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#Yamanaka factors

2 public questions tagged with this topic.

The correct combination of transcription factors for iPSC generation is:

Original Yamanaka cocktail clearly demonstrated four transcription factors sufficient to convert mouse and human fibroblasts to embryonic stem-like state functionally and transcriptionally. Oct4 is pituitary octamer transcription factor essential for inner cell mass identity and epiblast maintenance, Sox2 partners directly with Oct4 on composite motifs, Klf4 Krüppel-like factor regulates proliferation while suppressing somatic gene expression, c-Myc oncogene enhances chromatin accessibility, glycolytic metabolism, and proliferation kinetics. Later refinements replaced c-Myc with L-Myc or omitted it entirely to reduce tumorigenicity, while Nanog and Lin28 serve as alternative supplements. Core OSKM remains gold standard for iPSC generation protocols universally.

Ref: Takahashi & Yamanaka, Cell 2006; Yu et al., Science 2007: OSKM combination iPSC generation standard.

Induced pluripotent stem cells (iPSCs) can be generated by introducing which factors?

Induced pluripotent stem cells are produced by transient overexpression of embryonic transcription factors that epigenetically reset somatic genome toward embryonic state. Yamanaka factors Oct4, Sox2, Klf4, and c-Myc disrupt fibroblast transcriptional program, induce mesenchymal to epithelial transition, demethylate pluripotency enhancers, and reactivate endogenous Oct4, Nanog, Esrrb circuitry necessary for self-renewal. Klf4 and c-Myc facilitate proliferation and chromatin opening. Protocols employ retroviral, Sendai virus, mRNA, or episomal delivery with varying efficiency. Resulting iPSCs are molecularly and functionally similar to embryonic stem cells, offering isogenic models without embryo destruction.

Ref: Takahashi et al., Cell 2007; Gilbert, Chapter 6: Yamanaka factors Oct4 Sox2 Klf4 c-Myc iPSC generation.