首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Phosphodiesterase 11A in brain is enriched in ventral hippocampus and deletion causes psychiatric disease-related phenotypes
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Phosphodiesterase 11A in brain is enriched in ventral hippocampus and deletion causes psychiatric disease-related phenotypes

机译:脑中的磷酸二酯酶11A富含腹侧海马,缺失会导致与精神疾病相关的表型

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Phosphodiesterase 11A (PDE11A) is the most recently identified family of phosphodiesterases (PDEs), the only known enzymes to break down cyclic nucleotides. The tissue expression profile of this dual specificity PDE is controversial, and little is understood of its biological function, particularly in the brain. We seek here to determine if PDE11A is expressed in the brain and to understand its function, using PDE11A~(-/-) knockout (KO) mice. We show that PDE11A mRNA and protein are largely restricted to hippocampus CA1, subiculum, and the amygdalohippocampal area, with a two-to threefold enrichment in the ventral vs. dorsal hippocampus, equal distribution between cytosolic and membrane fractions, and increasing levels of protein expression from postnatal day 7 through adulthood. Interestingly, PDE11A KO mice show subtle psychiatric-disease-related deficits, including hyperactivity in an open field, increased sensitivity to the glutamate N-methyl-D-aspartate receptor antagonist MK-801, as well as deficits in social behaviors (social odor recognition memory and social avoidance). In addition, PDE11A KO mice show enlarged lateral ventricles and increased activity in CA1 (as per increased Arc mRNA), phenotypes associated with psychiatric disease. The increased sensitivity to MK-801 exhibited by PDE11A KO mice may be explained by the biochemical dysregulation observed around the glutamate α-amino-3-hydroxy-5-methyl-4-isozazolepropionic (AMPA) receptor, including decreased levels of phosphorylated-GluR1 at Ser845 and the prototypical transmembrane AMPA-receptor-associated proteins stargazin (γ2) and γ8. Together, our data provide convincing evidence that PDE11A expression is restricted in the brain but plays a significant role in regulating brain function.
机译:磷酸二酯酶11A(PDE11A)是最近鉴定的磷酸二酯酶(PDEs)家族,是唯一已知的分解环状核苷酸的酶。这种双重特异性PDE的组织表达谱是有争议的,对其生物学功能尤其是在大脑中的生物学功能了解甚少。我们在这里寻求确定PDE11A是否在大脑中表达,并使用PDE11A〜(-/-)敲除(KO)小鼠了解其功能。我们显示PDE11A mRNA和蛋白主要限于海马CA1,下丘脑和杏仁核海马区,腹侧与背侧海马区有2至3倍的富集,胞质和膜部分之间的分布均等,蛋白质表达水平不断提高从产后第7天到成年。有趣的是,PDE11A KO小鼠显示出与精神疾病有关的细微缺陷,包括在旷野中活动过度,对谷氨酸N-甲基-D-天冬氨酸受体拮抗剂MK-801的敏感性增加以及社交行为缺陷(社交气味识别)记忆和社交回避)。此外,PDE11A KO小鼠表现出侧脑室增大和CA1活性增加(根据增加的Arc mRNA)(与精神病相关的表型)。 PDE11A KO小鼠对MK-801的敏感性增强可能是由于在谷氨酸α-氨基-3-羟基-5-羟基-5-甲基-4-异唑唑丙酸(AMPA)受体周围观察到的生化失调所引起的,其中包括磷酸化的GluR1水平降低Ser845和原型跨膜AMPA受体相关蛋白stargazin(γ2)和γ8。总之,我们的数据提供了令人信服的证据,表明PDE11A的表达在大脑中受到限制,但在调节大脑功能中起着重要作用。

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