4.8 Article

Highly efficient reprogrammable mouse lines with integrated reporters to track the route to pluripotency

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2207824119

关键词

somatic cell reprogramming; induced pluripotent stem cells; secondary; reprogramming; reprogrammable mouse; transgenic mouse

资金

  1. Ontario Research Fund Genome and Life Sciences (Round 2) Program grant from the Ontario Ministry of Research and Innovation [GL2-01-028]
  2. Canada Research Chairs Program
  3. CIHR Foundation Program Grant

向作者/读者索取更多资源

This study reports the development of two efficient transgenic mouse lines for rapid reprogramming of various fetal and adult tissue-derived somatic cells. These mouse lines serve as powerful tools for exploring the sources of variability in reprogramming and the mechanistic underpinnings of efficient reprogramming systems.
Revealing the molecular events associated with reprogramming different somatic cell types to pluripotency is critical for understanding the characteristics of induced pluripotent stem cell (iPSC) therapeutic derivatives. Inducible reprogramming factor transgenic cells or animals-designated as secondary (2 degrees) reprogramming systems-not only provide excellent experimental tools for such studies but also offer a strategy to study the variances in cellular reprogramming outcomes due to different in vitro and in vivo environments. To make such studies less cumbersome, it is desirable to have a variety of efficient reprogrammable mouse systems to induce successful mass reprogramming in somatic cell types. Here, we report the development of two transgenic mouse lines from which 2 degrees cells reprogram with unprecedented efficiency. These systems were derived by exposing primary reprogramming cells containing doxycycline-inducible Yamanaka factor expression to a transient interruption in transgene expression, resulting in selection for a subset of clones with robust transgene response. These systems also include reporter genes enabling easy readout of endogenous Oct4 activation (GFP), indicative of pluripotency, and reprogramming transgene expression (mCherry). Notably, somatic cells derived from various fetal and adult tissues from these 2 degrees mouse lines gave rise to highly efficient and rapid reprogramming, with transgene-independent iPSC colonies emerging as early as 1 wk after induction. These mouse lines serve as a powerful tool to explore sources of variability in reprogramming and the mechanistic underpinnings of efficient reprogramming systems.

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