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补体蛋白 C3 抑制轴突生长并促进神经元丢失。

Complement Protein C3 Suppresses Axon Growth and Promotes Neuron Loss.

机构信息

Sue & Bill Gross Stem Cell Center, University of California, Irvine, Irvine, CA, 92697, USA.

Institute for Memory Impairments and Neurological Disorders, University of California, Irvine, Irvine, CA, 92697, USA.

出版信息

Sci Rep. 2017 Oct 10;7(1):12904. doi: 10.1038/s41598-017-11410-x.

Abstract

The inflammatory response to spinal cord injury (SCI) involves localization and activation of innate and adaptive immune cells and proteins, including the complement cascade. Complement C3 is important for the classical, alternative, and lectin pathways of complement activation, and its cleavage products C3a and C3b mediate several functions in the context of inflammation, but little is known about the potential functions of C3 on regeneration and survival of injured neurons after SCI. We report that 6 weeks after dorsal hemisection with peripheral conditioning lesion, C3 mice demonstrated a 2-fold increase in sensory axon regeneration in the spinal cord in comparison to wildtype C3 mice. In vitro, addition of C3 tripled both myelin-mediated neurite outgrowth inhibition and neuron loss versus myelin alone, and ELISA experiments revealed that myelin serine proteases cleave C3 to generate active fragments. Addition of purified C3 cleavage products to cultured neurons suggested that C3b is responsible for the growth inhibitory and neurotoxic or anti-adhesion activities of C3. These data indicate that C3 reduces neurite outgrowth and neuronal viability in vitro and restricts axon regeneration in vivo, and demonstrate a novel, non-traditional role for this inflammatory protein in the central nervous system.

摘要

脊髓损伤 (SCI) 的炎症反应涉及固有和适应性免疫细胞和蛋白质的定位和激活,包括补体级联。补体 C3 对补体激活的经典、替代和凝集素途径很重要,其裂解产物 C3a 和 C3b 在炎症背景下介导几种功能,但对于 C3 在 SCI 后损伤神经元的再生和存活中的潜在功能知之甚少。我们报告说,在背侧半切伴外周条件性损伤后 6 周,与野生型 C3 小鼠相比,C3 小鼠的脊髓中感觉轴突再生增加了 2 倍。在体外,与单独的髓鞘相比,C3 使髓鞘介导的神经突生长抑制和神经元丢失增加了两倍,ELISA 实验表明髓鞘丝氨酸蛋白酶将 C3 裂解生成活性片段。将纯化的 C3 裂解产物添加到培养的神经元中表明 C3b 负责 C3 的生长抑制和神经毒性或抗黏附活性。这些数据表明 C3 在体外减少神经突生长和神经元活力,并限制体内轴突再生,并证明这种炎症蛋白在中枢神经系统中具有新的、非传统的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cf7/5635131/ca18a2e15a76/41598_2017_11410_Fig1_HTML.jpg

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