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PS1 REGULATES CLEAVAGE OF EPHRIN B LIGAND AND EPHB RECEPTOR

PS1 REGULATES CLEAVAGE OF EPHRIN B LIGAND AND EPHB RECEPTOR
PS1 调节 Ephrin B 配体和 EPHB 受体的裂解
批准号:
7404585
负责人:
ANASTASIOS GEORGAKOPOULOS
金额:
$23.63万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
早老素-1(PS1)的缺失突变是常染色体显性遗传家族性阿尔茨海默病(FAD)的最常见原因。PS1控制许多I型跨膜蛋白的γ-分泌酶切割。肝配蛋白B蛋白是I型跨膜蛋白,其作为肝配蛋白B受体(EphB)的配体起作用。ephrinB-EphB系统传递来自受体和配体的细胞信号,从而构成双向信号传导系统。ephrinB-EphB相互作用调节发育和成年期的重要细胞过程,包括细胞迁移、轴突导向、树突棘形态发生、血管生成和突触可塑性以及调节两种形式的长期突触可塑性的认知过程,这两种形式的长期突触可塑性对于大脑中的信息存储是重要的,即长期增强 (LTP)长期抑郁症(LTD)我们发现,PS1控制的ephrinB和ephB蛋白的蛋白水解加工的γ-分泌酶样活性,产生羧基末端ephrinB和ephB片段。我们的数据表明,ephrinB和ephB蛋白首先被金属蛋白酶(MMP)活性加工,产生一个膜结合的羧基末端片段,称为CTF 1 s。这些片段随后被PS1/γ-分泌酶系统切割以产生称为CTF 2的羧基末端片段。我们获得的数据表明ephB和ephrinB的胞质序列都易位到了细胞核中 在那里它们可以作为转录因子。这些序列的核定位由PS1/γ-分泌酶系统调节。我们还观察到PS1/γ-分泌酶系统调节ephB诱导的Src激酶磷酸化,这一过程由eprhinB-ephB相互作用启动。Src激酶作为第二信使调节各种细胞功能,如细胞骨架蛋白的磷酸化、粘着斑的组装、记忆形成和神经变性,这些功能在AD中严重受损。 因此,PS 1可能通过影响ephrinB配体和ephB受体的生理过程以及ephrinB-ephB介导的信号传导来控制突触的结构和功能。
英文摘要
Missence mutations in Presenilin-1 (PS1) are the most common cause of autosomal dominant familial Alzheimer's disease (FAD). PS1 controls the gamma-secretase cleavage of many type I transmembrane proteins. EphrinB proteins are type I transmembrane proteins that function as ligands for the ephrinB receptors (EphBs). The ephrinB-EphB system transmits cellular signals from both the receptor and the ligand thus constituting a bi-directional signaling system. The ephrinB-EphB interactions regulate important cellular processes in development and adulthood including cell migration, axon guidance, dendritic spine morphogenesis, angiogenesis and synaptic plasticity as well as cognitive processes regulating two forms of long-term synaptic plasticity that are important for information storage in the brain, the long-term potentiation (LTP) and the long-term depression (LTD). We found that PS1 controls the proteolytic processing of both ephrinB and ephB proteins by a gamma-secretase-like activity, producing carboxy terminal ephrinB and ephB fragments. Our data shows that ephrinB and ephB proteins are first processed by a metalloproteinase (MMP) activity to produce a membrane-bound carboxy terminal fragments termed CTF1s. These fragments are subsequently cleaved by the PS1/gamma-secretase system to produce carboxy terminal fragments termed CTF2s. We obtained data that cytoplasmic sequence of both ephB and ephrinB translocate to the nucleus where they may act as transcription factors. Nuclear localization of these sequences is regulated by the PS1/gamma-secretase system. We also observed that the PS1/gamma-secretase system regulates the ephB-induced phosphorylation of Src kinase, a process initiated by the eprhinB-ephB interaction. Src kinase acts as a second messenger regulating various cellular functions like phosphorylation of cytoskeletal proteins, assembly of focal adhesions, memory formation and neurodegeneration, functions severely impaired in AD. Thus, PS1 may control synaptic structure and function by affecting the physiological processing of ephrinB ligands and ephB receptors and the ephrinB-ephB-mediated signaling.
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PS1 REGULATES CLEAVAGE OF EPHRINB LIGAND AND EPHB RECEPTOR
PS1 REGULATES CLEAVAGE OF EPHRINB LIGAND AND EPHB RECEPTOR
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