Critical POU domain residues confer Oct4 uniqueness in somatic cell reprogramming

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Last updated 27 dezembro 2024
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Biphasic Change of Signaling Pathways during hiPSC Reprogramming
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Kap1 regulates the self-renewal of embryonic stem cells and cellular reprogramming by modulating Oct4 protein stability
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Kap1 regulates the self-renewal of embryonic stem cells and cellular reprogramming by modulating Oct4 protein stability
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Changing POU dimerization preferences converts Oct6 into a pluripotency inducer
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Changing POU dimerization preferences converts Oct6 into a pluripotency inducer
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Enhancing Sox/Oct cooperativity induces higher-grade developmental reset
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Critical POU domain residues confer Oct4 uniqueness in somatic cell reprogramming
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
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Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
PDF) Biological importance of OCT transcription factors in reprogramming and development
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Reprogramming cell fate with a genome-scale library of artificial transcription factors

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