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抗体 HS4C3 识别的 3-O-硫酸化肝素硫酸酯通过 fas 信号通路促进小鼠胚胎干细胞的分化。

3-O-sulfated heparan sulfate recognized by the antibody HS4C3 contributes [corrected] to the differentiation of mouse embryonic stem cells via fas signaling.

机构信息

Laboratory of Cell Biology, Department of Bioinformatics, Faculty of Engineering, Soka University, Hachioji, Tokyo, Japan.

出版信息

PLoS One. 2012;7(8):e43440. doi: 10.1371/journal.pone.0043440. Epub 2012 Aug 16.

Abstract

Maintenance of self-renewal and pluripotency in mouse embryonic stem cells (mESCs) is regulated by the balance between several extrinsic signaling pathways. Recently, we demonstrated that heparan sulfate (HS) chains play important roles in the maintenance and differentiation of mESCs by regulating extrinsic signaling. Sulfated HS structures are modified by various sulfotransferases during development. However, the significance of specific HS structures during development remains unclear. Here, we show that 3-O-sulfated HS structures synthesized by HS 3-O-sulfotransferases (3OSTs) and recognized by the antibody HS4C3 increase during differentiation of mESCs. Furthermore, expression of Fas on the cell surface of the differentiated cells also increased. Overexpression of the HS4C3-binding epitope in mESCs induced apoptosis and spontaneous differentiation even in the presence of LIF and serum. These data showed that the HS4C3-binding epitope was required for differentiation of mESCs. Up-regulation of the HS4C3-binding epitope resulted in the recruitment of Fas from the cytoplasm to lipid rafts on the cell surface followed by activation of Fas signaling. Indeed, the HS4C3-binding epitope interacted with a region that included the heparin-binding domain (KLRRRVH) of Fas. Reduced self-renewal capability in cells overexpressing 3OST resulted from the degradation of Nanog by activated caspase-3, which is downstream of Fas signaling, and was rescued by the inhibition of Fas signaling. We also found that knockdown of 3OST and inhibition of Fas signaling reduced the potential for differentiation into the three germ layers during embryoid body formation. This is the first demonstration that activation of Fas signaling is mediated by an increase in the HS4C3-binding epitope and indicates a novel signaling pathway for differentiation in mESCs.

摘要

维持小鼠胚胎干细胞(mESCs)的自我更新和多能性是由几种外在信号通路之间的平衡来调节的。最近,我们证明了肝素硫酸酯(HS)链通过调节外在信号在 mESC 的维持和分化中发挥重要作用。在发育过程中,各种硫酸转移酶修饰硫酸化 HS 结构。然而,特定 HS 结构在发育过程中的意义尚不清楚。在这里,我们显示由 HS 3-O-硫酸转移酶(3OSTs)合成并被抗体 HS4C3 识别的 3-O-硫酸化 HS 结构在 mESC 分化过程中增加。此外,分化细胞表面 Fas 的表达也增加。mESCs 中 HS4C3 结合表位的过表达即使在 LIF 和血清存在的情况下也会诱导细胞凋亡和自发分化。这些数据表明 HS4C3 结合表位是 mESC 分化所必需的。HS4C3 结合表位的上调导致 Fas 从细胞质招募到细胞膜上的脂筏,随后激活 Fas 信号。事实上,HS4C3 结合表位与 Fas 的肝素结合域(KLRRRVH)包括的区域相互作用。过表达 3OST 的细胞自我更新能力的降低是由于 Fas 信号下游的激活 caspase-3 降解了 Nanog,而 Fas 信号的抑制可以挽救这一情况。我们还发现,3OST 的敲低和 Fas 信号的抑制减少了胚胎体形成过程中向三个胚层分化的潜能。这是首次证明 Fas 信号的激活是通过 HS4C3 结合表位的增加介导的,并表明 mESCs 分化的一种新的信号通路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7493/3420900/e305b3e04ddc/pone.0043440.g001.jpg

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