Selcan Aydin
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Research

Genetic variation influences pluripotency
quantitative genetics
stem cells
mouse
chromatin

How genetic variation shapes ground-state pluripotency in mouse embryonic stem cells using chromatin accessibility, transcript, and protein abundance data across genetically…

Dissecting the Effects of Genetic Variation on Stress Response
quantitative genetics
yeast
signaling dynamics
QTL mapping

Using osmo-adaptation in budding yeast as a model to understand how genetic variation across diverse strains drives differences in signaling dynamics and phenotypic…

Single-Cell Analysis Reveals Mechanisms of Gene Regulation
gene regulation
yeast
single-cell
microfluidics

Measuring nutrient stress response in single yeast cells using phase and luminescence microscopy and microfluidics to uncover dose-dependent mechanisms of gene regulation.

Mathematical Modeling of Cellular Signaling
mathematical modeling
systems biology
NFκB signaling
hepatocytes

Modeling TNFα-induced NFκB signaling in primary murine hepatocytes using quantitative experimental data and parameter estimation to understand dynamic signal transduction.

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