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首页> 外文期刊>STEM CELLS >Heparan Sulfation-Dependent Fibroblast Growth Factor Signaling Maintains Embryonic Stem Cells Primed for Differentiation in a Heterogeneous State§
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Heparan Sulfation-Dependent Fibroblast Growth Factor Signaling Maintains Embryonic Stem Cells Primed for Differentiation in a Heterogeneous State§

机译:肝素硫酸盐依赖的成纤维细胞生长因子信号维持胚胎干细胞分化的异质状态 §

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摘要

Embryonic stem (ES) cells continuously decide whether to maintain pluripotency or differentiate. While exogenous leukemia inhibitory factor and BMP4 perpetuate a pluripotent state, less is known about the factors initiating differentiation. We show that heparan sulfate (HS) proteoglycans are critical coreceptors for signals inducing ES cell differentiation. Genetic targeting of NDST1 and NDST2, two enzymes required for N-sulfation of proteoglycans, blocked differentiation. This phenotype was rescued by HS presented in trans or by soluble heparin. NaClO, which reduces sulfation of proteoglycans, potently blocked differentiation of wild-type cells. Mechanistically, N-sulfation was identified to be critical for functional autocrine fibroblast growth factor 4 (FGF4) signaling. Microarray analysis identified the pluripotency maintaining transcription factors Nanog, KLF2/4/8, Tbx3, and Tcf3 to be negatively regulated, whereas markers of differentiation such as Gbx2, Dnmt3b, FGF5, and Brachyury were induced by sulfation-dependent FGF receptor (FGFR) signaling. We show that several of these genes are heterogeneously expressed in ES cells, and that targeting of heparan sulfation or FGFR-signaling facilitated a homogenous Nanog/KLF4/Tbx3 positive ES cell state. This finding suggests that the recently discovered heterogeneous state of ES cells is regulated by HS-dependent FGFR signaling. Similarly, culturing blastocysts with NaClO eliminated GATA6-positive primitive endoderm progenitors generating a homogenous Nanog-positive inner cell mass. Functionally, reduction of sulfation robustly improved de novo ES cell derivation efficiency. We conclude that N-sulfated HS is required for FGF4 signaling to maintain ES cells primed for differentiation in a heterogeneous state. Inhibiting this pathway facilitates a more naïve ground state. STEM CELLS 2010;28:191-200
机译:胚胎干(ES)细胞不断决定是维持多能性还是分化。虽然外源性白血病抑制因子和BMP4可以维持多能状态,但对于引起分化的因素知之甚少。我们表明,硫酸乙酰肝素(HS)蛋白聚糖是诱导ES细胞分化的信号的关键共受体。 NDST1和NDST2(蛋白聚糖N硫酸化所需的两种酶)的基因定位可阻止分化。该表型通过反式或可溶性肝素中的HS得以拯救。 NaClO可以减少蛋白聚糖的硫酸化,有效地阻止了野生型细胞的分化。从机理上讲,N-硫酸化被认为对功能性自分泌成纤维细胞生长因子4(FGF4)信号至关重要。微阵列分析发现维持多能性的转录因子Nanog,KLF2 / 4/8,Tbx3和Tcf3被负调节,而分化标记(如Gbx2,Dnmt3b,FGF5和Brachyury)则由硫酸盐依赖的FGF受体(FGFR)诱导。信号。我们显示这些基因中的几个在ES细胞中异质表达,并且针对乙酰肝素硫酸盐或FGFR信号的靶向促进了均匀的Nanog / KLF4 / Tbx3阳性ES细胞状态。这一发现表明,最近发现的ES细胞异质状态受HS依赖性FGFR信号传导的调节。同样,用NaClO培养胚泡可消除GATA6阳性原始内胚层祖细胞,产生均一的Nanog阳性内细胞团。从功能上讲,减少硫酸盐化可大大提高从头开始的ES细胞衍生效率。我们得出结论,FGF4信号传导需要N-硫酸盐化的HS,以维持ES细胞在异质状态下为分化而准备。抑制该途径有助于更幼稚的基态。干细胞2010; 28:191-200

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    《STEM CELLS》 |2010年第2期|191-200|共10页
  • 作者单位

    Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden|Program in Developmental and Stem Cell Biology, Research Institute, The Hospital for Sick Children, Toronto, Ontario, Canada;

    Cancer Science Institute of Singapore, National University of Singapore, Singapore;

    Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden;

    Department of Medical Biochemistry and Microbiology, Biomedical Centre, Uppsala University Uppsala, Sweden;

    Singapore Immunology Network, Biopolis, Agency for Science, Technology and Research, Singapore;

    Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden;

    Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden|Cancer Science Institute of Singapore, National University of Singapore, Singapore;

    Program in Developmental and Stem Cell Biology, Research Institute, The Hospital for Sick Children, Toronto, Ontario, Canada|Department of Obstetrics and Gynecology, University of Toronto, Toronto, Ontario, Canada;

    Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden;

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