Formation and Cooperative Behaviour of Protein Complexes on the Cell Membrane

(Autor)

Buch | Hardcover
XII, 80 Seiten
2011 | 2012
Springer Berlin (Verlag)
978-3-642-23987-8 (ISBN)
53,49 inkl. MwSt
With the aim of providing a deeper insight into possible mechanisms of biological self-organization, this thesis presents new approaches to describe the process of self-assembly and the impact of spatial organization on the function of membrane proteins, from a statistical physics point of view. It focuses on three important scenarios: the assembly of membrane proteins, the collective response of mechanosensitive channels and the function of the twin arginine translocation (Tat) system. Using methods from equilibrium and non-equilibrium statistical mechanics, general conclusions were drawn that demonstrate the importance of the protein-protein interactions. Namely, in the first part a general aggregation dynamics model is formulated, and used to show that fragmentation crucially affects the efficiency of the self-assembly process of proteins. In the second part, by mapping the membrane-mediated forces into a simplified many-body system, the dynamic and equilibrium behavior of interacting mechanosensitive channels is derived, showing that protein agglomeration strongly impacts its desired function. The final part develops a model that incorporates both the agglomeration and transport function of the Tat system, thereby providing a comprehensive description of this self-organizing process.

Introduction.- The Role of Fragmentation on the Formation of Homomeric Protein Complexes.- Collective Response of Self-organised Clusters of Mechanosensitive Channels.- Assembly and Fragmentation of Tat Pores.- Conclusion.

Erscheint lt. Verlag 2.10.2011
Reihe/Serie Springer Theses
Zusatzinfo XII, 80 p.
Verlagsort Berlin
Sprache englisch
Maße 155 x 235 mm
Gewicht 285 g
Themenwelt Naturwissenschaften Biologie Mikrobiologie / Immunologie
Naturwissenschaften Physik / Astronomie Angewandte Physik
Schlagworte macromolecular dynamics • Mechanosensitive channels • Membrane functional organization • Outstanding PhD Thesis • Protein • Protein assembly • Protein / Eiweiß • protein-protein interactions • Self-organization and self-assembly • Zellmembran
ISBN-10 3-642-23987-0 / 3642239870
ISBN-13 978-3-642-23987-8 / 9783642239878
Zustand Neuware
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