPS3031 have an exam?
Yes. The exam is worth 50% of the final mark, alongside 3 other tasks.