School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA 30332, USA.
School of Physics, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Structure. 2017 Nov 7;25(11):1697-1707.e5. doi: 10.1016/j.str.2017.09.008.
Glaucoma-associated myocilin is a member of the olfactomedins, a protein family involved in neuronal development and human diseases. Molecular studies of the myocilin N-terminal coiled coil demonstrate a unique tripartite architecture: a Y-shaped parallel dimer-of-dimers with distinct tetramer and dimer regions. The structure of the dimeric C-terminal 7-heptad repeats elucidates an unexpected repeat pattern involving inter-strand stabilization by oppositely charged residues. Molecular dynamics simulations reveal an alternate accessible conformation in which the terminal inter-strand disulfide limits the extent of unfolding and results in a kinked configuration. By inference, full-length myocilin is also branched, with two pairs of C-terminal olfactomedin domains. Selected variants within the N-terminal region alter the apparent quaternary structure of myocilin but do so without compromising stability or causing aggregation. In addition to increasing our structural knowledge of naturally occurring extracellular coiled coils and biomedically important olfactomedins, this work broadens the scope of protein misfolding in the pathogenesis of myocilin-associated glaucoma.
青光眼相关肌球蛋白是嗅觉素蛋白家族的一员,该蛋白家族参与神经元发育和人类疾病。肌球蛋白 N 端卷曲螺旋的分子研究表明其具有独特的三分体结构:Y 型平行二聚体-二聚体,具有独特的四聚体和二聚体区域。二聚体 C 端 7 个七肽重复序列的结构阐明了一种意想不到的重复模式,其中反式电荷残基稳定了链间相互作用。分子动力学模拟揭示了一种可及的替代构象,其中末端链间二硫键限制了展开的程度,并导致了扭曲的构象。由此推断,全长肌球蛋白也是分支的,具有两对 C 端嗅觉素结构域。N 端区域内的选定变体改变了肌球蛋白的表观四级结构,但不会破坏稳定性或导致聚集。除了增加对天然细胞外卷曲螺旋和生物医学上重要的嗅觉素的结构知识外,这项工作还拓宽了肌球蛋白相关青光眼发病机制中蛋白质错误折叠的范围。