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经典补体级联反应介导中枢神经系统突触消除。

The classical complement cascade mediates CNS synapse elimination.

作者信息

Stevens Beth, Allen Nicola J, Vazquez Luis E, Howell Gareth R, Christopherson Karen S, Nouri Navid, Micheva Kristina D, Mehalow Adrienne K, Huberman Andrew D, Stafford Benjamin, Sher Alexander, Litke Alan M, Lambris John D, Smith Stephen J, John Simon W M, Barres Ben A

机构信息

Department of Neurobiology, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

Cell. 2007 Dec 14;131(6):1164-78. doi: 10.1016/j.cell.2007.10.036.

Abstract

During development, the formation of mature neural circuits requires the selective elimination of inappropriate synaptic connections. Here we show that C1q, the initiating protein in the classical complement cascade, is expressed by postnatal neurons in response to immature astrocytes and is localized to synapses throughout the postnatal CNS and retina. Mice deficient in complement protein C1q or the downstream complement protein C3 exhibit large sustained defects in CNS synapse elimination, as shown by the failure of anatomical refinement of retinogeniculate connections and the retention of excess retinal innervation by lateral geniculate neurons. Neuronal C1q is normally downregulated in the adult CNS; however, in a mouse model of glaucoma, C1q becomes upregulated and synaptically relocalized in the adult retina early in the disease. These findings support a model in which unwanted synapses are tagged by complement for elimination and suggest that complement-mediated synapse elimination may become aberrantly reactivated in neurodegenerative disease.

摘要

在发育过程中,成熟神经回路的形成需要选择性消除不适当的突触连接。我们在此表明,经典补体级联反应中的起始蛋白C1q由出生后的神经元表达,以响应未成熟的星形胶质细胞,并定位于整个出生后中枢神经系统和视网膜的突触。缺乏补体蛋白C1q或下游补体蛋白C3的小鼠在中枢神经系统突触消除方面表现出持续的重大缺陷,视网膜-膝状体连接的解剖学精细化失败以及外侧膝状体神经元保留过多的视网膜神经支配就表明了这一点。神经元C1q在成年中枢神经系统中通常会下调;然而,在青光眼小鼠模型中,C1q在疾病早期就会在成年视网膜中上调并重新定位于突触。这些发现支持了一种模型,即不需要的突触被补体标记以进行消除,并表明补体介导的突触消除可能在神经退行性疾病中异常重新激活。

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