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  1. KEEP
  2. Theses and Dissertations
  3. Barrett, The Honors College Thesis/Creative Project Collection
  4. Plasmid Design for Making a HEK293t Reporter Cell Line to Study Gene Expression Dynamics
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Plasmid Design for Making a HEK293t Reporter Cell Line to Study Gene Expression Dynamics

Full metadata

Title
Plasmid Design for Making a HEK293t Reporter Cell Line to Study Gene Expression Dynamics
Description
Cell fate is a complex and dynamic process with many genetic components. It has often been likened to “multistable” mathematical systems because of the numerous possible “stable” states, or cell types, that cells may end up in. Due to its complexity, understanding the process of cell fate and differentiation has proven challenging. A better understanding of cell differentiation has applications in regenerative stem cell therapies, disease pathologies, and gene regulatory networks.
A variety of different genes have been associated with cell fate. For example, the Nanog/Oct-4/Sox2 network forms the core interaction of a gene network that maintains stem cell pluripotency, and Oct-4 and Sox2 also play a role in the tissue types that stem cells eventually differentiate into. Using the CRISPR/cas9 based homology independent targeted integration (HITI) method developed by Suzuki et al., we can integrate fluorescent tags behind genes with reasonable efficiency via the non-homologous end joining (NHEJ) DNA repair pathway. With human embryonic kidney (HEK) 293T cells, which can be transfected with high efficiencies, we aim to create a three-parameter reporter cell line with fluorescent tags for three different genes related to cell fate. This cell line would provide several advantages for the study of cell fate, including the ability to quantitatively measure cell state, observe expression heterogeneity among a population of genetically identical cells, and easily monitor fluctuations in expression patterns.
The project is partially complete at this time. This report discusses progress thus far, as well as the challenges faced and the future steps for completing the reporter line.
Date Created
2019-05
Contributors
  • Loveday, Tristan Andre (Author)
  • Wang, Xiao (Thesis director)
  • Brafman, David (Committee member)
  • Harrington Bioengineering Program (Contributor)
  • Barrett, The Honors College (Contributor)
Topical Subject
  • Synthetic Biology
  • CRISPR
  • Cell Fate
Resource Type
Text
Extent
20 pages
Language
eng
Copyright Statement
In Copyright
Primary Member of
Barrett, The Honors College Thesis/Creative Project Collection
Series
Academic Year 2018-2019
Handle
https://hdl.handle.net/2286/R.I.52638
Level of coding
minimal
Cataloging Standards
asu1
System Created
  • 2019-04-18 12:00:43
System Modified
  • 2021-08-11 04:09:57
  •     
  • 2 years 3 months ago
Additional Formats
  • OAI Dublin Core
  • MODS XML

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