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老年大鼠的空间记忆与M1受体的PKCγ依赖性G蛋白偶联有关。

Spatial memory in aged rats is related to PKCgamma-dependent G-protein coupling of the M1 receptor.

作者信息

Rossi M A, Mash D C, deToledo-Morrell L

机构信息

Department of Neurological Sciences, Rush University Medical Center, Suite 334 Murdoch Building, 1653 West Congress Parkway, Chicago, IL 60612, USA.

出版信息

Neurobiol Aging. 2005 Jan;26(1):53-68. doi: 10.1016/j.neurobiolaging.2004.02.029.

Abstract

In the present study, individual differences in spatial memory in aged Fischer 344 (F344) rats were associated with the extent of G-protein coupling of the M1 muscarinic receptor and the dendritic-to-somal ratio of hippocampal PKCgamma (d/sPKCgamma) immunogenicity. Following testing in the eight-arm radial maze task, 7 young and 13 aged rat brains were sectioned through the dorsal hippocampal formation (HF). G-protein coupling of the M1 receptor was assessed autoradiographically using competition binding studies in the presence and absence of a G-protein uncoupler to determine high (K(H)) and low (K(L)) affinity states for agonist in the HF, neocortex, and amygdala. In aged animals, a relationship between choice accuracy in the maze and K(H), a measure of M1 receptor-G-protein coupling was seen in the dentate gyrus, CA3, CA1, and neocortex. Furthermore, choice accuracy and d/sPKCgamma immunogenicity showed a significant relationship in CA1. Lastly, a correlation was seen in the CA1 of aged animals between K(H) and d/sPKCgamma. These relationships did not hold for the amygdala. Thus, individual differences in a naturally occurring age-dependent disruption of cholinergic-PKCgamma signal transduction is associated with spatial memory dysfunction.

摘要

在本研究中,老年Fischer 344(F344)大鼠空间记忆的个体差异与M1毒蕈碱受体的G蛋白偶联程度以及海马PKCγ(d/sPKCγ)免疫原性的树突与胞体比率有关。在八臂放射状迷宫任务中进行测试后,对7只年轻大鼠和13只老年大鼠的大脑进行切片,穿过背侧海马结构(HF)。使用竞争结合研究通过放射自显影评估M1受体的G蛋白偶联,在存在和不存在G蛋白解偶联剂的情况下,以确定HF、新皮层和杏仁核中激动剂的高亲和力(K(H))和低亲和力(K(L))状态。在老年动物中,在齿状回、CA3、CA1和新皮层中观察到迷宫中的选择准确性与K(H)(一种M1受体 - G蛋白偶联的测量指标)之间的关系。此外,在CA1中选择准确性与d/sPKCγ免疫原性显示出显著关系。最后,在老年动物的CA1中观察到K(H)与d/sPKCγ之间存在相关性。这些关系在杏仁核中不成立。因此,胆碱能 - PKCγ信号转导自然发生的年龄依赖性破坏中的个体差异与空间记忆功能障碍有关。

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