作者
Anuttara Udomprasert, Marie N Bongiovanni, Ruojie Sha, William B Sherman, Tong Wang, Paramjit S Arora, James W Canary, Sally L Gras, Nadrian C Seeman
发表日期
2014/7
期刊
Nature nanotechnology
卷号
9
期号
7
页码范围
537-541
出版商
Nature Publishing Group UK
简介
Amyloid fibrils are ordered, insoluble protein aggregates that are associated with neurodegenerative conditions such as Alzheimer's disease. The fibrils have a common rod-like core structure, formed from an elongated stack of β-strands, and have a rigidity similar to that of silk (Young's modulus of 0.2–14 GPa). They also exhibit high thermal and chemical stability and can be assembled in vitro from short synthetic non-disease-related peptides,. As a result, they are of significant interest in the development of self-assembled materials for bionanotechnology applications. Synthetic DNA molecules have previously been used to form intricate structures and organize other materials such as metal nanoparticles, and could in principle be used to nucleate and organize amyloid fibrils. Here, we show that DNA origami nanotubes can sheathe amyloid fibrils formed within them. The fibrils are built by modifying the synthetic …
引用总数
20142015201620172018201920202021202220232024210414714812581
学术搜索中的文章
A Udomprasert, MN Bongiovanni, R Sha, WB Sherman… - Nature nanotechnology, 2014