SIRT6 Knockout Cells Resist Apoptosis Initiation but Not Progression: A Computational Method to Evaluate the Progression of Apoptosis
Sergii Domanskyi, Justin W. Nicholatos, Joshua E. Schilling, Vladimir, Privman, Sergiy Libert

TL;DR
This study introduces a computational model to analyze apoptosis progression, revealing that SIRT6 knockout cells delay initiation but accelerate progression once apoptosis begins, highlighting SIRT6's complex role in cell death regulation.
Contribution
The paper presents a novel computational method to quantify apoptosis stages and demonstrates how SIRT6 deficiency affects apoptosis dynamics in cells.
Findings
SIRT6 knockout cells resist apoptosis initiation.
Once initiated, apoptosis progresses faster in SIRT6 null cells.
SIRT6 influences multiple steps in the apoptosis process.
Abstract
Apoptosis is essential for numerous processes, such as development, resistance to infections, and suppression of tumorigenesis. Here, we investigate the influence of the nutrient sensing and longevity-assuring enzyme SIRT6 on the dynamics of apoptosis triggered by serum starvation. Specifically, we characterize the progression of apoptosis in wild type and SIRT6 deficient mouse embryonic fibroblasts using time-lapse flow cytometry and computational modelling based on rate-equations and cell distribution analysis. We find that SIRT6 deficient cells resist apoptosis by delaying its initiation. Interestingly, once apoptosis is initiated, the rate of its progression is higher in SIRT6 null cells compared to identically cultured wild type cells. However, SIRT6 null cells succumb to apoptosis more slowly, not only in response to nutrient deprivation but also in response to other stresses. Our…
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