首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Complete sequence of a novel protein containing a femtomolar-activity-dependent neuroprotective peptide.
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Complete sequence of a novel protein containing a femtomolar-activity-dependent neuroprotective peptide.

机译:包含飞摩尔活性依赖性神经保护肽的新型蛋白质的完整序列。

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摘要

The vulnerability of neurons and the irreversibility of loss make discoveries of neuroprotective compounds fundamentally important. Here, the complete coding sequence of a novel protein (828 amino acids, pI 5.99), derived from mouse neuroglial cells, is revealed. The sequence contained (1) a neuroprotective peptide, NAPVSIPQ, sharing structural and immunological homologies with the previously reported, activity-dependent neurotrophic factor; (2) a glutaredoxin active site; and (3) a zinc binding domain. Gene expression was enriched in the mouse hippocampus and cerebellum and augmented in the presence of the neuropeptide vasoactive intestinal peptide, in cerebral cortical astrocytes. In mixed neuron-astrocyte cultures, NAPVSIPQ provided neuroprotection at subfemtomolar concentrations against toxicity associated with tetrodotoxin (electrical blockade), the beta-amyloid peptide (the Alzheimer's disease neurotoxin), N-methyl-D-aspartate (excitotoxicity), and the human immunodeficiency virus envelope protein. Daily NAPVSIPQ injections to newborn apolipoprotein E-deficient mice accelerated the acquisition of developmental reflexes and prevented short-term memory deficits. Comparative studies suggested that NAPVSIPQ was more efficacious than other neuroprotective peptides in the apolipoprotein E-deficiency model. A potential basis for rational drug design against neurodegeneration is suggested with NAPVSIPQ as a lead compound. The relative enrichment of the novel mRNA transcripts in the brain and the increases found in the presence of vasoactive intestinal peptide, an established neuroprotective substance, imply a role for the cloned protein in neuronal function.
机译:神经元的脆弱性和损失的不可逆性使得发现神经保护性化合物至关重要。在这里,揭示了源自小鼠神经胶质细胞的一种新型蛋白质的完整编码序列(828个氨基酸,pI 5.99)。该序列包含(1)神经保护肽NAPVSIPQ,与先前报道的活性依赖性神经营养因子具有结构和免疫同源性; (2)戊二醛活性位点; (3)锌结合域。在大脑皮层星形胶质细胞中,基因表达在小鼠海马和小脑中富集,并在存在神经肽血管活性肠肽的情况下增强。在混合的神经元-星形细胞培养物中,NAPVSIPQ以亚飞摩尔浓度提供神经保护作用,以防止与河豚毒素(电封锁),β-淀粉样肽(阿尔茨海默氏病神经毒素),N-甲基-D-天冬氨酸(兴奋性毒性)和人体免疫缺陷相关的毒性病毒包膜蛋白。每天向新生的载脂蛋白E缺乏症小鼠注射NAPVSIPQ可以加速发育反射的获得并预防短期记忆缺陷。比较研究表明,在载脂蛋白E缺乏症模型中,NAPVSIPQ比其他神经保护肽更有效。建议以NAPVSIPQ为先导化合物来合理设计抗神经退行性疾病的药物。大脑中新型mRNA转录物的相对富集以及存在血管活性肠肽(一种已确立的神经保护物质)的情况下发现的这种含量的增加暗示了克隆蛋白在神经元功能中的作用。

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