OCT4 and SOX2 transcription factors

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==OCT4==
==OCT4==
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In humans, the POUF5F1 alternative splicing gives rise to two Oct4 isoforms, Oct4-IA and Oct4-IB, that differs by the N-terminal region. Oct4-IA is required to self-renewal maintenance of stem cells and Oct4-IB is not related to stemness <ref>PMID:1408763</ref> <ref>PMID:12110702</ref>. Oct4 is present in all stages of embryo development <ref>PMID:9665340</ref><ref>PMID:8567814</ref> <ref name="dezoito">PMID:23257836</ref>. The Oct4 expression pattern differs between the blastomeres in the same development stage by the protein cytoplasmic localization<ref name="onze">PMID:15695770</ref>. From the unfertilized oocyte to the solid morula no Oct4 protein is observed in the nucleus<ref name="onze"/>. During compaction, Oct4 expression becomes ubiquitous and abundant in the nucleus of all morula blastomeres<ref name="onze"/>. In the blastocyst, the Oct4 mRNA and protein are present in the inner cell mass<ref name="dezoito"/>.
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In humans, the POUF5F1 alternative splicing gives rise to two Oct4 isoforms, Oct4-IA and Oct4-IB, that differs by the N-terminal region. Oct4-IA is required to self-renewal maintenance of stem cells and Oct4-IB is not related to stemness <ref>PMID:1408763</ref> <ref>PMID:12110702</ref>. Oct4 is present in all stages of embryo development <ref>PMID:9665340</ref> <ref>PMID:8567814</ref> <ref name="dezoito">PMID:23257836</ref>. The Oct4 expression pattern differs between the blastomeres in the same development stage by the protein cytoplasmic localization<ref name="onze">PMID:15695770</ref>. From the unfertilized oocyte to the solid morula no Oct4 protein is observed in the nucleus <ref name="onze"/>. During compaction, Oct4 expression becomes ubiquitous and abundant in the nucleus of all morula blastomeres <ref name="onze"/>. In the blastocyst, the Oct4 mRNA and protein are present in the inner cell mass <ref name="dezoito"/>.
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Maternal murine Oct4 mRNA and protein are deposited in the oocyte and they are necessary for the development until the stage of 4 cells. Proteins are present at low levels at these early stages of murine embryogenesis. Transcription of zygotic Pou5f1 gene is activated at the 4 to 8-cell stage <ref>PMID:9814708</ref> <ref>PMID:7958450</ref> <ref>PMID:11463946</ref> <ref>PMID:24145198</ref>. With the blastocyst is formation, the expression of Oct4 remains high in the inner cell mass and it is not observed in the trophectoderm. After the murine embryo implantation, the transient upregulation of Oct4 in a subset of cells from the inner cell mass, triggers their differentiation into hypoblast (primitive endoderm). After that, the Oct4 expression decreases in these cells <ref>PMID: 9814708</ref> <ref>PMID:7958450</ref> <ref>PMID:11463946</ref> <ref>PMID: 24145198</ref>. During gastrulation, Oct4 is down-regulated and, after day 8 of gestation, it is confined to primordial germ cells <ref>PMID:9814708</ref> <ref>PMID:7958450</ref> <ref>PMID:11463946</ref> <ref>PMID:24145198</ref> <ref>PMID:12528890</ref> <ref>PMID:15486564</ref>.
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Maternal murine Oct4 mRNA and protein are deposited in the oocyte and they are necessary for the development until the stage of 4 cells. Proteins are present at low levels at these early stages of murine embryogenesis. Transcription of zygotic Pou5f1 gene is activated at the 4 to 8-cell stage <ref name="quatro">PMID:9814708</ref> <ref name="seis">PMID:7958450</ref> <ref name="sete">PMID:11463946</ref> <ref name="oito">PMID:24145198</ref>. With the blastocyst is formation, the expression of Oct4 remains high in the inner cell mass and it is not observed in the trophectoderm. After the murine embryo implantation, the transient upregulation of Oct4 in a subset of cells from the inner cell mass, triggers their differentiation into hypoblast (primitive endoderm). After that, the Oct4 expression decreases in these cells <ref name="quatro"/> <ref name="seis"/> <ref name="sete"/> <ref name="oito"/>. During gastrulation, Oct4 is down-regulated and, after day 8 of gestation, it is confined to primordial germ cells <ref name="quatro"/> <ref name="sete"/> <ref>PMID:12528890</ref> <ref>PMID15486564</ref>.
==SOX2==
==SOX2==
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Sox2 is persistently expressed during embryonic development and it is first expressed in the morula stage. Later it becomes specifically located in the inner cell mass of blastocyst and epiblast [rev sox2 - 12]. After gastrulation it is predominantly expressed in the central nervous system [rev sox2 - 22]. It is known that zygotic deletion of Sox2 is lethal due to the failure to form pluripotent epiblast whilst the absence of Sox2 has little effect on the trophectoderm formation [rev sox2 - 12]. The depletion of Sox2 compromised the stemness of both mouse and human embryonic stem cells, changing their morphology and pluripotent marker expression and they differentiate primarily into trophectoderm [rev sox2 - 2, 13].
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Sox2 is persistently expressed during embryonic development and it is first expressed in the morula stage. Later it becomes specifically located in the inner cell mass of blastocyst and epiblast <ref name="doze">PMID:12514105</ref>. After gastrulation it is predominantly expressed in the central nervous system <ref>PMID:16139372</ref>. It is known that zygotic deletion of Sox2 is lethal due to the failure to form pluripotent epiblast whilst the absence of Sox2 has little effect on the trophectoderm formation <ref name="doze"/>. The depletion of Sox2 compromised the stemness of both mouse and human embryonic stem cells, changing their morphology and pluripotent marker expression and they differentiate primarily into trophectoderm <ref>PMID:17515932</ref> <ref>PMID:18388306</ref>.
=The OCT4-SOX2 mechanism in the nucleosome=
=The OCT4-SOX2 mechanism in the nucleosome=
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==iPSC/Yamanaka factors==
==iPSC/Yamanaka factors==
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In 2006, Yamanaka and Takahashi first demonstrated the factors necessary for the induced Pluripotent Stem Cells (iPSC) generation. The Yamanaka factors, including Oct3/4 and Sox2 (also Klf4 and c-Myc), represent an important milestone in life sciences and have been widely used in the research and medical fields [ref yamanaka].
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In 2006, Yamanaka and Takahashi first demonstrated the factors necessary for the induced Pluripotent Stem Cells (iPSC) generation. The Yamanaka factors, including Oct3/4 and Sox2 (also Klf4 and c-Myc), represent an important milestone in life sciences and have been widely used in the research and medical fields <ref>PMID:17154061</ref>.
=Related Diseases=
=Related Diseases=

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