Difference between revisions of "BIN-FUNC-Concepts"
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− | < | + | <li><b>Time management</b>: Before you begin, estimate how long it will take you to complete this unit. Then, record in your course journal: the number of hours you estimated, the number of hours you worked on the unit, and the amount of time that passed between start and completion of this unit.</li> |
− | + | <li><b>Journal</b>: Document your progress in your [[FND-Journal|Course Journal]]. Some tasks may ask you to include specific items in your journal. Don't overlook these.</li> | |
− | < | + | <li><b>Insights</b>: If you find something particularly noteworthy about this unit, make a note in your [[ABC-Insights|'''insights!''' page]].</li> |
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<b>Prerequisites:</b><br /> | <b>Prerequisites:</b><br /> | ||
− | + | You need the following preparation before beginning this unit. If you are not familiar with this material from courses you took previously, you need to prepare yourself from other information sources:<br /> | |
− | You need the following preparation before beginning this unit. If you are not familiar with this material from courses you took previously, you need to prepare yourself from other information sources: | ||
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*<b>Biomolecules</b>: The molecules of life; nucleic acids and amino acids; the genetic code; protein folding; post-translational modifications and protein biochemistry; membrane proteins; biological function. | *<b>Biomolecules</b>: The molecules of life; nucleic acids and amino acids; the genetic code; protein folding; post-translational modifications and protein biochemistry; membrane proteins; biological function. | ||
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*<b>Metabolism</b>: Enzymatic catalysis and control; reaction sequences and pathways; chemiosmotic coupling; catabolic- and anabolic pathways. | *<b>Metabolism</b>: Enzymatic catalysis and control; reaction sequences and pathways; chemiosmotic coupling; catabolic- and anabolic pathways. | ||
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*<b>Organelles</b>: Compartmentalization, organelles and structures of the cell; the extracellular matrix. | *<b>Organelles</b>: Compartmentalization, organelles and structures of the cell; the extracellular matrix. | ||
− | + | This unit builds on material covered in the following prerequisite units:<br /> | |
− | This unit builds on material covered in the following prerequisite units: | ||
*[[BIN-Abstractions|BIN-Abstractions (Abstractions for Bioinformatics)]] | *[[BIN-Abstractions|BIN-Abstractions (Abstractions for Bioinformatics)]] | ||
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+ | === Evaluation === | ||
+ | <b>Evaluation: NA</b><br /> | ||
+ | <div style="margin-left: 2rem;">This unit is not evaluated for course marks.</div> | ||
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+ | *1.1 2020 Maintenance | ||
*1.0 First final version | *1.0 First final version | ||
*0.1 First stub | *0.1 First stub | ||
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Latest revision as of 08:51, 24 September 2020
Biomolecular Function Concepts
(The concept of function, representation of function, annotation, and prediction.)
Abstract:
Function is a concept, not an observation and it is not trivial how we categorize and arrange observed activities to "functions". Once defined, functions need to be represented in the computer, associated with biomolecules through annotation, and used in prediction to complement experimentation.
Objectives:
|
Outcomes:
|
Deliverables:
Prerequisites:
You need the following preparation before beginning this unit. If you are not familiar with this material from courses you took previously, you need to prepare yourself from other information sources:
- Biomolecules: The molecules of life; nucleic acids and amino acids; the genetic code; protein folding; post-translational modifications and protein biochemistry; membrane proteins; biological function.
- Metabolism: Enzymatic catalysis and control; reaction sequences and pathways; chemiosmotic coupling; catabolic- and anabolic pathways.
- Organelles: Compartmentalization, organelles and structures of the cell; the extracellular matrix.
This unit builds on material covered in the following prerequisite units:
Contents
Evaluation
Evaluation: NA
Contents
Task:
- Read the introductory notes on the concepts and abstractions for annotating gene function.
About ...
Author:
- Boris Steipe <boris.steipe@utoronto.ca>
Created:
- 2017-08-05
Modified:
- 2020-09-23
Version:
- 1.1
Version history:
- 1.1 2020 Maintenance
- 1.0 First final version
- 0.1 First stub
This copyrighted material is licensed under a Creative Commons Attribution 4.0 International License. Follow the link to learn more.