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Actin polymerization in apicomplexan...
~
Kale, Avinash.
Actin polymerization in apicomplexana structural, functional and evolutionary analysis /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Actin polymerization in apicomplexanedited by Avinash Kale.
其他題名:
a structural, functional and evolutionary analysis /
其他作者:
Kale, Avinash.
出版者:
Singapore :Springer Singapore :2019.
面頁冊數:
xi, 101 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Apicomplexa.
電子資源:
https://doi.org/10.1007/978-981-13-7450-0
ISBN:
9789811374500$q(electronic bk.)
Actin polymerization in apicomplexana structural, functional and evolutionary analysis /
Actin polymerization in apicomplexan
a structural, functional and evolutionary analysis /[electronic resource] :edited by Avinash Kale. - Singapore :Springer Singapore :2019. - xi, 101 p. :ill., digital ;24 cm.
Chapter 1. Synthesis and Characterization of nano Apicomplexan motility: A cellular perspective particles -- Chapter 2. Introduction: Gliding Motility- The model and the mechanism -- Chapter 3. Actin: The central ubiquitous player in the phenomenon -- Chapter 4. Formin: The multidomain elongator of polymer -- Chapter 5. Profilin: The associates of Formin -- Chapter 6. ADF (Actin Depolymerizing Factor): The breaker of the polymer in homeostasis -- Chapter 7. Cyclase associated protein (CAP): The silent worker -- Chapter 8. Capping Protein (CP): The formin competitor -- Chapter 9. Coronin: An Overview -- Chapter 10. Mathematical Model: A revelation of synergistic cross talks between the actin regulators -- Chapter 11. Evolution: The hallmarks of Gliding motility in apicomplexan.
This book discusses in detail the structural, evolutionary and functional role of actin and its regulatory proteins in gliding motility in apicomplexan organisms, a unique phenomenon found in actin-myosin cytoskeletal elements. The book also explores the potential of different actin regulators, namely formin, profilin, actin depolymerization factor (ADF), capping proteins (CPa and CPβ), cyclase-associated protein (CAP) and coronin 13-24 as potential drug targets against malaria. As the chief components of the gliding motor, the actin-regulator proteins are characterized by unique features that make them promising targets for structure-based drug design. Lastly, the book proposes a mathematical model, based on kinetic data mining, to help understand the most vital regulators for actin polymerization dynamics.
ISBN: 9789811374500$q(electronic bk.)
Standard No.: 10.1007/978-981-13-7450-0doiSubjects--Topical Terms:
855030
Apicomplexa.
LC Class. No.: QL368.A16 / A285 2019
Dewey Class. No.: 579.4
Actin polymerization in apicomplexana structural, functional and evolutionary analysis /
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Chapter 1. Synthesis and Characterization of nano Apicomplexan motility: A cellular perspective particles -- Chapter 2. Introduction: Gliding Motility- The model and the mechanism -- Chapter 3. Actin: The central ubiquitous player in the phenomenon -- Chapter 4. Formin: The multidomain elongator of polymer -- Chapter 5. Profilin: The associates of Formin -- Chapter 6. ADF (Actin Depolymerizing Factor): The breaker of the polymer in homeostasis -- Chapter 7. Cyclase associated protein (CAP): The silent worker -- Chapter 8. Capping Protein (CP): The formin competitor -- Chapter 9. Coronin: An Overview -- Chapter 10. Mathematical Model: A revelation of synergistic cross talks between the actin regulators -- Chapter 11. Evolution: The hallmarks of Gliding motility in apicomplexan.
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This book discusses in detail the structural, evolutionary and functional role of actin and its regulatory proteins in gliding motility in apicomplexan organisms, a unique phenomenon found in actin-myosin cytoskeletal elements. The book also explores the potential of different actin regulators, namely formin, profilin, actin depolymerization factor (ADF), capping proteins (CPa and CPβ), cyclase-associated protein (CAP) and coronin 13-24 as potential drug targets against malaria. As the chief components of the gliding motor, the actin-regulator proteins are characterized by unique features that make them promising targets for structure-based drug design. Lastly, the book proposes a mathematical model, based on kinetic data mining, to help understand the most vital regulators for actin polymerization dynamics.
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