Yunchen Bi Bi Study of the Calcium Regulation Mechanism of TCR Activation Using Nanodisc and NMR Technologies

Study of the Calcium Regulation Mechanism of TCR Activation Using Nanodisc and NMR Technologies

von Yunchen Bi

Preis unbekannt

Buch in deiner Nähe kaufen


...oder deine aktuelle Postleitzahl eingeben:
oder

Beschreibung

This thesis describes the use of biophysical and biochemical methods to prove that calcium has a positive feedback effect on amplifying and sustaining CD3 phosphorylation and should enhance T-cell sensitivity to foreign antigens. The study presented shows that calcium can regulate the signal pathway in cells not only as a secondary messenger but also through direct interactions with the phospholipid bilayer. The approach used in the thesis also represents an important advance, as it couples the use of nuclear magnetic resonance (NMR) to the analysis of signaling phenomena in living cells. Moreover, the thesis optimizes the Nanodisc assembly protocol, which can broaden its range of applications in membrane protein studies. A preliminary study on the structure of dengue virus NS2B-NS3p in complex with aprotinin, which may help to develop new drugs against the dengue virus, is also included.


This thesis describes the use of biophysical and biochemical methods to prove that calcium has a positive feedback effect on amplifying and sustaining CD3 phosphorylation and should enhance T-cell sensitivity to foreign antigens. The study presented shows that calcium can regulate the signal pathway in cells not only as a secondary messenger but also through direct interactions with the phospholipid bilayer. The approach used in the thesis also represents an important advance, as it couples the use of nuclear magnetic resonance (NMR) to the analysis of signaling phenomena in living cells. Moreover, the thesis optimizes the Nanodisc assembly protocol, which can broaden its range of applications in membrane protein studies. A preliminary study on the structure of dengue virus NS2B-NS3p in complex with aprotinin, which may help to develop new drugs against the dengue virus, is also included.


Nominated as a distinguished doctoral dissertation by the Chinese Academy of Sciences Studies the calcium regulation mechanism of T cell receptor (TCR) activation by combining biophysical (mainly nuclear magnetic resonance (NMR)) and biochemical methods Optimizes the Nanodisc assembly protocol, improving its compatibility with more membrane proteins Couples the NMR study to the analysis of signaling phenomena in living cells Recognized as a research highlight by Nature Asia Includes supplementary material: sn.pub/extras

Autor*in

Yunchen Bi

Themen in »Study of the Calcium Regulation Mechanism of TCR Activation Using Nanodisc and NMR Technologies«

Calcium regulation Dengue virus NMR Nanodisc technology Nuclear magnetic resonance Protein-lipid interaction T cell receptor TCR

Stimmen zu »Study of the Calcium Regulation Mechanism of TCR Activation Using Nanodisc and NMR Technologies«

Details

ISBN: 9783662546161
Verlag: Springer Berlin
Erscheinung: 03.07.2017

Link teilen


Über buchnah.de | Die Buchhandlungen | Die Verlage | Impressum & Kontakt | Datenschutz | Presse


Auf dieser Seite kannst Du Buchhandlungen in der Nähe finden