首页> 外文期刊>Molecular neurodegeneration >Evidence against roles for phorbol binding protein Munc13-1, ADAM adaptor Eve-1, or vesicle trafficking phosphoproteins Munc18 or NSF as phospho-state-sensitive modulators of phorbol/PKC-activated Alzheimer APP ectodomain shedding
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Evidence against roles for phorbol binding protein Munc13-1, ADAM adaptor Eve-1, or vesicle trafficking phosphoproteins Munc18 or NSF as phospho-state-sensitive modulators of phorbol/PKC-activated Alzheimer APP ectodomain shedding

机译:反对佛波结合蛋白Munc13-1,ADAM衔接子Eve-1或小泡运输磷蛋白Munc18或NSF作为佛波/ PKC激活的Alzheimer APP胞外域脱落的磷酸状态敏感调节剂的作用的证据

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Background Shedding of the Alzheimer amyloid precursor protein (APP) ectodomain can be accelerated by phorbol esters, compounds that act via protein kinase C (PKC) or through unconventional phorbol-binding proteins such as Munc13-1. We have previously demonstrated that application of phorbol esters or purified PKC potentiates budding of APP-bearing secretory vesicles at the trans-Golgi network (TGN) and toward the plasma membrane where APP becomes a substrate for enzymes responsible for shedding, known collectively as α-secretase(s). However, molecular identification of the presumptive "phospho-state-sensitive modulators of ectodomain shedding" (PMES) responsible for regulated shedding has been challenging. Here, we examined the effects on APP ectodomain shedding of four phorbol-sensitive proteins involved in regulation of vesicular membrane trafficking of APP: Munc13-1, Munc18, NSF, and Eve-1. Results Overexpression of either phorbol-sensitive wildtype Munc13-1 or phorbol-insensitive Munc13-1 H567K resulted in increased basal APP ectodomain shedding. However, in contrast to the report of Ro?ner et al (2004), phorbol ester-dependent APP ectodomain shedding from cells overexpressing APP and Munc13-1 wildtype was indistinguishable from that observed following application of phorbol to cells overexpressing APP and Munc13-1 H567K mutant. This pattern of similar effects on basal and stimulated APP shedding was also observed for Munc18 and NSF. Eve-1, an ADAM adaptor protein reported to be essential for PKC-regulated shedding of pro-EGF, was found to play no obvious role in regulated shedding of sAPPα. Conclusion Our results indicate that, in the HEK293 system, Munc13-1, Munc18, NSF, and EVE-1 fail to meet essential criteria for identity as PMES for APP.
机译:背景佛波醇酯,通过蛋白激酶C(PKC)或通过非常规的佛波醇结合蛋白(例如Munc13-1)起作用的化合物可以促进阿尔茨海默氏淀粉样蛋白前体蛋白(APP)胞外域的脱落。先前我们已经证明,使用佛波酯或纯化的PKC可以增强带有APP的分泌小泡在反式高尔基网络(TGN)上和质膜的萌芽状态,其中APP成为负责脱落的酶的底物,统称为α-分泌酶。然而,负责调节脱落的推测性“胞外域脱落的磷状态敏感调节剂”(PMES)的分子鉴定一直具有挑战性。在这里,我们检查了参与调节APP囊泡运输的四种佛波醇敏感性蛋白对APP胞外域脱落的影响:Munc13-1,Munc18,NSF和Eve-1。结果佛波醇敏感的野生型Munc13-1或佛波醇不敏感的Munc13-1 H567K的过表达导致基础APP胞外域脱落增加。然而,与Ro?ner等人(2004)的报告相反,与佛波酯依赖的APP胞外域从过表达APP和Munc13-1野生型细胞脱落的现象与将佛波醇应用于过表达APP和Munc13-1的细胞后观察到的没有区别。 H567K突变体。在Munc18和NSF中也观察到这种对基础和刺激的APP脱落的类似作用模式。 Eve-1是ADAM衔接蛋白,据报道对于PKC调控的促EGF脱落至关重要,但在sAPPα的调控脱落中没有明显作用。结论我们的结果表明,在HEK293系统中,Munc13-1,Munc18,NSF和EVE-1无法满足将其识别为APP的PMES的基本标准。

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