P2X7是一种古老的清道夫受体,可识别早期人类神经发生中凋亡的神经母细胞

B. Gu, M. Lovelace, M. Weible, D. Allen, S. Eamegdool, J. Wiley
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引用次数: 7

摘要

P2X7受体在成人中枢神经系统中的表达和功能已被广泛研究,然而,这些嘌呤能受体在人类神经发育中的作用主要集中在受体激活的作用上。先前对胚胎和成年啮齿动物神经前体的研究表明,三磷酸腺苷(ATP)是P2X受体的生理激动剂,可以通过细胞内钙([ca2 +] i)信号介导增殖、迁移和分化的有效调节剂。P2X7受体在体内分布广泛,但在巨噬细胞和小胶质细胞中最为丰富,其被ATP激活导致促炎细胞因子的分泌。然而,中枢神经系统的细胞外ATP浓度通常在亚微摩尔水平,这表明在中枢神经系统的生理环境下,ATP诱导的P2X7受体的激活不会发生。最近对巨噬细胞和神经前体细胞的研究提出了P2X7受体的另一个可能作用。在这些研究中,P2X7受体被证明是一种清除受体,即存在于吞噬细胞上的一种受体,它检测存在于凋亡细胞表面的分子并促进凋亡细胞的吞噬。在最近的一项研究中,从16-19岁的人胎儿端脑分离的人神经前体细胞(hNPCs)和神经母细胞,我们的研究小组发现P2X7R高/DCX低hNPCs和P2X7R高/DCX高的神经母细胞能够吞噬一系列靶点,包括乳胶珠、凋亡的ReN细胞和凋亡的神经母细胞。我们发现这些神经母细胞及其前体细胞在其细胞表面表达功能性P2X7受体。尽管P2X7在神经母细胞中广泛表达,但P2X7表达最高的是那些DCX +神经母细胞,它们对自身凋亡的邻近细胞或其他吞噬靶点(包括乳胶珠和凋亡的ReNcells)具有积极的吞噬作用。P2X7高水平神经母细胞与ATP或氧化ATP的预孵育可抑制这些细胞对目标细胞的吞噬。此外,siRNA敲低P2X7R也能抑制凋亡靶点的吞噬。本文综述了P2X7受体在人类早期神经发生中的新作用。
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P2X7 is an archaic scavenger receptor recognizing apoptotic neuroblasts in early human neurogenesis
The expression and function of P2X7 receptors in adult CNS have been widely studied, however, the roles of these purinergic receptors in human neural development has largely focused on the effects of receptor activation. Previous studies of embryonic and adult rodent neural precursors suggest adenosine triphosphate (ATP), the physiological agonist for P2X receptors, can act as a potent modifier of proliferation, migration and differentiation, mediated via intracellular calcium ([Ca 2+ ] i ) signaling. The P2X7 receptor has a ubiquitous distribution in the body but is most abundant on macrophages and microglia where its activation by ATP leads to secretion of proinflammatory cytokines. However, extracellular ATP concentrations in the CNS are usually at sub-micromolar levels suggesting that ATP-induced activation of the P2X7 receptor will not occur under physiological circumstances in the CNS. Another possible role for P2X7 receptors has been suggested by recent work on macrophages and neural precursor cells. In these studies the P2X7 receptor was shown to act as a scavenger receptor i.e. a receptor present on a phagocytotic cell which detects molecules present on the surface of apoptotic cells and facilitates phagocytosis of the apoptotic cell. In a recent study of human neural precursor cells (hNPCs) and neuroblasts isolated from human fetal telencephalons at 16-19 WG, our group showed that both P2X7R high /DCX low hNPCs and P2X7R high /DCX high neuroblasts were capable of phagocytic engulfment of a range of targets including latex beads, apoptotic ReN cells and apoptotic neuroblasts. We found that these neuroblasts and their precursor cells expressed functional P2X7 receptors on their cell surface. Although expression of P2X7 is widespread in the cells of the neuroblast, it is those DCX + neuroblasts with the highest expression of P2X7 which are actively phagocytic towards an autologous apoptotic neighbour or other phagocytic targets, including latex beads and apoptotic ReNcells. Pre-incubation of P2X7 high neuroblasts with ATP or oxidized ATP inhibited phagocytosis of targets by these cells. Moreover siRNA knockdown of P2X7R also inhibited phagocytosis of the apoptotic targets. This review considers this major new role for the P2X7 receptor in early human neurogenesis.
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