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
A unique Oct4 interface is crucial for reprogramming to pluripotency
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
In silico identification of natural product inhibitors against Octamer-binding transcription factor 4 (Oct4) to impede the mechanism of glioma stem cells
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Reprogramming competence of OCT factors is determined by transactivation domains
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Evolutionary origin of vertebrate OCT4/POU5 functions in supporting pluripotency
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
PDF) Critical POU domain residues confer Oct4 uniqueness in somatic cell reprogramming
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
Molecular Reproduction & Development, Reproductive Biology Journal
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Changing POU dimerization preferences converts Oct6 into a pluripotency inducer. - Abstract - Europe PMC
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Liquid condensation of reprogramming factor KLF4 with DNA provides a mechanism for chromatin organization
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Cancers, Free Full-Text
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Cancers, Free Full-Text
Critical POU domain residues confer Oct4 uniqueness in somatic cell  reprogramming
Oct4 redox sensitivity potentiates iPSC reprogramming
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