Patrick Eric M, Yadav Rajeev, Senanayake Kasun, Cotter Kyle, Putnam Andrea A, Jankowsky Eckhard, Comstock Matthew J
Department of Physics and Astronomy, Michigan State University, East Lansing, MI, USA.
Max Planck Institute of Immunobiology and Epigenetics, Freiburg im Breisgau, Germany.
Nat Commun. 2025 Jan 25;16(1):1015. doi: 10.1038/s41467-024-54955-y.
DEAD-box RNA-dependent ATPases are ubiquitous in all domains of life where they bind and remodel RNA and RNA-protein complexes. DEAD-box ATPases with helicase activity unwind RNA duplexes by local opening of helical regions without directional movement through the duplexes and some of these enzymes, including Ded1p from Saccharomyces cerevisiae, oligomerize to effectively unwind RNA duplexes. Whether and how DEAD-box helicases coordinate oligomerization and unwinding is not known and it is unclear how many base pairs are actively opened. Using high-resolution optical tweezers and fluorescence, we reveal a highly dynamic and stochastic process of multiple Ded1p protomers assembling on and unwinding an RNA duplex. One Ded1p protomer binds to a duplex-adjacent ssRNA tail and promotes binding and subsequent unwinding of the duplex by additional Ded1p protomers in 4-6 bp steps. The data also reveal rapid duplex unwinding and rezipping linked with binding and dissociation of individual protomers and coordinated with the ATP hydrolysis cycle.
DEAD盒RNA依赖的ATP酶在生命的所有领域中普遍存在,它们结合并重塑RNA和RNA-蛋白质复合物。具有解旋酶活性的DEAD盒ATP酶通过局部打开螺旋区域来解开RNA双链体,而不会在双链体中进行定向移动,其中一些酶,包括酿酒酵母中的Ded1p,会寡聚以有效地解开RNA双链体。DEAD盒解旋酶是否以及如何协调寡聚化和解旋尚不清楚,并且不清楚有多少碱基对被主动打开。使用高分辨率光镊和荧光技术,我们揭示了多个Ded1p原聚体在RNA双链体上组装和解旋的高度动态和随机过程。一个Ded1p原聚体与双链体相邻的单链RNA尾巴结合,并促进其他Ded1p原聚体以4-6个碱基对的步长结合并随后解开双链体。数据还揭示了与单个原聚体的结合和解离相关并与ATP水解循环协调的快速双链体解旋和重新配对。