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| 1 | Cell totipotency:molecular features,induction,and maintenance显示文摘In mammals, pluripotent stem cells can give rise to every cell type of embryonic lineage, and hold great potential in regenerative medicine and disease modeling. Guided by the mechanism underlying pluripotency, pluripotent stem cells have been successfully induced through manipulating the transcriptional and epigenetic networks of various diferentiated cell types. However, the factors that confer totipotency, the ability to give rise to cells in both embryonic and extra-embryonic lineages still remain poorly understood. It is currently unknown whether totipotency can be induced and maintained in vitro. In this review, we summarize the current progress in the ield, with the aim of providing a foundation for understanding the mechanisms that regulate totipotency. | Falong Lu Yi Zhang | 2015 | National Science Review2015,2,2: | 6 |
| 2 | Rif1 interacts with non-canonical polycomb repressive complex PRC1.6 to regulate mouse embryonic stem cells fate potential显示文摘Mouse embryonic stem cells(mESCs)cycle in and out of a transient 2-cell(2C)-like totipotent state,driven by a com-plex genetic circuit involves both the coding and repetitive sections of the genome.While a vast array of regulators,including the multi-functional protein Rif1,has been reported to influence the switch of fate potential,how they act in concert to achieve this cellular plasticity remains elusive.Here,by modularizing the known totipotency regulatory factors,we identify an unprecedented functional connection between Rif1 and the non-canonical polycomb repres-sive complex PRC1.6.Downregulation of the expression of either Rif1 or PRC1.6 subunits imposes similar impacts on the transcriptome of mESCs.The LacO-LacI induced ectopic colocalization assay detects a specific interaction between Rif1 and Pcgf6,bolstering the intactness of the PRC1.6 complex.Chromatin immunoprecipitation followed by sequencing(ChIP-seq)analysis further reveals that Rif1 is required for the accurate targeting of Pcgf6 to a group of genomic loci encompassing many genes involved in the regulation of the 2C-like state.Depletion of Rif1 or Pcgf6 not only activates 2C genes such as Zscan4 and Zfp352,but also derepresses a group of the endogenous retroviral element MERVL,a key marker for totipotency.Collectively,our findings discover that Rif1 can serve as a novel auxiliary component in the PRC1.6 complex to restrain the genetic circuit underlying totipotent fate potential,shedding new mechanistic insights into its function in regulating the cellular plasticity of embryonic stem cells. | Lu Li Pishun Li Jiale Chen Li Li Yunfan Shen Yangzixuan Zhu Jiayi Liu Lu Lv Song Mao Fang Chen Guang Hu Kai Yuan | 2022 | Cell Regeneration2022,11,1: | 1 |
| 3 | Role of Oct4 in the early embryo development显示文摘Oct4 is a key component of the pluripotency regulatory network,and its reciprocal interaction with Cdx2 has been shown to be a determinant of either the self-renewal of embryonic stem cells(ESCs)or their differentiation into trophoblast.Oct4 of maternal origin is postulated to play critical role in defining totipotency and inducing pluripotency during embryonic development.However,the genetic elimination of maternal Oct4 using a Cre-lox approach in mouse revealed that the establishment of totipotency in maternal Oct4–depleted embryos was not affected,and that these embryos could complete full-term development without any obvious defect.These results indicate that Oct4 is not essential for the initiation of pluripotency,in contrast to its critical role in maintaining pluripotency.This conclusion is further supported by the formation of Oct4-GFP–and Nanog-expressing inner cell masses(ICMs)in embryos with complete inactivation of both maternal and zygotic Oct4 expression and the reprogramming of fibroblasts into fully pluripotent cells by Oct4-deficient oocytes. | Guangming Wu Hans R Schöler | 2014 | Cell Regeneration2014,3,1: | 1 |
| 4 | Lessons from expanded potential of embryonic stem cells:Moving toward totipotency显示文摘Embryonic stem cells possess fascinating capacity of self-renewal and developmental potential,leading to significant progress in understanding the molecular basis of pluripotency,disease modeling,and reprogramming technology.Recently,2-cell-like embryonic stem cells(ESCs)and expanded potential stem cells or extended pluripotent stem cells(EPSCs)generated from early-cleavage embryos display some features of totipotent embryos.These cell lines provide valuable in vitro models to study underlying principles of totipotency,cell plasticity,and lineage segregation.In this review,we summarize the current progress in this filed and highlight the application potentials of these cells in the future. | Rongrong Le Yixin Huang Anqi Zhao Shaorong Gao | 2020 | Journal of Genetics and Genomics2020,47,3: | 0 |
| 5 | Decreased morphogenetic potential in peach palm stem-like cells in long-term in vitro conditions显示文摘Peach palm(Bactris gasipaes Kunth)has been micropropagated from pre-procambial cells that provide stem-like cell niches,(i.e.,pre-procambial cells),multipotent,pluripotent and totipotent for direct vascularization,adventitious buds and somatic embryogenesis,respectively.The direct induction of adventitious buds and somatic embryogenesis reduces the frequency of mutations when compared to indirect morphogenesis.Long-term in vitro cultivation of perennial species such as peach palm cause the clones to age and deteriorate;however,the consequences for morphogenesis potential are not fully clear.The morphogenic potential of peach palm clones established and in vitro cultivated for 8 years(regeneration of adventitious buds without callus formation)was investigated in leaves,roots and stem bases using histological and histochemical analyses.Data from long-term cultures(8-years-old)was compared to data from short-term cultures(1-year-old).Morphogenic pathways monitoring for direct induction of somatic embryos and adventitious buds revealed a strong morphogenic reduction potential in the pre-procambial cells,parenchyma cells in the proximal region of stem bases,and external cells of leaf sheaths.Initial cells of shoot apical meristems and pre-procambial cells commit cell reprogramming to the undifferentiated state and subsequent acquisition of cellular competence.These results are applicable in the micropropagation of peach palm,with consideration to obtaining clones and their long-term in vitro culture. | Erika Mendes Graner Gilvano Ebling Brondani Cristina Vieira de Almeida Katherine Derlene Batagin-Piotto Marcilio de Almeida | 2020 | Journal of Forestry Research2020,31,2: | 0 |