Department of Pharmacology, Hershey Center for Applied Research, Penn State College of Medicine, University Drive, Hershey, Pennsylvania 17033, USA.
J Neurochem. 2010 Jun;113(6):1577-88. doi: 10.1111/j.1471-4159.2010.06719.x. Epub 2010 Mar 31.
Decreased cognitive performance reduces independence and quality of life for aging individuals. Healthy brain aging does not involve significant neuronal loss, but little is known about the effects of aging at synaptic terminals. Age-related cognitive decline likely reflects the manifestation of dysregulated synaptic function and ineffective neurotransmission. In this study, hippocampal synaptosomes were enriched from young-adult (3 months), adult (12 months), and aged (26 months) Fischer 344 x Brown Norway rats, and quantitative alterations in the synaptoproteome were examined by 2-DIGE and MS/MS. Bioinformatic analysis of differentially expressed proteins identified a significant effect of aging on a network of neurotransmission-regulating proteins. Specifically, altered expression of DNM1, HPCA, PSD95, SNAP25, STX1, SYN1, SYN2, SYP, and VAMP2 was confirmed by immunoblotting. 14-3-3 isoforms identified in the proteomic analysis were also confirmed as a result of their implication in the regulation of the synaptic vesicle cycle and neurotransmission modulation. The findings of this study demonstrate a coordinated down-regulation of neurotransmission-regulating proteins that suggests an age-based deterioration of hippocampal neurotransmission occurring between adulthood and advanced age. Altered synaptic protein expression may decrease stimulus-induced neurotransmission and vesicle replenishment during prolonged or intense stimulation, which are necessary for learning and the formation and perseverance of memory.
认知表现下降会降低衰老个体的独立性和生活质量。健康的大脑衰老不会涉及到明显的神经元丧失,但人们对突触末梢衰老的影响知之甚少。与年龄相关的认知能力下降可能反映了突触功能失调和神经递质传递无效的表现。在这项研究中,我们从年轻成年(3 个月)、成年(12 个月)和老年(26 个月)Fischer 344xBrownNorway 大鼠中富集了海马突触体,并通过 2-DIGE 和 MS/MS 检查了突触蛋白组的定量变化。差异表达蛋白的生物信息学分析确定了衰老对神经递质调节蛋白网络的显著影响。具体来说,通过免疫印迹证实了 DNM1、HPCA、PSD95、SNAP25、STX1、SYN1、SYN2、SYP 和 VAMP2 的表达发生改变。蛋白质组分析中鉴定的 14-3-3 同工型也被证实与其参与调节突触囊泡循环和神经递质调制有关。这项研究的结果表明,神经递质调节蛋白的协调下调表明成年期和老年期之间海马神经传递的年龄相关性恶化。突触蛋白表达的改变可能会降低在长时间或强烈刺激期间的刺激诱导的神经递质传递和囊泡补充,这对于学习和记忆的形成和维持是必要的。