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Structural insights into the modulatory role of the accessory protein WYL1 in the Type VI-D CRISPR-Cas system

机译:深入了解辅助蛋白WYL1在VI-D CRISPR-Cas系统中的调节作用

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摘要

The Type VI-D CRISPR-Cas system employs an RNA-guided RNase Cas13d with minimal targeting constraints to combat viral infections. This CRISPR system contains RspWYL1 as a unique accessory protein that plays a key role in boosting its effector function on target RNAs, but the mechanism behind this RspWYL1-mediated stimulation remains completely unexplored. Through structural and biophysical approaches, we reveal that the full-length RspWYL1 possesses a novel three-domain architecture and preferentially binds ssRNA with high affinity. Specifically, the N-terminus of RspWYL1 harbors a ribbon-helix-helix motif reminiscent of transcriptional regulators; the central WYL domain of RspWYL1 displays a Sm-like β-barrel fold; and the C-terminal domain of RspWYL1 primarily contributes to the dimerization of RspWYL1 and may regulate the RspWYL1 function via a large conformational change. Collectively, this study provides a first glimpse into the complex mechanism behind the RspWYL1-dictated boosting of target ssRNA cleavage in the Type VI-D CRISPR-Cas system.
机译:VI-D型CRISPR-Cas系统采用RNA导向的RNase Cas13d,具有最小的靶向限制,可抵抗病毒感染。该CRISPR系统包含RspWYL1作为独特的辅助蛋白,在增强其对靶RNA的效应子功能中起关键作用,但这种RspWYL1介导的刺激背后的机制仍未完全探索。通过结构和生物物理方法,我们揭示了全长RspWYL1具有新颖的三结构域结构,并优先以高亲和力结合ssRNA。具体而言,RspWYL1的N端带有一个带状螺旋螺旋基序,让人联想到转录调节因子。 RspWYL1的中央WYL结构域显示出Sm样β-桶状折叠。 RspWYL1的C端结构域主要有助于RspWYL1的二聚化,并可能通过较大的构象变化调节RspWYL1的功能。总的来说,这项研究提供了对RspWYL1指导的VI-D CRISPR-Cas系统中目标ssRNA切割增强的背后复杂机制的初步了解。

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