Hadassah Human Embryonic Stem Cell Research Center, Goldyne Savad Institute of Gene Therapy, Hadassah University Medical Center, Jerusalem, Israel.
J Immunol. 2010 Feb 1;184(3):1300-8. doi: 10.4049/jimmunol.0804261. Epub 2009 Dec 23.
Human embryonic stem cells (hESCs) can proliferate extensively in culture and give rise to progeny of the three germ layers. Several reports suggested that mouse and hESCs may attenuate immune responses. In this study, we focused on the mechanism by which hESCs inhibit T cell responses. Using coculture experiments, we demonstrate that hESCs inhibit cytokine secretion and T cell proliferation in response to potent T cell activators. Furthermore, we show that hESCs downmodulate the TCR-associated CD3-zeta chain. These effects are maintained when hESCs are replaced by their conditioned media and can be restored by the addition of L-arginine to hESC-conditioned media or by treatment of hESCs with a specific arginase inhibitor. Moreover, we show arginase-I expression and activity in hESCs. We further demonstrate that mouse ESCs (mESCs) similarly inhibit T cell activation via arginase I, suggesting an evolutionary conserved mechanism of T cell suppression by ESCs. In addition, we demonstrate that arginase I expression is not limited to ESCs in culture, but can also be detected in the inner cell mass and the trophectoderm of preimplantation mouse embryos and hESC-derived trophectoderm cells. Finally, T cells infiltrating ESC-derived teratomas have significantly lower levels of CD3-zeta chain. Collectively, the data indicate a role for ESC-arginase I activity in the attenuation of T cell activation.
人类胚胎干细胞(hESCs)可以在培养中广泛增殖,并产生三个胚层的后代。有几项报告表明,鼠和 hESCs 可能会减弱免疫反应。在这项研究中,我们专注于 hESCs 抑制 T 细胞反应的机制。通过共培养实验,我们证明 hESCs 抑制 T 细胞激活剂诱导的细胞因子分泌和 T 细胞增殖。此外,我们还表明 hESCs 下调 TCR 相关的 CD3-zeta 链。当用其条件培养基替代 hESCs 时,这些作用得以维持,并且可以通过向 hESC 条件培养基中添加 L-精氨酸或用特异性精氨酸酶抑制剂处理 hESCs 来恢复这些作用。此外,我们证明 hESCs 表达和具有精氨酸酶-I 活性。我们进一步证明鼠 ESCs(mESCs)通过精氨酸酶-I 类似地抑制 T 细胞激活,这表明 ESCs 抑制 T 细胞的机制在进化上是保守的。此外,我们还证明精氨酸酶-I 的表达不仅限于培养中的 ESCs,而且还可以在植入前鼠胚胎的内细胞团和滋养外胚层以及 hESC 衍生的滋养外胚层细胞中检测到。最后,浸润 ESC 衍生的畸胎瘤的 T 细胞的 CD3-zeta 链水平明显较低。总的来说,这些数据表明 ESC-精氨酸酶-I 活性在 T 细胞激活的减弱中起作用。