Stanford Root

Schedule

Stanford Root

Schedule

GENE 214

Representations and Algorithms for Computational Molecular Biology (BIOE 214, BMDS 214, CS 274)

UNITS:1-4
GRADING:Medical Option (Med-Ltr-CR/NC)
LEVEL:Graduate
GER:—

Topics: This is a graduate level introduction to bioinformatics and computational biology. This is a programming class in Python with substantial programming required. Topics include algorithms for both pairwise and multiple sequence alignment of biological sequences and structures, phylogenetic tree construction, hidden Markov models, basic structural computations on proteins, protein structure prediction, protein language models, molecular dynamics and energy minimization, statistical analysis of 3D biological data, integration of data sources, knowledge representation and controlled terminologies for molecular biology, intro to transcription analysis, chemoinformatics, pharmacogenetics, network biology. Firm prerequisite: CS 106B.

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

1 Term
Lecture 1Open
ID: 13699
0 / 175 enrolled
DAYS:Tuesday, Thursday
TIME:4:30 PM – 5:50 PM
LOCATION:Departmental Room
INSTRUCTOR:
Altman, Russ, Arteaga, Stephanie, Borkar, Mihir, Nurge, Kae, Cahoon, Jordan
units

GENE 214: Representations and Algorithms for Computational Molecular Biology (BIOE 214, BMDS 214, CS 274)

1-4 units · Medical Option (Med-Ltr-CR/NC)

Topics: This is a graduate level introduction to bioinformatics and computational biology. This is a programming class in Python with substantial programming required. Topics include algorithms for both pairwise and multiple sequence alignment of biological sequences and structures, phylogenetic tree construction, hidden Markov models, basic structural computations on proteins, protein structure prediction, protein language models, molecular dynamics and energy minimization, statistical analysis of 3D biological data, integration of data sources, knowledge representation and controlled terminologies for molecular biology, intro to transcription analysis, chemoinformatics, pharmacogenetics, network biology. Firm prerequisite: CS 106B.

Offered in Autumn 2026 at Stanford University.

Autumn 2026 sections

  • Lecture — Tuesday Thursday 4:30 PM – 5:50 PM — Departmental Room — Altman, Russ, Arteaga, Stephanie, Borkar, Mihir, Nurge, Kae, Cahoon, Jordan (Graduate)

More GENE courses

  • GENE 200: Genetics and Developmental Biology Training Camp (DBIO 200)
  • GENE 202: Molecular, Cellular, and Genetic Medicine (BIOC 205)
  • GENE 205: Advanced Genetics
  • GENE 207: Microfluidic Device Laboratory (BIOE 301D)
  • GENE 211: Genomics
  • GENE 212: Introduction to Biomedical Informatics Research Methodology (BIOE 212, BMDS 212, CS 272)
  • GENE 215: Frontiers in Biological Research (BIOC 215, DBIO 215)
  • GENE 217: Translational Bioinformatics (BIOE 217, BMDS 217, CS 275)
  • GENE 219: Current Issues in Genetics
  • GENE 220: Introduction to Genetics, Ethics, and Society
  • GENE 222: Cloud Computing for Biology and Healthcare (BMDS 222, CS 273C)
  • GENE 224: Principles of Pharmacogenomics (BMDS 224)

All GENE courses · All departments