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首页> 外文期刊>Annals of the New York Academy of Sciences >Pam heterozygous mice reveal essential role for Cu in amygdalar behavioral and synaptic function
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Pam heterozygous mice reveal essential role for Cu in amygdalar behavioral and synaptic function

机译:Pam杂合子小鼠揭示铜在杏仁核行为和突触功能中的重要作用

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摘要

Copper (Cu) is an essential element with many biological roles, but its roles in the mammalian nervous system are poorly understood. Mice deficient in the cuproenzyme peptidylglycine α-amidating monooxygenase (Pam~(+/-) mice) were initially generated to study neuropeptide amidation. Pam~(+/-) mice exhibit profound deficits in a few behavioral tasks, including enhancements in innate fear along with deficits in acquired fear. Interestingly, several Pam~(+/-) phenotypes were recapitulated in Cu-restricted wild-type mice and rescued in Cu-supplemented Pam~(+/-) mice. These behaviors correspond to enhanced excitability and deficient synaptic plasticity in the amygdala of Pam~(+/-) mice, which are also rescued by Cu supplementation. Cu and ATP7A are present at synapses, in key positions to respond to and influence synaptic activity. Further study demonstrated that extracellular Cu is necessary for wild-type synaptic plasticity and sufficient to induce long-term potentiation. These experiments support roles for PAM in Cu homeostasis and for synaptic Cu in amygdalar function.
机译:铜(Cu)是具有许多生物学作用的基本元素,但是人们对它在哺乳动物神经系统中的作用知之甚少。最初产生缺乏铜酶的肽基甘氨酸α-酰胺化单加氧酶的小鼠(Pam-(+/-)小鼠)以研究神经肽酰胺化。 Pam〜(+/-)小鼠在一些行为任务中表现出极大的缺陷,包括先天恐惧的增强以及后天恐惧的缺陷。有趣的是,在限制铜的野生型小鼠中概括了几种Pam〜(+/-)表型,并在补充Cu的Pam〜(+/-)小鼠中进行了挽救。这些行为对应于Pam〜(+/-)小鼠杏仁核中增强的兴奋性和不足的突触可塑性,这也可以通过补充铜来挽救。 Cu和ATP7A存在于突触中的关键位置,以响应并影响突触活性。进一步的研究表明,细胞外铜对于野生型突触可塑性是必需的,并且足以诱导长期增强。这些实验支持PAM在铜稳态中的作用以及突触铜在杏仁核功能中的作用。

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