Tania A. Baker

Tania Baker is an E. C. Whitehead Professor of Biology and an HHMI Investigator. Tania recently received the Arthur Kornberg and Paul Berg Lifetime Achievement Award for her research in replication and AAA+ unfoldases, which remove potentially toxic proteins. Tania has also been recognized for her commitment to teaching as a recipient of the Margaret MacVicar Faculty Fellowship and a School of Science Teaching Prize for Excellence in Undergraduate Education. In addition to authoring the textbook with Steve, as a graduate student, Tania co-authored a well-known textbook on DNA replication with Arthur Kornberg.
More info here.

Filter Courses within "Tania A. Baker" (Click to filter)
Molecular Biology - Part 1: DNA Replication and Repair (edX) EdX
MIT,MITx

Molecular Biology - Part 1: DNA Replication and Repair (edX)

Embark on an enlightening journey through the world of molecular biology with 'Molecular Biology - Part 1: DNA Replication and Repair'. This course delves deep into the fundamental processes that allow life to persist—DNA replication and repair. Learn how cells meticulously copy their genetic material and safeguard it against mutations, ensuring the continuity and stability of the genome.

Apr 16th 2024
5-12 Weeks
Molecular Biology - Part 2: Transcription and Transposition (edX) EdX
MIT,MITx

Molecular Biology - Part 2: Transcription and Transposition (edX)

Explore the fascinating world of molecular biology further by delving into transcription and transposition. This comprehensive course will guide you through the critical processes that underpin gene expression, starting with the conversion of DNA to RNA. Whether you're a student, researcher, or professional in life sciences, this course offers valuable insights and practical knowledge.

Self Paced
Self-Paced
Molecular Biology – Part 3: RNA Processing and Translation (edX) EdX
MIT,MITx

Molecular Biology – Part 3: RNA Processing and Translation (edX)

Embark on an enlightening journey through the fascinating processes of RNA Processing and Translation with this advanced online course. Delve deep into the mechanisms that govern mRNA's transformation into proteins, a fundamental step in the central dogma of molecular biology. This course is designed for those seeking to enhance their understanding of gene expression, RNA splicing, and turnover, all of which are pivotal processes influencing how genetic information is translated into functional products within cells.

Self Paced
Self-Paced
Page 1