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Autoantibodies to synapsin I sequestrate synapsin I and alter synaptic function

机译:Synapsin iCapstrate Synapsin I和ALTER SYNAPTIC函数的自身抗体

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摘要

Synapsin I is a phosphoprotein that coats the cytoplasmic side of synaptic vesicles and regulates their trafficking within nerve terminals. Autoantibodies against Syn I have been described in sera and cerebrospinal fluids of patients with numerous neurological diseases, including limbic encephalitis and clinically isolated syndrome; however, the effects and fate of autoantibodies in neurons are still unexplored. We found that in vitro exposure of primary hippocampal neurons to patient's autoantibodies to SynI decreased the density of excitatory and inhibitory synapses and impaired both glutamatergic and GABAergic synaptic transmission. These effects were reproduced with a purified SynI antibody and completely absent in SynI knockout neurons. Autoantibodies to SynI are internalized by FcγII/III-mediated endocytosis, interact with endogenous SynI, and promote its sequestration and intracellular aggregation. Neurons exposed to human autoantibodies to SynI display a reduced density of SVs, mimicking the SynI loss-of-function phenotype. Our data indicate that autoantibodies to intracellular antigens such as SynI can reach and inactivate their targets and suggest that an antibody-mediated synaptic dysfunction may contribute to the evolution and progression of autoimmune-mediated neurological diseases positive for SynI autoantibodies.
机译:Synapsin I是一种磷酸蛋白,涂覆突触囊泡的细胞质侧,并调节其在神经终端内的贩运。患有SYN I的自身抗体已在血清和脑脊液的血清和脑脊液中描述,包括肢体脑炎和临床孤立综合征;然而,神经元中自身抗体的效果和命运仍然是未开发的。我们发现,原发性海马神经元的体外暴露于患者的自身抗体,同步减少了兴奋性和抑制突触的密度,并且损害了谷氨酸和GABAergic突触传递。用纯化的Syni抗体再现这些效果,并且完全不存在于Syni敲除神经元中。同步的自身抗体由FCγII/ III介导的内吞作用内化,与内源性同步相互作用,促进其螯合和细胞内聚集。暴露于人类自身抗体的神经元以Syni显示出降低的SV密度,模仿同步函数表型。我们的数据表明,对细胞内抗原的自身抗体可以达到和灭活其靶标,并表明抗体介导的突触功能障碍可能有助于自身免疫介导的神经疾病阳性的自身免疫介导的神经疾病的进展。

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