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Interactome network analysis identifies multiple caspase-6 interactors involved in the pathogenesis of HD

机译:Interactome网络分析确定了HD发病机理中涉及的多个caspase-6相互作用子

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摘要

Caspase-6 (CASP6) has emerged as an important player in Huntington disease (HD), Alzheimer disease (AD) and cerebral ischemia, where it is activated early in the disease process. CASP6 also plays a key role in axonal degeneration, further underscoring the importance of this protease in neurodegenerative pathways. As a protein's function is modulated by its protein-protein interactions, we performed a high-throughput yeast-2-hybrid (Y2H) screen against similar to 17 000 human proteins to gain further insight into the function of CASP6. We identified a high-confidence list of 87 potential CASP6 interactors. From this list, 61% are predicted to contain a CASP6 recognition site. Of nine candidate substrates assessed, six are cleaved by CASP6. Proteins that did not contain a predicted CASP6 recognition site were assessed using a LUMIER assay approach, and 51% were further validated as interactors by this method. Of note, 54% of the high-confidence interactors identified show alterations in human HD brain at the mRNA level, and there is a significant enrichment for previously validated huntingtin (HTT) interactors. One protein of interest, STK3, a pro-apoptotic kinase, was validated biochemically to be a CASP6 substrate. Furthermore, our results demonstrate that in striatal cells expressing mutant huntingtin (mHTT), an increase in full length and fragment levels of STK3 are observed. We further show that caspase-3 is not essential for the endogenous cleavage of STK3. Characterization of the interaction network provides important new information regarding key pathways of interactors of CASP6 and highlights potential novel therapeutic targets for HD, AD and cerebral ischemia.
机译:Caspase-6(CASP6)已成为亨廷顿舞蹈病(HD),阿尔茨海默氏病(AD)和脑缺血的重要参与者,在疾病过程的早期就被激活。 CASP6在轴突变性中也起着关键作用,进一步强调了该蛋白酶在神经退行性途径中的重要性。由于蛋白质的功能受到蛋白质与蛋白质相互作用的调节,我们针对与17,000种人类蛋白质相似的蛋白质进行了高通量酵母2杂交(Y2H)筛选,以进一步了解CASP6的功能。我们确定了87个潜在的CASP6相互作用因子的高可信度列表。从该列表中,预计有61%包含CASP6识别位点。在评估的九种候选底物中,六种被CASP6裂解。使用LUMIER分析方法评估了不包含预测的CASP6识别位点的蛋白质,并通过此方法进一步验证了51%的蛋白质为相互作用子。值得注意的是,已鉴定的54%的高可信度相互作用因子显示人类HD脑在mRNA水平发生了改变,并且对于先前验证的亨廷顿(HTT)相互作用因子有显着的富集。一种感兴趣的蛋白质,STK3,一种促凋亡激酶,已通过化学方法验证为CASP6底物。此外,我们的结果表明,在表达突变亨廷顿蛋白(mHTT)的纹状体细胞中,观察到STK3全长和片段水平增加。我们进一步表明,caspase-3对于STK3的内源性切割不是必需的。相互作用网络的表征提供了有关CASP6相互作用因子关键途径的重要新信息,并突出了HD,AD和脑缺血的潜在新型治疗靶标。

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