TY - JOUR
T1 - Behavioral phenotyping of GFAP-ApoE3 and -ApoE4 transgenic mice
T2 - ApoE4 mice show profound working memory impairments in the absence of Alzheimer's-like neuropathology
AU - Hartman, R. E.
AU - Wozniak, D. F.
AU - Nardi, A.
AU - Olney, J. W.
AU - Sartorius, L.
AU - Holtzman, D. M.
N1 - Funding Information:
This work was supported in part by NIH Grants AG13956 (D.M.H.) and AG11355-06 (D.M.H., D.F.W., J.W.O.), Alzheimer’s Association Grant RG3-96-26 (D.M.H.), and a Paul Beeson Physician Faculty Scholar Award from the American Federation for Aging Research (D.M.H.).
PY - 2001
Y1 - 2001
N2 - For the purpose of studying the potential neurobehavioral effects of different human apolipoprotein E (apoE) isoforms produced within the brain, transgenic (TG) mice were generated in which human apoE3 or apoE4 isoforms were under control of an astrocyte-specific, glial fibrillary acidic protein promoter and these TG mice were bred back to apoE knockout (KO) mice. Behavioral phenotypes of apoE3 and apoE4 TG mice were derived by conducting a longitudinal study in which apoE3 and apoE4 TG mice were compared with apoE KO and wild-type (WT) mice (all male) on several behavioral measures. Analysis of locomotor activity, "open-field" behaviors, acoustic startle/prepulse inhibition, and elevated plus maze data suggested that the apoE TG/KO groups were more "emotionally reactive" than WT mice, with apoE4 mice typically being the most reactive. The absence of performance differences among groups on the rotating holeboard and water navigation tasks suggested intact reference memory processing in apoE TG/KO mice. However, apoE4 mice were profoundly impaired on a working memory-based protocol in the radial arm maze (11-14 months). Nonassociative factors (sensorimotor capacities or emotionality differences) did not appear to confound interpretation of the learning/memory results. Western blot analysis revealed no alterations in the level of synaptic, neuronal, or glial markers in neocortex or hippocampus and histologic analysis revealed no evidence of Aβ deposition or neuritic plaques in the apoE KO/TG mice. Our findings suggest that apoE4 expression in the brain may have selective deleterious effects on memory function in the absence of typical Alzheimer's-like neuropathology.
AB - For the purpose of studying the potential neurobehavioral effects of different human apolipoprotein E (apoE) isoforms produced within the brain, transgenic (TG) mice were generated in which human apoE3 or apoE4 isoforms were under control of an astrocyte-specific, glial fibrillary acidic protein promoter and these TG mice were bred back to apoE knockout (KO) mice. Behavioral phenotypes of apoE3 and apoE4 TG mice were derived by conducting a longitudinal study in which apoE3 and apoE4 TG mice were compared with apoE KO and wild-type (WT) mice (all male) on several behavioral measures. Analysis of locomotor activity, "open-field" behaviors, acoustic startle/prepulse inhibition, and elevated plus maze data suggested that the apoE TG/KO groups were more "emotionally reactive" than WT mice, with apoE4 mice typically being the most reactive. The absence of performance differences among groups on the rotating holeboard and water navigation tasks suggested intact reference memory processing in apoE TG/KO mice. However, apoE4 mice were profoundly impaired on a working memory-based protocol in the radial arm maze (11-14 months). Nonassociative factors (sensorimotor capacities or emotionality differences) did not appear to confound interpretation of the learning/memory results. Western blot analysis revealed no alterations in the level of synaptic, neuronal, or glial markers in neocortex or hippocampus and histologic analysis revealed no evidence of Aβ deposition or neuritic plaques in the apoE KO/TG mice. Our findings suggest that apoE4 expression in the brain may have selective deleterious effects on memory function in the absence of typical Alzheimer's-like neuropathology.
KW - Alzheimer's disease
KW - Apolipoprotein E
KW - Emotionality
KW - Knockout mice
KW - Reference memory
KW - Sensorimotor
KW - Spatial learning and memory
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U2 - 10.1006/exnr.2001.7715
DO - 10.1006/exnr.2001.7715
M3 - Article
C2 - 11476599
SN - 0014-4886
VL - 170
SP - 326
EP - 344
JO - Experimental Neurology
JF - Experimental Neurology
IS - 2
ER -