Items related to Microtubules, Part A: 95 (Methods in Cell Biology):...

Microtubules, Part A: 95 (Methods in Cell Biology): Volume 115 - Hardcover

Wilson, Leslie

 
9780123748157: Microtubules, Part A: 95 (Methods in Cell Biology): Volume 115

Synopsis

There continues to be intense interest in the microtubule cytoskeleton, the assembly, structure and regulation of microtubules and the numerous motors and accessory proteins that control cell cycle, dynamics, organization and transport. The field continues to grow and explore new aspects of these issues driven immensely by developments in optical imaging and tracking techniques. This volume (complimented by the forthcoming companion volume by Cassimeris and Tran) brings together current research and protocols in the field of microtoublues in vitro and will serve as a valuable tool for cell biologists, biophysicists and pharmacologists who study the microtubule cyctoskeleton, as well as for researchers in the biomedical and biotechnology communities with interest in developing drugs that target microtubules, MAPS and motors.



* Chapters reflect both experimental procedures and new developments in the field of Microtubule in vitro research.
* Combines classical approaches and modern technologies
* Presents easy-to-use protocols and thorough background information, compiled by leaders in the field

"synopsis" may belong to another edition of this title.

About the Author

University of California, Santa Barbara, USA

From the Back Cover

There continues to be intense interest in the microtubule cytoskeleton; the assembly, structure and regulation of microtubules; and the numerous motors and accessory proteins that control cell cycle, dynamics, organization and transport. The field continues to grow and explore new aspects of these issues driven immensely by developments in optical imaging and tracking techniques. This volume (complemented by the forthcoming companion volume by Cassimeris and Tran) brings together current research and protocols in the field of microtoubules in vitro and will serve as a valuable tool for cell biologists, biophysicists and pharmacologists who study the microtubule cytoskeleton, as well as for researchers in the biomedical and biotechnology communities with interest in developing drugs that target microtubules, MAPS and motors.

"About this title" may belong to another edition of this title.