Kim Dohee, Lim Sungsu, Haque Md Mamunul, Ryoo Nayeon, Hong Hyun Seok, Rhim Hyewhon, Lee Dong-Eun, Chang Young-Tae, Lee Jun-Seok, Cheong Eunji, Kim Dong Jin, Kim Yun Kyung
Korea Institute of Science and Technology (KIST), Brain Science Institute, Center for neuro-medicine, Seoul 136-791, South Korea.
Department of Biotechnology, Translational Research Center for Protein Function Control, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, South Korea.
Sci Rep. 2015 Oct 15;5:15231. doi: 10.1038/srep15231.
Recent evidence suggests that tau aggregates are not only neurotoxic, but also propagate in neurons acting as a seed for native tau aggregation. Prion-like tau transmission is now considered as an important pathogenic mechanism driving the progression of tau pathology in the brain. However, prion-like tau species have not been clearly characterized. To identify infectious tau conformers, here we prepared diverse tau aggregates and evaluated the effect on inducing intracellular tau-aggregation. Among tested, tau dimer containing P301L-mutation is identified as the most infectious form to induce tau pathology. Biochemical analysis reveals that P301L-tau dimer is covalently cross-linked with a disulfide bond. The relatively small and covalently cross-linked tau dimer induced tau pathology efficiently in primary neurons and also in tau-transgenic mice. So far, the importance of tau disulfide cross-linking has been overlooked in the study of tau pathology. Here our results suggested that tau disulfide cross-linking might play critical role in tau propagation by producing structurally stable and small tau conformers.
最近的证据表明,tau聚集体不仅具有神经毒性,还能在神经元中传播,充当天然tau聚集的种子。如今,朊病毒样tau传播被认为是驱动大脑中tau病理进展的一种重要致病机制。然而,朊病毒样tau种类尚未得到明确表征。为了鉴定具有传染性的tau构象异构体,我们制备了多种tau聚集体,并评估了其对诱导细胞内tau聚集的影响。在测试的样本中,含有P301L突变的tau二聚体被确定为诱导tau病理的最具传染性的形式。生化分析表明,P301L-tau二聚体通过二硫键共价交联。相对较小且共价交联的tau二聚体在原代神经元和tau转基因小鼠中均能有效诱导tau病理。到目前为止,tau二硫键交联在tau病理研究中的重要性一直被忽视。我们的研究结果表明,tau二硫键交联可能通过产生结构稳定且较小的tau构象异构体在tau传播中发挥关键作用。