Protein Misfolding
- 1st Edition - February 1, 2027
- Latest edition
- Editor: Timir Tripathi
- Language: English
Protein Misfolding explores the structural and biochemical foundations of protein misfolding, highlighting its wide-reaching implications for cellular function, disease progre… Read more
Description
Description
Key features
Key features
- Explores the molecular mechanisms underlying protein misfolding and its biological consequences
- Examines the role of chaperones, folding quality control, and degradation pathways in maintaining proteostasis
- Discusses misfolding-related diseases including neurodegeneration, amyloidosis, and prion disorders
- Highlights recent advances in computational modeling, structural biology, and therapeutic strategies targeting misfolded proteins
- Provides expert insights into folding energetics, aggregation kinetics, and cellular responses to misfolded proteins
Readership
Readership
Table of contents
Table of contents
2. Molecular Mechanisms of Protein Misfolding
3. Amyloid Formation: Mechanisms and Consequences
4. Prions and Infectious Protein Misfolding
5. Inclusion Bodies in Recombinant Protein Expression
6. Protein Misfolding and Diseases
7. Cellular Defense Mechanisms Against Misfolding
8. Therapeutic Approaches Targeting Misfolding
9. Role of Post-Translational Modifications in Misfolding
10. Protein Misfolding in the Context of Aging
11. Methods to Study Protein Folding, Misfolding, and Aggregation
Product details
Product details
- Edition: 1
- Latest edition
- Published: February 1, 2027
- Language: English
About the editor
About the editor
TT
Timir Tripathi
Professor Timir Tripathi is a Professor of Molecular Biology, School of Life Sciences, North-Eastern Hill University, Shillong, India. Earlier, he served as the Regional Director of Indira Gandhi National Open University. His previous role was Senior Assistant Professor and Principal Investigator at the Department of Biochemistry, NEHU, Shillong. He holds a Ph.D. from Jawaharlal Nehru University, New Delhi. His primary research focus is studying the conformational dynamics, interaction, and stabilization of the complexes formed by intrinsically disordered neuropathological protein aggregates, their properties of liquid-liquid phase separation, interaction, and roles in nucleocytoplasmic transport in neurodegenerative diseases. Professor Tripathi is an Associate Fellow of the Indian National Science Academy, New Delhi, and an elected member of the National Academy of Sciences, India, the Royal Society of Chemistry, and the Royal Society of Biology, UK