Encyclopedia of Biological Chemistry
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Encyclopedia of Biological Chemistry

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Description

Written for a broad, cross-disciplinary audience, the Encyclopedia of Biological Chemistry addresses the fundamental discipline of biological chemistry underlying virtually all of the life sciences. This compilation of more than 500 different entries encompasses all aspects of biochemistry, as well as the extensions of this subject into the related fields of molecular biology, cell biology, genetics and biophysics. This comprehensive encyclopedia covers all areas of biological chemistry written by more than 500 selected international experts. Articles are generously illustrated including more than 800 images in four-color. Each entry contains a clear, concise review of the topic along with illustrations, a glossary of technical terms and a section for additional reading.

Each entry further contains general background and term definitions as well as a comprehensive review of the current research in the field. Students, science journalists and scientists seeking a concise introduction to specific topics will appreciate the clear, tabular format of each entry.

Also available online via ScienceDirect - featuring extensive browsing, searching, and internal cross-referencing between articles in the work, plus dynamic linking to journal articles and abstract databases, making navigation flexible and easy. For more information, pricing options and availability visit www.info.sciencedirect.com.
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Product details

  • Hardback | 3000 pages
  • 262 x 290 x 208mm | 12,641.55g
  • Academic Press Inc
  • San Diego, United States
  • English
  • 0124437109
  • 9780124437104

Review quote

"...current, comprehensive, and thoroughly researched...a valuable resource for anyone looking for information in biological chemistry and its related fields."
- E-STREAMS (2005)


"I found the articles very well presented, and thought they offered an excellent and up-to-date
introduction into new topics."
- Tim Bugg, Professor of Biological Chemistry at the University of Warwick for the New Scientist magazine
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Table of contents

(Tentative)
ABC Transporters; amine oxidases; biotin; cadherin signaling; diabetes; elastin; ferredoxin; flavins; galectins; glycation; imaging methods; lectins; oncocytes; palmitoylation; protein databases; ribosome structure; secretases; siglecs; tyrosine sulfation; vitamin K; Zn fingers
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About William J. Lennarz

WILLIAM J. LENNARZ received his B.S. in Chemistry from Pennsylvania State University and a Ph.D. in Organic Chemistry from the University of Illinois. Subsequently he carried out postdoctoral work at Harvard with Konrad Bloch on fatty acid biosynthesis. In 1962 he was appointed Assistant Professor at Johns Hopkins in the Department of Physiological Chemistry. After promotion to Associate Professor in 1967, and full Professor in 1971, he remained at Hopkins until 1983. At that time, he was appointed Robert A. Welch Professor and Chair of the Department of Biochemistry and Molecular Biology at the University of Texas Cancer Center, M.D. Anderson Hospital. In 1989 he became a Leading Professor and Chair of the Department of Biochemistry and Cell Biology at SUNY at Stony Brook. In 1990 he founded and became Director of the Institute for Cell and Developmental Biology at Stony Brook. Dr. Lennarz has served on many national and international committees. He has served as President of the Biochemistry Chairman's Organization, President of the American Society for Biochemistry and Molecular Biology and President of the Society for Glycobiology. He was a member of the Executive Committee of the International Union of Biochemistry and Molecular Biology for almost a decade. He has presented special lectures at the University of Notre Dame, the NIH, the University of West Virginia, Johns Hopkins University, Florida State University, the University of California at San Diego, the University of Arkansas, Indiana University and the Medical College of Virginia. He is a member of the National Academy of Sciences. The focus of his early work was on lipids and bacterial cell surfaces. More recent efforts have been in the structure, biosynthesis and function of cell surface glycoproteins. The biosynthesis studies initially were carried out in liver and oviduct, but these efforts now are focused in yeast. The functional studies have concentrated on the role of cell surface glycoproteins in fertilization and early development in the sea urchin and, more recently, the frog. He served as Distinguished Professor and Chair of his department. He now is Distinguished Professor Emeritus. M. Daniel Lane, Ph.D. is Distinguished Service Professor of Biological Chemistry at the Johns Hopkins Medical School. He received B.S. and M.S. degrees from Iowa State University, a Ph.D. degree from the University of Illinois and an honorary Doctor of Humane Letters degree, from Iowa State University. He did a Senior Postdoctoral Fellowship with Professor Feodor Lynen at the Max-Planck Institute Fur Zellchemie in Munich. Following faculty positions at Virginia Tech and New York University School of Medicine, he joined (in 1970) the faculty at the Johns Hopkins Medical School where he served as DeLamar Professor and Director of the Department of Biological Chemistry from 1978 to 1997. He was elected to membership in the National Academy of Sciences and the American Academy of Arts and Sciences (1987) and as a Fellow of the American Society of Nutritional Sciences (1996). He received the Mead Johnson Award from the American Society for Nutritional Sciences and the William C. Rose Award from the American Society for Biochemistry and Molecular Biology and served as President of the American Society of Biochemistry and Molecular Biology. He served on numerous editorial boards including the Journal of Biological Chemistry and the Annual Reviews of Biochemistry. With William Lennarz he co-edited the first edition (2004) of the Encyclopedia of Biological Chemistry. Currently he is Associate Editor for Biochemical and Biophysical Research Communications. His early work focused on enzymatic CO2 fixation reactions, notably the mechanisms by which the B-vitamin, biotin, functions in carboxylases. His research on acetyl-CoA carboxylase, key regulatory enzyme of fatty acid synthesis, led him to his present interests in the basic mechanisms of lipogenesis, adipogenesis and the hypothalamic control of energy balance.
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