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Computer Science 598B
AdTopCS: Topics in Computational Molecular Biology
Mona Singh
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Spring 2003
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Course Summary
The emphasis of this seminar will be on identifying important
computational questions and possible future
directions in computational molecular biology. Possible topics covered include
computational methods and algorithms relating to: protein structure,
protein-protein interactions, DNA-protein interactions, regulatory
element detection, proteomics and evolution. The course will be run
as a reading seminar with student presentations. No biology
background is assumed.
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Administrative Information
Lectures: Thursday 12:30--2:30, Room: CS105
Professor: Mona Singh - 420 CS Building - 258-2087
mona@cs.princeton.edu
Graduate Coordinator:
Melissa Lawson - 310 CS Building - 258-5387
mml@cs.princeton.edu
- Introductory Materials
on molecular biology.
- Lecture 1: Mona Singh
- Minghua Deng, Shipra Mehta, Fengzhu Sun, and Ting Chen.
Inferring Domain-Domain Interactions From Protein-Protein Interactions.
Genome Res. 2002 12: 1540-1548.
pdf
- Lecture 2: Elena Nabieva
- S.M. Gomez and A. Rzhetsky. Towards the Prediction of Complete
Protein-Protein Interaction Networks. Pacific Symposium on
Biocomputing 7:413-424 (2002). pdf
- Joel R. Bock and David A. Gough. Whole-proteome interaction mining.
Bioinformatics 2003 19: 125-134. pdf
- Lecture 3: Carl Kingsford
- R. Singh, M. Saha. Identifying Structural Motifs in Proteins. Pacific
Symposium on Biocomputing 8:228-239 (2003).
pdf
- M. P. Liang, D. L. Brutlag, R. B. Altman. Automated Construction of
Structural Motifs for Predicting Functional Sites on Protein Structures.
Pacific Symposium Biocomputing 8:204-215 (2003). paper
- Bradley, P. S. Kim, B. Berger. TRILOGY: Discovery of
sequence-structure patterns across diverse proteins. Proc. Natl. Acad.
Sci. USA 99:8500-8505 (2002). pdf
- Lecture 4: Robert Osada
- Yoseph Barash, Gal Elidan, Nir Friedman and Tommy Kaplan. Modeling
dependencies in protein-DNA binding sites. In: Recomb 2003.
pdf
- Lee Ann McCue, William Thompson, C. Steven Carmack, and Charles E.
Lawrence. Factors Influencing the Identification of Transcription
Factor Binding Sites by Cross-Species Comparison. Genome Res. 2002 12:
1523-1532.pdf
- Lecture 5: Elena Zaslavsky
- Mathieu Blanchette and Martin Tompa. Discovery of Regulatory
Elements by a Computational Method for Phylogenetic Footprinting.
Genome Res. 2002 12: 739-748.
pdf
- U. Keich and P.A. Pevzner. Finding motifs in the twilight zone.
Bioinformatics 2002 18: 1374-1381.
pdf
- Lecture 6: Joe Barillari
- Phil Bradley, Lenore Cowen, Matt Menke, Jonathan King, Bonnie
Berger. BETAWRAP:
successful prediction of parallel beta-helices from primary
sequence reveals an association with many microbial pathogens.
Proc Natl Acad Sci U S A 2001 Dec 18;98(26):14819-24
pdf
- Yufeng Zhai and Milton H. Saier, JR.
The beta-barrel finder (BBF) program, allowing identification of outer
membrane beta-barrel proteins encoded within prokaryotic genomes
Protein Sci 2002 11: 2196-2207.
pdf
- Lecture 7: Subhayu Basu
- Bulyk, M. L., Johnson, P. and Church, G.
Nucleotides of transcription factor binding sites
exert interdependent effects on the binding affinities of transcription
factors. Nucleic Acids Res. 2002 30: 1255-1261.
pdf
- Benos, Bulyk, and Stormo.
Additivity in protein-DNA interactions: how good an approximation is
it? Nucleic Acids Res. 2002 Oct 15 30(20): 4442.
pdf
- Benos, Lapedes, and Stormo.
Is there a code for protein-DNA recognition? Probab(ilistical)ly...
Bioessays 2002 May 24(5): 466-475.
pdf
- Lecture 8: DJ Halliday
- Kaur, H., Raghava, G.P.S.
An evaluation of beta-turn prediction methods.
Bioinformatics. 2002 18: 1508-1514.
pdf
- Kaur, H., Raghava, G.P.S Prediction of beta-turns in proteins
from multiple alignment using neural networks. Protein Sci. 2003
12(3): 627-634.
pdf
- Lecture 9: Hanno Hinsch
- Korber BT, Farber RM, Wolpert DH, Lapedes AS.
Covariation of mutations in the V3 loop of human
immunodeficiency virus type 1 envelope protein: an
information theoretic analysis.
Proc Natl Acad Sci U S A 1993 Aug 1;90(15):7176-80
pdf
- Lockless SW, Ranganathan R. Evolutionarily conserved pathways of
energetic connectivity in protein families. Science. 1999 Oct
8;286(5438):295-9.
pdf
- Suel GM, Lockless SW, Wall MA, Ranganathan R.
Evolutionarily conserved networks of residues mediate
allosteric communication in proteins. Nat Struct
Biol. 2003 Jan;10(1):59-69.
pdf
- Lecture 10: Saby Guharay
- Li, Wentian. The Study of Correlation Structures of DNA Sequences: A
Critical Review. Computers and Chemistry (1997) 21(4): 257--271. pdf
- H. Herzel, O. Weiss and E.N. Trifonov.
10-11 bp periodicities in complete genomes reflect protein structure
and DNA folding. Bioinformatics (1999) 15(3):187--193. pdf
- Lecture 11: Jessica Fong
- Ramani AK, Marcotte EM.
Exploiting the co-evolution of interacting proteins to discover
interaction specificity. J Mol Biol 2003 Mar 14;327(1):273-84.
pdf
- Mirny LA, Gelfand MS.
Using orthologous and paralogous proteins to identify
specificity-determining residues in bacterial transcription factors.
J Mol Biol 2002 Aug 2;321(1):7-20.
pdf
- Lecture 12: Kam Jim
- Donaldson I, Martin J, De Bruijn B, Wolting C, Lay V, Tuekam B,
Zhang S, Baskin B, Bader GD, Michalickova K, Pawson T, Hogue
CW. PreBIND and Textomy - mining the biomedical literature for
protein-protein interactions using a support vector machine.
BMC Bioinformatics. 2003 Mar 27;4(1):11. pdf
- Ding, J. et. al. Mining MEDLINE: Abstracts, sentences, or
phrases? Pacific Symposium on Biocomputing, 326-337, 2002. pdf
- B. Stapley and G. Benoit. Biobibliometrics: Information retrieval
and visualization from co-occurrences of gene names in medline
asbtracts. Pacific Symposium on Biocomputing, 529--540, 2000
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