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Age-Dependent Targeting of Protein Phosphatase 1 to Ca2+/Calmodulin-Dependent Protein Kinase II by Spinophilin in Mouse Striatum

机译:旋转蛋白在小鼠纹状体中的年龄依赖性蛋白磷酸酶1靶向Ca2 + /钙调蛋白依赖性蛋白激酶II。

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摘要

Mechanisms underlying age-dependent changes of dendritic spines on striatal medium spiny neurons are poorly understood. Spinophilin is an F-actin- and protein phosphatase 1 (PP1)-binding protein that targets PP1 to multiple downstream effectors to modulate dendritic spine morphology and function. We found that calcium/calmodulin-dependent protein kinase II (CaMKII) directly and indirectly associates with N- and C-terminal domains of spinophilin, but F-actin can displace CaMKII from the N-terminal domain. Spinophilin co-localizes PP1 with CaMKII on the F-actin cytoskeleton in heterologous cells, and spinophilin co-localizes with synaptic CaMKII in neuronal cultures. Thr286 autophosphorylation enhances the binding of CaMKII to spinophilin in vitro and in vivo. Although there is no change in total levels of Thr286 autophosphorylation, maturation from postnatal day 21 into adulthood robustly enhances the levels of CaMKII that co-immunoprecipitate with spinophilin from mouse striatal extracts. Moreover, N- and C-terminal domain fragments of spinophilin bind more CaMKII from adult vs. postnatal day 21 striatal lysates. Total levels of other proteins that interact with C-terminal domains of spinophilin decrease during maturation, perhaps reducing competition for CaMKII binding to the C-terminal domain. In contrast, total levels of α-internexin and binding of α-internexin to the spinophilin N-terminal domain increases with maturation, perhaps bridging an indirect interaction with CaMKII. Moreover, there is an increase in the levels of myosin Va, α-internexin, spinophilin, and PP1 in striatal CaMKII immune complexes isolated from adult and aged mice compared to those from postnatal day 21. These changes in spinophilin/CaMKII interactomes may contribute to changes in striatal dendritic spine density, morphology, and function during normal postnatal maturation and aging.
机译:对纹状体中棘神经元上树突棘的年龄依赖性变化的潜在机制了解甚少。 Spinophilin是一种F-肌动蛋白和蛋白质磷酸酶1(PP1)结合蛋白,可将PP1靶向多个下游效应子,以调节树突棘的形态和功能。我们发现钙/钙调蛋白依赖性蛋白激酶II(CaMKII)直接和间接与spinophilin的N和C末端域关联,但F-肌动蛋白可以从N末端域取代CaMKII。亲脂蛋白在异源细胞中的F-肌动蛋白细胞骨架上将PP1与CaMKII共定位,而在神经元培养物中,亲脂蛋白与突触CaMKII共定位。 Thr286自磷酸化作用可在体外和体内增强CaMKII与亲脂蛋白的结合。尽管Thr286自身磷酸化的总水平没有变化,但从出生后第21天到成年的成熟,可强有力地提高与小鼠纹状体提取物中的亲纺蛋白共免疫沉淀的CaMKII的水平。此外,亲脂蛋白的N-和C-末端结构域片段结合来自成年与出生后第21天纹状体裂解物的更多CaMKII。在成熟过程中,与亲脂蛋白C末端结构域相互作用的其他蛋白质的总水平降低,这可能会减少CaMKII与C末端结构域结合的竞争。相反,随着成熟,α-internexin的总水平和α-internexin与亲纺蛋白N末端结构域的结合增加,这可能桥接了与CaMKII的间接相互作用。此外,与出生后第21天相比,从成年和老年小鼠分离出的纹状体CaMKII免疫复合物中肌球蛋白Va,α-internexin,spinophilin和PP1的水平增加。spinophilin/ CaMKII相互作用组的这些变化可能有助于正常产后成熟和衰老期间纹状体树突棘密度,形态和功能的变化

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