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RSPO/LGR信号传导调节成年海马神经干细胞的增殖。

RSPO/LGR signaling regulates proliferation of adult hippocampal neural stem cells.

作者信息

Valenzuela-Bezanilla Daniela, Mardones Muriel D, Galassi Maximiliano, Arredondo Sebastian B, Santibanez Sebastian H, Gutierrez-Jimenez Stephanie, Merino-Véliz Nicolás, Bustos Fernando J, Varela-Nallar Lorena

机构信息

Institute of Biomedical Sciences (ICB), Faculty of Medicine and Faculty of Life Sciences, Universidad Andres Bello, 8370071 Santiago, Chile.

Millennium Nucleus of Neuroepigenetics and Plasticity (EpiNeuro), 8370071 Santiago, Chile.

出版信息

Stem Cells. 2025 Jan 17;43(1). doi: 10.1093/stmcls/sxae065.

Abstract

In the dentate gyrus of the adult hippocampus, neurogenesis from neural stem cells (NSCs) is regulated by Wnt signals from the local microenvironment. The Wnt/β-catenin pathway is active in NSCs, where it regulates proliferation and fate commitment, and subsequently its activity is strongly attenuated. The mechanisms controlling Wnt activity are poorly understood. In stem cells from adult peripheral tissues, secreted R-spondin proteins (RSPO1-4) interact with LGR4-6 receptors and control Wnt signaling strength. Here, we found that RSPO1-3 and LGR4-6 are expressed in the adult dentate gyrus and in cultured NSCs isolated from the adult mouse hippocampus. LGR4-5 expression decreased in cultured NSCs upon differentiation, concomitantly with the reported decrease in Wnt activity. Treatment with RSPO1-3 increased NSC proliferation and the expression of Cyclin D1 but did not induce the expression of Axin2 or RNF43, 2 well-described Wnt target genes. However, RSPOs enhanced the effect of Wnt3a on Axin2 and RNF43 expression as well as on Wnt/β-catenin reporter activity, indicating that they can potentiate Wnt activity in NSCs. Moreover, RSPO1-3 was found to be expressed by cultured dentate gyrus astrocytes, a crucial component of the neurogenic niche. In co-culture experiments, the astrocyte-induced proliferation of NSCs was prevented by RSPO2 knockdown in astrocytes and LGR5 knockdown in hippocampal NSCs. Additionally, RSPO2 knockdown in the adult mouse dentate gyrus reduced proliferation of neural stem and progenitor cells in vivo. Altogether, our results indicate that RSPO/LGR signaling is present in the dentate gyrus and plays a crucial role in regulating neural precursor cell proliferation.

摘要

在成年海马体的齿状回中,神经干细胞(NSCs)的神经发生受局部微环境中的Wnt信号调控。Wnt/β-连环蛋白通路在神经干细胞中具有活性,可调节细胞增殖和命运决定,随后其活性会大幅减弱。目前对控制Wnt活性的机制了解甚少。在成体周围组织的干细胞中,分泌型R-spondin蛋白(RSPO1-4)与LGR4-6受体相互作用并控制Wnt信号强度。在此,我们发现RSPO1-3和LGR4-6在成年齿状回以及从成年小鼠海马体分离出的培养神经干细胞中均有表达。培养的神经干细胞分化时,LGR4-5的表达下降,同时Wnt活性也如报道的那样降低。用RSPO1-3处理可增加神经干细胞的增殖以及细胞周期蛋白D1的表达,但不会诱导Axin2或RNF43(两个已充分描述的Wnt靶基因)的表达。然而,RSPO蛋白增强了Wnt3a对Axin2和RNF43表达以及对Wnt/β-连环蛋白报告基因活性的影响,表明它们可增强神经干细胞中的Wnt活性。此外,发现RSPO1-3由培养的齿状回星形胶质细胞表达,星形胶质细胞是神经发生微环境的关键组成部分。在共培养实验中,星形胶质细胞诱导的神经干细胞增殖可通过星形胶质细胞中RSPO2的敲低以及海马神经干细胞中LGR5的敲低来阻止。此外,成年小鼠齿状回中RSPO2的敲低会降低体内神经干细胞和祖细胞的增殖。总之,我们的结果表明RSPO/LGR信号存在于齿状回中,在调节神经前体细胞增殖中起关键作用。

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