突触发生
淀粉样前体蛋白
铜
免疫沉淀
细胞外
血浆蛋白结合
突变体
细胞生物学
生物
HEK 293细胞
生物物理学
化学
生物化学
受体
内科学
阿尔茨海默病
基因
医学
疾病
有机化学
作者
Frederik Baumkötter,Nadine Schmidt,Carmen Vargas,Sandra Schilling,Ramona Weber,Katja Wagner,Sebastian Fiedler,William S. Klug,Jens Radzimanowski,Sebastian D. Nickolaus,Sandro Keller,Sebastian Eggert,Klemens Wild,Stefan Kins
标识
DOI:10.1523/jneurosci.0180-14.2014
摘要
Accumulating evidence suggests that the copper-binding amyloid precursor protein (APP) has an essential synaptic function. APP synaptogenic function depends on trans-directed dimerization of the extracellular E1 domain encompassing a growth factor-like domain (GFLD) and a copper-binding domain (CuBD). Here we report the 1.75 Å crystal structure of the GFLD in complex with a copper ion bound with high affinity to an extended hairpin loop at the dimerization interface. In coimmunoprecipitation assays copper binding promotes APP interaction, whereas mutations in the copper-binding sites of either the GFLD or CuBD result in a drastic reduction in APP cis-orientated dimerization. We show that copper is essential and sufficient to induce trans-directed dimerization of purified APP. Furthermore, a mixed culture assay of primary neurons with HEK293 cells expressing different APP mutants revealed that APP potently promotes synaptogenesis depending on copper binding to the GFLD. Together, these findings demonstrate that copper binding to the GFLD of APP is required for APP cis-/trans-directed dimerization and APP synaptogenic function. Thus, neuronal activity or disease-associated changes in copper homeostasis likely go along with altered APP synaptic function.
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