Study of the Calcium Regulation Mechanism of TCR Activation Using Nanodisc and NMR Technologies
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"Study of the Calcium Regulation Mechanism of TCR Activation Using Nanodisc and NMR Technologies" by Yunchen Bi is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.
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.
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"Study of the Calcium Regulation Mechanism of TCR Activation Using Nanodisc and NMR Technologies" by Yunchen Bi is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.
Topic: Cosmology
Author: Yunchen Bi
Who this is for:
- Astronomy students
- Researchers and advanced hobbyists
- Readers exploring space science topics
Why this book matters: It matters because it helps readers build a stronger understanding of astronomy concepts, observations, and scientific ideas related to space.
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.
| Author | Yunchen Bi |
| Publisher | Springer |
| Published | 2017-07-03 |
| ISBN-13 | 9783662546161 |
| Binding | Hardcover |
| Pages | 79 |
| Language | English |
| Subjects | Technology & Engineering |
| Topic | Cosmology |
| Series | Springer Theses |
Format: Hardcover
Length: 79 pages
Language: English
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