Kolodziej Angela, Schulz Stefan, Guyon Alice, Wu Dai-Fei, Pfeiffer Manuela, Odemis Veysel, Höllt Volker, Stumm Ralf
Institut für Pharmakologie und Toxikologie, Otto-von-Guericke-University Magdeburg, 39120 Magdeburg, Germany.
J Neurosci. 2008 Apr 23;28(17):4488-500. doi: 10.1523/JNEUROSCI.4721-07.2008.
Stromal-cell-derived factor-1 (SDF-1) and its receptor CXC chemokine receptor 4 (CXCR4) play a well-established role during embryonic development of dentate gyrus granule cells. However, little is known about the regulation and function of CXCR4 in the postnatal dentate gyrus. Here, we identify a striking mismatch between intense CXCR4 mRNA and limited CXCR4 protein expression in adult rat subgranular layer (SGL) neurons. We demonstrate that CXCR4 protein expression in SGL neurons is progressively lost during postnatal day 15 (P15) to P21. This loss of CXCR4 protein expression was paralleled by a reduction in the number of SDF-1-responsive SGL neurons and a massive upregulation of SDF-1 mRNA in granule cells. Intraventricular infusion of the CXCR4-antagonist AMD3100 dramatically increased CXCR4 protein expression in SGL neurons, suggesting that CXCR4 is tonically activated and downregulated by endogenous SDF-1. Infusion of AMD3100 also facilitated detection of CXCR4 protein in bromodeoxyuridine-, nestin-, and doublecortin-labeled cells and showed that the vast majority of adult-born granule cells transiently expressed CXCR4. Chronic AMD3100 administration impaired formation of new granule cells as well as neurogenesis-dependent long-term recognition of novel objects. Therefore, our findings suggest that tonic activation of CXCR4 in newly formed granule cells by endogenous SDF-1 is essential for neurogenesis-dependent long-term memory in the adult hippocampus.
基质细胞衍生因子-1(SDF-1)及其受体CXC趋化因子受体4(CXCR4)在齿状回颗粒细胞的胚胎发育过程中发挥着已被充分证实的作用。然而,关于CXCR4在出生后齿状回中的调节和功能却知之甚少。在此,我们发现成年大鼠颗粒下区(SGL)神经元中CXCR4 mRNA表达强烈与CXCR4蛋白表达有限之间存在明显的不匹配。我们证明,SGL神经元中CXCR4蛋白表达在出生后第15天(P15)至第21天逐渐丧失。CXCR4蛋白表达这种丧失与SDF-1反应性SGL神经元数量减少以及颗粒细胞中SDF-1 mRNA大量上调同时出现。脑室内注入CXCR4拮抗剂AMD3100显著增加了SGL神经元中CXCR4蛋白表达,这表明CXCR4受到内源性SDF-1的持续性激活并下调。注入AMD3100还促进了在溴脱氧尿苷、巢蛋白和双皮质素标记细胞中检测到CXCR4蛋白,并表明绝大多数成年新生颗粒细胞短暂表达CXCR4。长期给予AMD3100会损害新颗粒细胞的形成以及神经发生依赖性对新物体的长期识别。因此,我们的研究结果表明,内源性SDF-1对新形成颗粒细胞中CXCR4的持续性激活对于成年海马体中神经发生依赖性长期记忆至关重要。