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Mechanism and treatment for learning and memory deficits in mouse models of Noonan syndrome.

机译:非洲综合征小鼠模型中学习与记忆缺陷的机制与治疗。

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In Noonan syndrome (NS) 30-50% of subjects show cognitive deficits of unknown etiology and with no known treatment. Here, we report that knock-in mice expressing either of two NS-associated mutations in Ptpn11, which encodes the nonreceptor protein tyrosine phosphatase Shp2, show hippocampal-dependent impairments in spatial learning and deficits in hippocampal long-term potentiation (LTP). In addition, viral overexpression of an NS-associated allele PTPN11(D61G) in adult mouse hippocampus results in increased baseline excitatory synaptic function and deficits in LTP and spatial learning, which can be reversed by a mitogen-activated protein kinase kinase (MEK) inhibitor. Furthermore, brief treatment with lovastatin reduces activation of the GTPase Ras-extracellular signal-related kinase (Erk) pathway in the brain and normalizes deficits in LTP and learning in adult Ptpn11(D61G/+) mice. Our results demonstrate that increased basal Erk activity and corresponding baseline increases in excitatory synaptic function are responsible for the LTP impairments and, consequently, the learning deficits in mouse models of NS. These data also suggest that lovastatin or MEK inhibitors may be useful for treating the cognitive deficits in NS.
机译:在中午综合征(NS)中,30-50%的受试者表现出未知病因的认知缺陷,并且没有已知的治疗。在这里,我们报告说,在PTPN11中表达两种NS相关突变中的任何一个,它们在编码非接近者蛋白酪氨酸磷酸酶SHP2中,显示出在海马长期增强(LTP)中的空间学习和缺陷中的海马依赖性损伤。此外,在成年小鼠海马中的NS相关等位基因PTPN11(D61G)的病毒过度表达导致LTP和空间学习中增加的基线兴奋性突触功能和缺陷,这可以通过丝裂原激活的蛋白激酶激酶(MEK)抑制剂反转。此外,使用Lovastatin的简要治疗减少了大脑中GTP酶Ras-细胞外信号相关激酶(ERK)途径的激活,并在成人PTPN11(D61G / +)小鼠中的LTP中的缺陷标准化。我们的结果表明,兴奋性突触函数的增加的基础ERK活动和相应的基线增加负责LTP损伤,因此,NS的小鼠模型中的学习缺陷。这些数据还表明,洛伐他汀或MEK抑制剂可用于治疗NS中的认知缺陷。

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