| Literature DB >> 29743892 |
Hang Zhou1,2, Bin Wang2, Hao Sun3, Xingshun Xu1,2, Yongxiang Wang3.
Abstract
Among the regulatory mechanisms of the renewal and differentiation of neural stem cells, recent evidences support that epigenetic modifications such as DNA methylation, histone modification, and noncoding RNAs play critical roles in the regulation on the proliferation and differentiation of neural stem cells. In this review, we discussed recent advances of DNA modifications on the regulative mechanisms of neural stem cells. Among these epigenetic modifications, DNA 5-hydroxymethylcytosine (5hmC) modification is emerging as an important modulator on the proliferation and differentiation of neural stem cells. At the same time, Ten-eleven translocation (Tet) methylcytosine dioxygenases, the rate-limiting enzyme for the 5-hydroxymethylation reaction from 5-methylcytosine to 5-hydroxymethylcytosine, play a critical role in the tumorigenesis and the proliferation and differentiation of stem cells. The functions of 5hmC and TET proteins on neural stem cells and their roles in neurological diseases are discussed.Entities:
Year: 2018 PMID: 29743892 PMCID: PMC5878882 DOI: 10.1155/2018/6087143
Source DB: PubMed Journal: Stem Cells Int Impact factor: 5.443
Tet proteins and their functions.
| Genes | Distribution | Structure | Functions of Tet enzymes | |
|---|---|---|---|---|
| Knockout phenotypes in rodents | Related diseases in humans | |||
| Tet1 | Mainly in ESCs and nervous system [ | Contains CXXC, Cys-rich, and DSBH domains | (1) Abnormal hippocampal neurogenesis, with learning and memory fading [ | (1) Acute leukemia [ |
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| Tet2 | Widely distributed and high in hematopoietic system [ | Contains Cys-rich and DSBH domains without CXXC domain | (1) Hematopoietic cell homeostasis and hematopoietic differentiation impairment, myeloid malignancies [ | (1) Polycythemia vera [ |
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| ||||
| Tet3 | Mainly in colon and muscle tissues, less in brain tissue [ | Contains CXXC, Cys-rich, and DSBH domains | (1) Developmental failure [ | NA |
| Tet1/2 DKO | Embryonic stage death and little normal growth [ | NA | ||
| Tet1/3 DKO | (1) Dendritic arborization inhibition in mice [ | NA | ||
| Tet1/2/3 TKO | Developmental disorders [ | NA | ||
CXXC: Cys-X-X-Cys domain; DSBH: double-stranded beta helix; DKO: double knockout; ESCs: embryonic stem cells; TKO: triple knockout; NA: not available.
Figure 1Tet proteins and 5-hmC mediated regulation of NSC proliferation and differentiation. Under the conditions of environmental stimuli, some transcriptional factors (TFs) such as FOXO3a enhance the affinity to Tet proteins along with cofactors of Tet enzymes including α-KG and Fe2+ to form a functional complex. By binding to DNA motifs of the targeting genes, the TFs guide the Tet enzymes to catalyze the conversion of 5mC to 5hmC. Generation of 5hmC facilitates the recruitment of the 5hmC binding proteins or other factors to enhance the transcription of targeting genes, thereby regulating the proliferation and differentiation of NSCs.