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补体C5的遗传性缺陷与强化的神经退行性反应相关,这暗示了补体系统在神经元和星形胶质细胞功能中具有新作用。

Hereditary deficiencies in complement C5 are associated with intensified neurodegenerative responses that implicate new roles for the C-system in neuronal and astrocytic functions.

作者信息

Pasinetti G M, Tocco G, Sakhi S, Musleh W D, DeSimoni M G, Mascarucci P, Schreiber S, Baudry M, Finch C E

机构信息

Mount Sinai Medical Center, Department of Psychiatry, New York, New York, USA.

出版信息

Neurobiol Dis. 1996;3(3):197-204. doi: 10.1006/nbdi.1996.0020.

Abstract

Possible roles of the complement (C) system in the normal and injured brain were explored with inbred mice that carried a frameshift mutation in the C5 gene. A congenic pair was used: the C5-sufficient (C5+) B10.D2/nSnJ strain with the functional allele (Hc1) from the C57BL/10J donor strain was compared with the C5-deficient (C5-) B10.D2/oSnJ with the Hc0 allele from the C5-deficient DBA/2J donor strain. In response to the excitotoxin kainic acid (KA), C5- mice had more hippocampal pyramidal neuron death and greater induction of astrocyte mRNAs (GFAP, apoE, apoJ). In primary astrocyte cultures from unlesioned mice, an inflammatory stimulus (LPS) caused greater production of IL-6 and TNF production in C5- mice. These enhanced responses to KA and LPS suggest that hereditary C5 deficits modify responses to neurodegenerative stimuli of neurons and astrocytes. Moreover, unlesioned C5- mice had smaller input-output slopes for the NMDA component of the EPSP amplitude, but enhanced the Ca(+2)-dependent AMPA binding. Thus, C5 deficits also modify basal properties of glutamatergic neurotransmission that pertain to synaptic plasticity. These findings are also discussed in relation to roles of the C-system in Alzheimer disease (AD). C5 deficiencies may also be considered in the choice of strains as transgene hosts and for genetic analysis of normal and pathological brain functions. In recent transgenic studies for AD, C5- hosts showed greater neurodegeneration, consistent with the present data. These pleiotropic associations of C5 deficiency indicate roles for the C-system in neurodegeneration, but also in normal neural functions.

摘要

利用携带C5基因移码突变的近交系小鼠,探讨补体(C)系统在正常和损伤大脑中的可能作用。使用了一组同源系:将具有来自C57BL/10J供体品系功能等位基因(Hc1)的C5充足(C5+)B10.D2/nSnJ品系与具有来自C5缺陷型DBA/2J供体品系Hc0等位基因的C5缺陷(C5-)B10.D2/oSnJ品系进行比较。对兴奋性毒素红藻氨酸(KA)的反应中,C5-小鼠海马锥体神经元死亡更多,星形胶质细胞mRNA(GFAP、apoE、apoJ)的诱导更强。在未损伤小鼠的原代星形胶质细胞培养物中,炎症刺激(LPS)导致C5-小鼠中IL-6和TNF的产生增加。对KA和LPS的这些增强反应表明,遗传性C5缺陷改变了神经元和星形胶质细胞对神经退行性刺激的反应。此外,未损伤的C5-小鼠EPSP幅度的NMDA成分的输入-输出斜率较小,但增强了Ca(+2)依赖性AMPA结合。因此,C5缺陷也改变了与突触可塑性相关的谷氨酸能神经传递的基础特性。还结合C系统在阿尔茨海默病(AD)中的作用讨论了这些发现。在选择品系作为转基因宿主以及对正常和病理脑功能进行遗传分析时,也可能需要考虑C5缺陷。在最近关于AD的转基因研究中,C5-宿主表现出更大的神经退行性变,与目前的数据一致。C5缺陷的这些多效性关联表明C系统在神经退行性变中起作用,但也在正常神经功能中起作用。

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