Free Ebook Molecular Cell Biology

Free Ebook Molecular Cell Biology

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Molecular Cell Biology

Molecular Cell Biology


Molecular Cell Biology


Free Ebook Molecular Cell Biology

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Molecular Cell Biology

About the Author

Harvey Lodish is Professor of Biology and Professor of Bioengineering at the Massachusetts Institute of Technology and a member of the Whitehead Institute for Biomedical Research. Dr. Lodish is also a member of the National Academy of Sciences and the American Academy of Arts and Sciences and was President (2004) of the American Society for Cell Biology. He is well known for his work on cell membrane physiology, particularly the biosynthesis of many cell-surface proteins, and on the cloning and functional analysis of several cell-surface receptor proteins, such as the erythropoietin and TGF-ss receptors. His lab also studies hematopoietic stem cells and has identified novel proteins that support their proliferation. Dr. Lodish teaches undergraduate and graduate courses in cell biology and biotechnology.Arnold Berk is Professor of Microbiology, Immunology and Molecular Genetics and a member of the Molecular Biology Institute at the University of California, Los Angeles. Dr. Berk is also a fellow of the American Academy of Arts and Sciences. He is one of the original discoverers of RNA splicing and of mechanisms for gene control in viruses. His laboratory studies the molecular interactions that regulate transcription nitiation in mammalian cells, focusing particular attention on transcription factors encoded by oncogenes and tumor suppressors. He teaches introductory courses in molecular biology and virology and an advanced course in cell biology of the nucleus.Chris A. Kaiser is Professor and Head of the Department of Biology at the Massachusetts Institute of Technology. His laboratory uses genetic and cell biological methods to understand the basic processes of how newly synthesized membrane and secretory proteins are folded and stored in the compartments of the secretory pathway. Dr. Kaiser is recognized as a top undergraduate educator at MIT, where he has taught genetics to undergraduates for many years.Monty Krieger is the Whitehead Professor in the Department of Biology at the Massachusetts Institute of Technology. For his innovative teaching of undergraduate biology and human physiology as well as graduate cell biology courses, he has received numerous awards. His laboratory has made contributions to our understanding of membrane trafficking through the Golgi apparatus and has cloned and characterized receptor proteins important for the movement of cholesterol into and out of cells, including the HDL receptor.Anthony Bretscher is Professor of Cell Biology at Cornell University. His laboratory is well known for identifying and characterizing new components of the actin cytoskeleton, and elucidating their biological functions in relation to cell polarity and membrane traffic. For this work, his laboratory exploits biochemical, genetic and cell biological approaches in two model systems, vertebrate epithelial cells and the budding yeast. Dr. Bretscher teaches cell biology to graduate students at Cornell University.Hidde Ploegh is Professor of Biology at the Massachusetts Institute of Technology and a member of the Whitehead Institute for Biomedical Research. One of the world s leading researchers in immune system behavior, Dr. Ploegh studies the various tactics that viruses employ to evade our immune responses, and the ways in which our immune system distinguishes friend from foe. Dr. Ploegh teaches immunology to undergraduate students at Harvard University and MIT.Angelika Amon is Professor of Biology at the Massachusetts Institute of Technology, a member of the Koch Institute for Integrative Cancer Research, and Investigator at the Howard Hughes Medical Institute. She is also a member of the National Academy of Sciences. Her laboratory studies the molecular mechanisms that govern chromosome segregation during mitosis and meiosis and the consequences aneuploidy when these mechanisms fail during normal cell proliferation and cancer development. Dr. Amon teaches undergraduate and graduate courses in cell biology and genetics.Matthew P. Scott is Professor of Developmental Biology, Genetics and Bioengineering at Stanford University School of Medicine and Investigator at the Howard Hughes Medical Institute. He is a member of the National Academy of Sciences and the American Academy of Arts and Sciences and a past president of the Society for Developmental Biology. He is known for his work in developmental biology and genetics, particularly in areas of cell-cell signaling and homeobox genes and for discovering the roles of developmental regulators in cancer. Dr. Scott teaches cell and developmental biology to undergraduate students, development and disease mechanisms to medical students and developmental biology to graduate students at Stanford University Kelsey Martin is Professor of Biological Chemistry and Psychiatry and interim Dean of the David Geffen School of Medicine at the University of California, Los Angeles. She is the former Chair of the Biological Chemistry Department Her laboratory studies the ways in which experience changes connections between neurons in the brain to store long-term memories a process known as synaptic plasticity. She has made important contributions to elucidating the molecular and cell biological mechanisms that underlie this process. Dr. Martin teaches basic principles of neuroscience to undergraduates, graduate students, dental students, and medical students."

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Product details

Series: Molecular Cell Biology

Hardcover: 1280 pages

Publisher: W. H. Freeman; Eighth edition (April 1, 2016)

Language: English

ISBN-10: 1464183392

ISBN-13: 978-1464183393

Product Dimensions:

10.9 x 8 x 1.7 inches

Shipping Weight: 5.7 pounds (View shipping rates and policies)

Average Customer Review:

4.0 out of 5 stars

17 customer reviews

Amazon Best Sellers Rank:

#29,583 in Books (See Top 100 in Books)

I just finished reading through this gorgeous new edition of MCB. I had tried tackling the 5th edition back in 2000 but gave up halfway through. Trying again, I found the new book to be absolutely fantastic! The writing style is concise, and yes, you do have to concentrate hard to grok the details, but the illustrations are beautiful, plentiful and very helpful in complementing the text. So many wonderful advances have been made. As a neurologist I read stuff all the time that requires background in MCB type materials of which I had only a weak grasp. Take the illustration of the biochemistry of Duchenne muscular dystrophy, for example; I understood the role of the dystrophin protein much better afterwards. I presume this textbook is used mainly for pre-med and med students, and for that purpose I think it is ideal. For an old codger like me, who last really looked at this stuff probably in the 1980s in med school, it was like getting into a time machine and zooming 35 years into the future.

This is a text book on a very complex, technical subject. I would say it's written a graduate or post-graduate level, so a working knowledge of organic and biochemistry, genetics, and cell biology are prerequisites for fully benefiting from the book. I am an M.D., but needed to improved my knowledge and understanding of molecular cell biology, as this is where the fight against disease, including cancer, is being waged now. I'm glad I bought the book, in spite of its high price, size, weight, and complexity. It is clearly written, has excellent illustrations, well-organized, and fairly comprehensive. Some of the appeals to evolution as an explanation for "preserved function" should have been presented as theory, rather than confirmed fact, but most of these arguments are compelling.If you're willing to slug your way through a text book on this complex but fascinating subject (I'm still working on reading it), then I think this is one of the best resources I've seen. I highly recommend the book.

This has to be one of the worst textbooks I have ever read over the course of my college career. It is unnecessarily dense and extremely wordy. Chapters regarding fairly simple topics such protein structure and function can go on for upwards of 60-70 pages, and thats one chapter. Although the information is accurate and detailed just like any other textbook should be, this one takes the extra step in providing you with pages on pages of redundant and useless information. Would not recommend wasting your time on reading

very good book!

This product arrive with the cover in pretty poor condition. The edges are frayed and the front part of the cover is essentially ready to pop off. Still can be used, but might require some serious duck taping.

If you get the latest edition book is much nicer with better pictures and more up to date on the subjects. I found this book easier than the "The Cell" book or can be used paralell. What I liked also is the applications to human describing typical concepts when some cells or proteins/enzymes does not function properly.

help to understand difficult topic

I am extremely happy to receive this book in great shape!

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