Elastic filaments of the cell
Our rough guess is there are 106,250 words in this book.
At a pace averaging 250 words per minute, this book will take 7 hours and 5 minutes to read. With a half hour per day, this will take 14 days to read.
How long will it take you?
This book will take an estimated to read at a reading speed averaging words per minute. With 30 minutes per day, this will take to read.
Enter your reading speedYou can take one of our WPM reading speed tests to find your reading speed.
Create a free account to track your reading progress, build your reading list, and set reading goals.
Author
Contributions
- Granzier, Henk L. - Contributor
- Pollack, Gerald H. - Contributor
Publication
2000 - Kluwer Academic/Plenum Publishers, New York, New York (State)
Language
English
Word Count
106,250 words, Guess
Page Count
425 pages
Identifiers
- Internet Archiveelasticfilaments0481unse
- ISBN-100306464101
- ISBN-139780306464102
- Goodreads2820596
- Library of Congress Control Number00042439
and 2 more
- OCLC Control Number44162603
- Open LibraryOL20766673M
Classifications
- DDC571.6/5
- LCCQH603.C95 E43 2000
Description
from Springer Elastic filaments refer mainly to titin, the largest of all known proteins. Titin was discovered initially in muscle cells, where it interconnects the thick filament with the Z-line. Titin forms a molecular spring that is responsible for maintaining the structural integrity of contracting muscle, ensuring efficient muscle contraction. More recently, it has become clear that titin is not restricted to muscle cells alone. For example, titin is found in chromosomes of neurons and also in blood platelets. This topic is fast becoming a focal point for research in understanding viscoelastic properties at the molecular, cellular, and tissue levels. In titin may lie a generic basis for biological viscoelasticity. It has become clear that titin may hold the key to certain clinical anomalies. For example, it is clear that titin-based ventricular stiffness is modulated by calcium and that titin is responsible for the altered stiffness in cardiomyopathies. It is also clear from evidence from a group of Finnish families that titin mutations may underlie some muscular dystrophies and that with other mutations chromatids fail to separate during mitosis. Thus, it is clear that this protein will have important clinical implications stemming from its biomechanical role. One aspect of this field is the bringing together of bioengineers with clinical researchers and biologists. Genetic and biochemical aspects of titin-related proteins are being studied together with front-line engineering approaches designed to measure the mechanics of titin either in small aggregates or in single molecules.
Subjects
Topics
People
Genres
- Congresses
Series Statement
- Advances in experimental medicine and biology -- v. 481.
Other Editions
- Elastic filaments of the cell
Similar Books
International Review of Cytology: A Survey of Cell Biology, Volume 195 (International Review of Cytology)
Kwang W. Jeon
Laboratory techniques in biochemistry and molecular biology
edited by T. S. Work [and] E. Work.
Molecular Biology
Anthony Bretscher, Jennifer A. Doudna, S. Lawrence Zipursky, Paul Matsudaira, James Darnell, Monty Krieger, Lawrence Zipursky, Harvey Lodish, Michael M. Cox, Michael O'Donnell, David Baltimore, Matthew P. Scott, Chris A. Kaiser, Arnold Berk
Cell movements
by Dennis Bray.
Molecular biology of the cell
Bruce Alberts ... [et al.] ; with problems by John Wilson, Tim Hunt.
Molecular Biology of the Cell, Fourth Edition
Alexander Johnson, Keith Roberts, Peter Walter, Bruce Alberts, Martin Raff, Julian Lewis
Mitochondria
Immo E. Scheffler.
Reader Reviews
No reviews yet for this book.
Be the first to share your thoughts!