Regulated Cell Death: Part A: Apoptotic Mechanisms: 544 (Methods in Enzymology): (Volume 544). This item is unavailable.
Language: English
Published by Academic Press, 2014
Series: Book 182 of 272 - ISSN
- Hardcover
- Used

Seller: Anybook.com, Lincoln, United KingdomAnybook.com
AbeBooks seller since December 22, 1999
Condition: Used - Good
US$ 18.86
Item description from seller
Volume 544. This is an ex-library book and may have the usual library/used-book markings inside.This book has hardback covers. In good all round condition. Please note the Image in this listing is a stock photo and may not match the covers of the actual item,1100grams, ISBN:9780124171589.
Seller Inventory # 9133675
- Title
- Regulated Cell Death: Part A: Apoptotic Mechanisms: 544 (Methods in Enzymology): (Volume 544)
- Author
- Ashkenazi, A. et al (ed)
- Publisher
- Academic Press
- Publication year
- 2014
- Condition
- Good
- Binding
- Hardcover
- Language
- English
- ISBN 10
- 0124171583
- ISBN 13
- 9780124171589
- Item weight
- 1,100 grams
- Series
- Book 182 of 272: ISSN
- Seller catalogs
- Biology
- Continues the legacy of this premier serial with quality chapters authored by leaders in the field
- Covers research methods in biomineralization science
- Regulated Cell Death Part A & Part B contains sections on such topics as apoptosis focusing on the important areas of intrinsic pathway, extrinsic pathway, caspases, cellular assays and post-apoptotic effects and model organisms; as well as topics on necroptosis and screening approaches
"Synopsis" may belong to another edition of this title.
About the Author
James A. Wells, PhD, focuses on development of enabling technologies for engineering proteins and for identifying small molecules to aid in drug discovery for challenging targets such as allosteric regulation and protein-protein interactions. He is interested in the discovery and design of small molecules and enzymes that trigger or modulate cellular processes in inflammation and cancer. Using small molecules and engineered proteins, the Wells lab is studying how activation of particular signaling nodes involving protease, kinases, or ubiquitin ligases drives cell biology. The lab has focused much on a set of proteases, known as caspases, responsible for fate determining cellular decisions involved in apoptosis and innate inflammation among others. These enzymes act as cellular remodelers and help us understand the essential protein struts that support life. These targets also provide leads for developing new cancer therapeutics and biomarkers for cancer treatment.
Wells is a professor and chair of the Department of Pharmaceutical Chemistry in the UCSF School of Pharmacy. He holds a combined appointment as professor in the Department of Cellular & Molecular Pharmacology in the School of Medicine. He joined UCSF in 2005 as holder of the Harry Wm. and Diana V. Hind Distinguished Professorship in Pharmaceutical Sciences. Wells also founded and directs the Small Molecule Discovery Center (SMDC) located at UCSF’s Mission Bay campus. He earned a PhD degree in biochemistry from Washington State University with Professor Ralph Yount in 1979 and completed postdoctoral work at Stanford University School of Medicine with Professor George Stark in 1982. Before joining UCSF, Wells was a founding scientist in Genentech’s Protein Engineering Department and in 1998 co-founded Sunesis Pharmaceuticals.
Wells is a recipient of the Hans Neurath Award by the Protein Society, the Pfizer Award and Smissman Award given by the American Chemical Society, the Perlman Lecture Award given by the ACS Biotechnology Division, the du Vigneaud Award given by the American Peptide Society, the Merck Award from the ASBMB and in 1999 a member of the National Academy of Sciences.
"About the title" may belong to another edition of this title.