Hippocampal Insulin Resistance Impairs Spatial Learning and Synaptic Plasticity

被引:242
作者
Grillo, Claudia A. [1 ]
Piroli, Gerardo G. [1 ]
Lawrence, Robert C. [1 ,2 ]
Wrighten, Shayna A. [1 ]
Green, Adrienne J. [1 ]
Wilson, Steven P. [1 ]
Sakai, Randall R. [3 ]
Kelly, Sandra J. [1 ,2 ]
Wilson, Marlene A. [1 ,4 ]
Mott, David D. [1 ]
Reagan, Lawrence P. [1 ,4 ]
机构
[1] Univ S Carolina, Sch Med, Dept Pharmacol Physiol & Neurosci, Columbia, SC 29208 USA
[2] Univ S Carolina, Dept Psychol, Columbia, SC 29208 USA
[3] Univ Cincinnati, Med Ctr, Dept Psychiat, Cincinnati, OH 45267 USA
[4] William Jennings Bryan Dorn Vet Affairs Med Ctr, Columbia, SC USA
基金
美国国家卫生研究院;
关键词
NMDA RECEPTOR SUBUNITS; INTRANASAL INSULIN; ALZHEIMERS-DISEASE; TYROSINE PHOSPHORYLATION; IMPROVES MEMORY; DOWN-REGULATION; AMPA RECEPTORS; ANIMAL-MODEL; A-BETA; BRAIN;
D O I
10.2337/db15-0596
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Insulin receptors (IRs) are expressed in discrete neuronal populations in the central nervous system, including the hippocampus. To elucidate the functional role of hippocampal IRs independent of metabolic function, we generated a model of hippocampal-specific insulin resistance using a lentiviral vector expressing an IR antisense sequence (LV-IRAS). LV-IRAS effectively downregulates IR expression in the rat hippocampus without affecting body weight, adiposity, or peripheral glucose homeostasis. Nevertheless, hippocampal neuroplasticity was impaired in LV-IRAS-treated rats. High-frequency stimulation, which evoked robust long-term potentiation (LTP) in brain slices from LV control rats, failed to evoke LIP in LV-IRAS-treated rats. GluN2B subunit levels, as well as the basal level of phosphorylation of GluA1, were reduced in the hippocampus of LV-IRAS rats. Moreover, these deficits in synaptic transmission were associated with impairments in spatial learning. We suggest that alterations in the expression and phosphorylation of glutamate receptor subunits underlie the alterations in LIP and that these changes are responsible for the impairment in hippocampal-dependent learning. Importantly, these learning deficits are strikingly similar to the impairments in complex task performance observed in patients with diabetes, which strengthens the hypothesis that hippocampal insulin resistance is a key mediator of cognitive deficits independent of glycemic control.
引用
收藏
页码:3927 / 3936
页数:10
相关论文
共 50 条
[1]   NMDA receptor subunit composition controls synaptic plasticity by regulating binding to CaMKII [J].
Barria, A ;
Malinow, R .
NEURON, 2005, 48 (02) :289-301
[2]   Intranasal insulin to improve memory function in humans [J].
Benedict, Christian ;
Hallschmid, Manfred ;
Schultes, Bernd ;
Born, Jan ;
Kern, Werner .
NEUROENDOCRINOLOGY, 2007, 86 (02) :136-142
[3]   Water maze learning and hippocampal synaptic plasticity in streptozotocin-diabetic rats: effects of insulin treatment [J].
Biessels, GJ ;
Kamal, A ;
Urban, IJA ;
Spruijt, BM ;
Erkelens, DW ;
Gispen, WH .
BRAIN RESEARCH, 1998, 800 (01) :125-135
[4]   An anti-diabetes agent protects the mouse brain from defective insulin signaling caused by Alzheimer's disease-associated Aβ oligomers [J].
Bomfim, Theresa R. ;
Forny-Germano, Leticia ;
Sathler, Luciana B. ;
Brito-Moreira, Jordano ;
Houzel, Jean-Christophe ;
Decker, Helena ;
Silverman, Michael A. ;
Kazi, Hala ;
Melo, Helen M. ;
McClean, Paula L. ;
Holscher, Christian ;
Arnold, Steven E. ;
Talbot, Konrad ;
Klein, William L. ;
Munoz, Douglas P. ;
Ferreira, Sergio T. ;
De Felice, Fernanda G. .
JOURNAL OF CLINICAL INVESTIGATION, 2012, 122 (04) :1339-1353
[5]   Loss of GluN2B-Containing NMDA Receptors in CA1 Hippocampus and Cortex Impairs Long-Term Depression, Reduces Dendritic Spine Density, and Disrupts Learning [J].
Brigman, Jonathan L. ;
Wright, Tara ;
Talani, Giuseppe ;
Prasad-Mulcare, Shweta ;
Jinde, Seiichiro ;
Seabold, Gail K. ;
Mathur, Poonam ;
Davis, Margaret I. ;
Bock, Roland ;
Gustin, Richard M. ;
Colbran, Roger J. ;
Alvarez, Veronica A. ;
Nakazawa, Kazu ;
Delpire, Eric ;
Lovinger, David M. ;
Holmes, Andrew .
JOURNAL OF NEUROSCIENCE, 2010, 30 (13) :4590-4600
[6]   Role of brain insulin receptor in control of body weight and reproduction [J].
Brüning, JC ;
Gautam, D ;
Burks, DJ ;
Gillette, J ;
Schubert, M ;
Orban, PC ;
Klein, R ;
Krone, W ;
Müller-Wieland, D ;
Kahn, CR .
SCIENCE, 2000, 289 (5487) :2122-2125
[7]   Insulin causes a transient tyrosine phosphorylation of NR2A and NR2B NMDA receptor subunits in rat hippocampus [J].
Christie, JM ;
Wenthold, RJ ;
Monaghan, DT .
JOURNAL OF NEUROCHEMISTRY, 1999, 72 (04) :1523-1528
[8]   Brain Deletion of Insulin Receptor Substrate 2 Disrupts Hippocampal Synaptic Plasticity and Metaplasticity [J].
Costello, Derek A. ;
Claret, Marc ;
Al-Qassab, Hind ;
Plattner, Florian ;
Irvine, Elaine E. ;
Choudhury, Agharul I. ;
Giese, K. Peter ;
Withers, Dominic J. ;
Pedarzani, Paola .
PLOS ONE, 2012, 7 (02)
[9]   Intranasal Insulin Therapy for Alzheimer Disease and Amnestic Mild Cognitive Impairment A Pilot Clinical Trial [J].
Craft, Suzanne ;
Baker, Laura D. ;
Montine, Thomas J. ;
Minoshima, Satoshi ;
Watson, G. Stennis ;
Claxton, Amy ;
Arbuckle, Matthew ;
Callaghan, Maureen ;
Tsai, Elaine ;
Plymate, Stephen R. ;
Green, Pattie S. ;
Leverenz, James ;
Cross, Donna ;
Gerton, Brooke .
ARCHIVES OF NEUROLOGY, 2012, 69 (01) :29-38
[10]  
de la Monte SM, 2012, CURR ALZHEIMER RES, V9, P35