Chang Jean-Yun, Lee Ming-Hui, Lin Sing-Ru, Yang Li-Yi, Sun H Sunny, Sze Chun-I, Hong Qunying, Lin Yee-Shin, Chou Ying-Tsen, Hsu Li-Jin, Jan Ming-Shiou, Gong Cheng-Xin, Chang Nan-Shan
Institute of Molecular Medicine, National Cheng Kung University Medical College, Tainan, Taiwan, ROC.
Departments of Anatomy and Cell Biology, National Cheng Kung University Medical College, Tainan, Taiwan, ROC.
Oncotarget. 2015 Feb 28;6(6):3578-89. doi: 10.18632/oncotarget.2876.
Tumor suppressor WWOX is involved in the progression of cancer and neurodegeneration. Here, we examined whether protein aggregation occurs in the brain of nondemented, middle-aged humans and whether this is associated with WWOX downregulation. We isolated an N-terminal internal deletion isoform, TPC6AΔ, derived from alternative splicing of the TRAPPC6A (TPC6A) gene transcript. TPC6AΔ proteins are present as aggregates or plaques in the extracellular matrix of the brain such as in the cortex. Filter retardation assays revealed that aggregate formation of TPC6AΔ occurs preceding Aβ generation in the hippocampi of middle-aged postmortem normal humans. In a Wwox gene knockout mouse model, we showed the plaques of pT181-Tau and TPC6AΔ in the cortex and hippocampus in 3-week-old mice, suggesting a role of WWOX in limiting TPC6AΔ aggregation. To support this hypothesis, in vitro analysis revealed that TGF-β1 induces dissociation of the ectopic complex of TPC6AΔ and WWOX in cells, and then TPC6AΔ undergoes Ser35 phosphorylation-dependent polymerization and induces caspase 3 activation and Aβ production. Similarly, knockdown of WWOX by siRNA resulted in dramatic aggregation of TPC6AΔ. Together, when WWOX is downregulated, TPC6AΔ is phosphorylated at Ser35 and becomes aggregated for causing caspase activation that leads to Tau aggregation and Aβ formation.
肿瘤抑制因子WWOX参与癌症进展和神经退行性变。在此,我们研究了在无痴呆的中年人的大脑中是否发生蛋白质聚集,以及这是否与WWOX下调有关。我们分离出一种源自TRAPPC6A(TPC6A)基因转录本可变剪接的N端内部缺失异构体TPC6AΔ。TPC6AΔ蛋白以聚集体或斑块的形式存在于大脑的细胞外基质中,如皮质。滤膜阻滞分析显示,在中年正常人类尸检海马体中,TPC6AΔ的聚集体形成先于Aβ生成。在Wwox基因敲除小鼠模型中,我们在3周龄小鼠的皮质和海马体中发现了pT181-Tau和TPC6AΔ的斑块,提示WWOX在限制TPC6AΔ聚集方面发挥作用。为支持这一假设,体外分析显示,TGF-β1诱导细胞中TPC6AΔ和WWOX的异位复合物解离,然后TPC6AΔ发生Ser35磷酸化依赖性聚合,并诱导caspase 3激活和Aβ产生。同样,用siRNA敲低WWOX导致TPC6AΔ大量聚集。总之,当WWOX下调时,TPC6AΔ在Ser35处磷酸化并聚集,导致caspase激活,进而导致Tau聚集和Aβ形成。