Adelöf Julia, Andersson My, Porritt Michelle, Petersen Anne, Zetterberg Madeleine, Wiseman John, Hernebring Malin
Department of Clinical Neuroscience, Institute of Neuroscience and Physiology, Sahlgrenska Academy at the University of Gothenburg, Gothenburg, Sweden.
IMED Biotech Unit, Discovery Biology, Discovery Sciences, AstraZeneca, Gothenburg, Sweden.
BMC Neurosci. 2018 Nov 6;19(1):70. doi: 10.1186/s12868-018-0468-2.
The proteasome system plays an important role in synaptic plasticity. Induction and maintenance of long term potentiation is directly dependent on selective targeting of proteins for proteasomal degradation. The 20S proteasome activator PA28αβ activates hydrolysis of small nonubiquitinated peptides and possesses protective functions upon oxidative stress and proteinopathy. The effect of PA28αβ activity on behavior and memory function is, however, not known. We generated a mouse model that overexpresses PA28α (PA28αOE) to understand PA28αβ function during healthy adult homeostasis via assessment of physiological and behavioral profiles, focusing on female mice.
PA28α and PA28β protein levels were markedly increased in all PA28αOE tissues analyzed. PA28αOE displayed reduced depressive-like behavior in the forced swim test and improved memory/learning function assessed by intersession habituation in activity box and shuttle box passive avoidance test, with no significant differences in anxiety or general locomotor activity. Nor were there any differences found when compared to WT for body composition or immuno-profile. The cognitive effects of PA28αOE were female specific, but could not be explained by alterations in estrogen serum levels or hippocampal regulation of estrogen receptor β. Further, there were no differences in hippocampal protein expression of neuronal or synaptic markers between PA28αOE and WT. Biochemical analysis of hippocampal extracts demonstrated that PA28α overexpression did not increase PA28-20S peptidase activity or decrease K48-polyubiquitin levels. Instead, PA28αOE exhibited elevated efficiency in preventing aggregation in the hippocampus.
This study reveals, for the first time, a connection between PA28αβ and neuronal function. We found that PA28α overexpressing female mice displayed reduced depressive-like behavior and enhanced learning and memory. Since the positive effects of PA28α overexpression arose without an activation of 20S proteasome capacity, they are likely independent of PA28αβ's role as a 20S proteasome activator and instead depend on a recognized chaperone-like function. These findings suggest that proteostasis in synaptic plasticity is more diverse than previously reported, and demonstrates a novel function of PA28αβ in the brain.
蛋白酶体系统在突触可塑性中起重要作用。长期增强的诱导和维持直接依赖于蛋白质被蛋白酶体降解的选择性靶向。20S蛋白酶体激活剂PA28αβ可激活小的非泛素化肽的水解,并在氧化应激和蛋白病时具有保护功能。然而,PA28αβ活性对行为和记忆功能的影响尚不清楚。我们构建了一种过表达PA28α(PA28αOE)的小鼠模型,通过评估生理和行为特征,重点关注雌性小鼠,以了解健康成年稳态期间PA28αβ的功能。
在所有分析的PA28αOE组织中,PA28α和PA28β蛋白水平显著升高。PA28αOE在强迫游泳试验中表现出减少的抑郁样行为,并在活动箱中的会话间习惯化和穿梭箱被动回避试验中评估的记忆/学习功能得到改善,在焦虑或一般运动活动方面无显著差异。与野生型相比,在身体组成或免疫特征方面也未发现任何差异。PA28αOE的认知作用具有雌性特异性,但无法通过雌激素血清水平的改变或海马体对雌激素受体β的调节来解释。此外,PA28αOE和野生型之间在海马体中神经元或突触标志物的蛋白质表达上没有差异。海马体提取物的生化分析表明,PA28α的过表达并未增加PA28-20S肽酶活性或降低K48-多聚泛素水平。相反,PA28αOE在预防海马体中的聚集方面表现出更高的效率。
本研究首次揭示了PA28αβ与神经元功能之间的联系。我们发现过表达PA28α的雌性小鼠表现出减少的抑郁样行为和增强的学习与记忆能力。由于PA28α过表达的积极作用在未激活20S蛋白酶体能力的情况下出现,它们可能独立于PA28αβ作为20S蛋白酶体激活剂的作用,而是依赖于一种公认的伴侣样功能。这些发现表明,突触可塑性中的蛋白质稳态比以前报道的更加多样化,并证明了PA28αβ在大脑中的一种新功能。