IRS-2 Deficiency Impairs NMDA Receptor-Dependent Long-term Potentiation

被引:57
|
作者
Martin, Eduardo D. [2 ]
Sanchez-Perez, Ana [1 ]
Luis Trejo, Jose [3 ]
Antonio Martin-Aldana, Juan [1 ]
Cano Jaimez, Marife [1 ]
Pons, Sebastian [4 ]
Acosta Umanzor, Carlos [1 ]
Menes, Lorena [1 ]
White, Morris F. [5 ]
Burks, Deborah J. [1 ]
机构
[1] CIBER Diabet & Enfermedades Metab Asociadas CIBER, Ctr Invest Principe Felipe, Regenerat Med Program, Valencia 46012, Spain
[2] Univ Castilla La Mancha, Inst Res Neurol Disabil IDINE, Albacete Sci & Technol Pk PCYTA, Lab Neurophysiol & Synapt Plast, Albacete 02071, Spain
[3] CSIC, Cajal Inst, Madrid 28002, Spain
[4] IIBB CSIC IDIBAPS, Inst Biomed Res Barcelona, Barcelona 08036, Spain
[5] Harvard Univ, Sch Med, Childrens Hosp Boston, Div Endocrinol,Howard Hughes Med Inst, Boston, MA 02115 USA
关键词
diabetes; insulin receptor signaling; long-term potentiation; NMDA receptor; synaptic plasticity; GROWTH-FACTOR-I; D-ASPARTATE RECEPTOR; DIABETES-MELLITUS; TYROSINE PHOSPHORYLATION; SYNAPTIC PLASTICITY; SIGNAL-TRANSDUCTION; ALZHEIMERS-DISEASE; PYRAMIDAL CELLS; PROTEIN-KINASE; INSULIN-RESISTANCE;
D O I
10.1093/cercor/bhr216
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The beneficial effects of insulin and insulin-like growth factor I on cognition have been documented in humans and animal models. Conversely, obesity, hyperinsulinemia, and diabetes increase the risk for neurodegenerative disorders including Alzheimer's disease (AD). However, the mechanisms by which insulin regulates synaptic plasticity are not well understood. Here, we report that complete disruption of insulin receptor substrate 2 (Irs2) in mice impairs long-term potentiation (LTP) of synaptic transmission in the hippocampus. Basal synaptic transmission and paired-pulse facilitation were similar between the 2 groups of mice. Induction of LTP by high-frequency conditioning tetanus did not activate postsynaptic N-methyl-D-aspartate (NMDA) receptors in hippocampus slices from Irs2(-/-) mice, although the expression of NR2A, NR2B, and PSD95 was equivalent to wild-type controls. Activation of Fyn, Ala, and MAPK in response to tetanus stimulation was defective in Irs2(-/-) mice. Interestingly, IRS2 was phosphorylated during induction of LTP in control mice, revealing a potential new component of the signaling machinery which modulates synaptic plasticity. Given that IRS2 expression is diminished in Type 2 diabetics as well as in AD patients, these data may reveal an explanation for the prevalence of cognitive decline in humans with metabolic disorders by providing a mechanistic link between insulin resistance and impaired synaptic transmission.
引用
收藏
页码:1717 / 1727
页数:11
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