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<td>Steipe</td>
 
<td>Steipe</td>
 
<td>Lecture: Structural domains<br></td>
 
<td>Lecture: Structural domains<br></td>
 
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<td>Steipe</td>
 
<td>Steipe</td>
 
<td>Lecture: Homology modeling and structure prediction</td>
 
<td>Lecture: Homology modeling and structure prediction</td>
 
<td>-</td>
 
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<td>Ch. 13</td>
 
<td>Ch. 13</td>
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<td>NN</td>
 
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<td>Lecture: Human population genomics</td>
 
<td>Lecture: Human population genomics</td>
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<td>Lecture: Phylogenetic analysis I</td>
 
<td>Lecture: Phylogenetic analysis I</td>
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<td>Wodak</td>
 
<td>Wodak</td>
 
<td>Metabolic networks</td>
 
<td>Metabolic networks</td>

Revision as of 01:51, 15 October 2008

BCH441 - Bioinformatics

Welcome to the BCH441 Course Wiki.

This is our main tool to coordinate information, activities and projects in University of Toronto's bioinformatics course BCH441. If you are not one of our students, you can still browse this site, however only users with a login account can edit or contribute or edit material. If you are here because you are interested in general aspects of bioinformatics or computational biology, you may want to review the Wikipedia article on bioinformatics, or visit Wikiomics. Contact boris.steipe(at)utoronto.ca with any questions you may have.


The Course

Assignment 2 has been posted. Due, Thursday October 9th. Enjoy!

Organization

Dates
Monday and Thursday, 12:00 to 13:00
Optional tutorial sessions will be offered as the need arises, most likely on Mondays, probably from 13:00 to 14:00.
First class: Monday, September 8. 2008
Location
MSB 2173 (Medical Sciences Building)

See the Course Web page for general information.

We are recommending Understanding Bioinformatics, Zvelebil & Baum, Garland 2008 as a background textbook for the course. (amazon, UofT Bookstore)

Grading and Activities

Activity Weight
(Undergraduates)
Weight
(Graduates)
5 Assignments (drop 1) 16 marks (4 x 4) 12 marks (4 x 3)
5 In-class quizzes (drop 1) 32 marks (4 x 8) 20 marks (4 x 5)
Group project 10 marks 6 marks
Participation 2 marks 2 marks
Graduate project   20 marks
Final exam 40 marks 40 marks
Total 100 marks 100 marks

I will not adjust marks towards any target average for the class. If your classmate gets a great mark because you helped him with a difficult concept, this will have no bearing whatsoever on your own mark. Collaborate as much as possible, it is a great way to learn. The only times I will consider adjusting marks is if we phrase questions ambiguously on quizzes or if I decide that the final exam was too long.

Lecture Schedule

This is the current schedule for 2008, but changes may be still be made if required.


# Date Lecturer Topic Handout Book
0 Mon. Sept 8 Steipe Organisation and Orientation Introduction Ch 1, 2


The objects of bioinformatics
# Date Lecturer Topic Handout Book
1 Thu. Sept 11 Steipe Sequence abstraction and sequence databases Sequence data Ch 3
Assignment 1 handed out
2 Mon. Sept 15 Steipe Protein Structure Databases - -
3 Thu. Sept 18 Steipe Sequence properties - Ch 4.9, 11, 12



Analysis based on properties
# Date Lecturer Topic Handout Book
4 Mon. Sept 22 Steipe Sequence Analysis - -
5 Thu. Sept 25. Assignment 1 due
First quiz in class
Steipe Lecture: Interpreting protein structure
- -
Assignment 2 handed out
6 Mon. Sept 29 Steipe Homology I: the principles - Ch. 14
7 Thu. Oct 2 Parkinson Genome sequencing, genome browsers - Ch. 9, 10
8 Mon. Oct 6 Parkinson Genomes and genome structure - -



Analysis based on homology
# Date Lecturer Topic Handout Book
9 Thu. Oct 9. Assignment 2 due
Steipe Lecture: Homology II: Sequence alignment
- -
Assignment 3 handed out (Tuesday, October 14)
10 Thu. Oct 16 Steipe Lecture: Homology III: Multiple sequence alignment - Ch. 4
11 Mo. Oct 20 Steipe Homology IV: fast sequence database searches - Ch. 5
Second quiz in class (13:00 tutorial time slot)
Steipe Lecture: Bioinformatics methods - Ch 6
13 Thu. Oct 23. Steipe Lecture: Structural domains
- -
14 Mon. Oct 27 Assignment 3 due
Steipe Lecture: Homology modeling and structure prediction - Ch. 13
Third quiz in class, 13:00 in tutorial time-slot
Assignment 4 handed out


Analysis based on conservation
# Date Lecturer Topic Handout Book
15 Thu. Oct 30 Steipe Essential concepts of probability and information theory - Appendix A
16 Mon. Nov 3 Parkinson Comparative genomics - Ch. 9.8, 10.8
17 Thu. Nov 6 NN Lecture: Human population genomics - -
18 Mon. Nov 10 Assignment 4 due
Steipe Lecture: Phylogenetic analysis I - Ch. 7, 8
Fourth quiz in class: 13:00 in tutorial time slot
Assignment 5 handed out
19 Thu. Nov 13 Steipe Phylogenetic analysis II - -
20 Mon. Nov 17 Steipe Protein structure motifs - -


Analysis based on context
# Date Lecturer Topic Handout Book
21 Thu. Nov 20 Wodak Gene regulation I - Ch. 15
22 Mon. Nov 24 Wodak Gene regulation II - -
23 Thu. Nov 27
Wodak Functional annotation - Appendix A
24 Mon. Dec 1 Assignment 5 due
Wodak Metabolic networks - Ch. 17.1
Fifth quiz in class: 13:00 in tutorial time slot
25 Thu. Dec 4 Parkinson Computational systems biology - Ch. 17



In depth...


 

Resources

Course related


 

Contents related