| Literature DB >> 28111020 |
He Song1, Xianyang Fang2, Lan Jin1, Gary X Shaw1, Yun-Xing Wang2, Xinhua Ji3.
Abstract
Double-stranded RNA (dsRNA)-specific RNase III proteins are required for RNA maturation and gene regulation. The mechanism of prokaryotic RNase IIIs has been well characterized, but how eukaryotic RNase IIIs (exemplified by Rnt1p, Drosha, and Dicer) work is less clear. Recently, we reported the crystal structure of Rnt1p in complex with RNA, revealing a double-ruler mechanism for substrate selection. Here, we present more structures of Rnt1p, either RNA free or RNA bound, featuring two major conformations of the enzyme. Using these structures with existing data, we describe the functional cycle of Rnt1p in five steps, selecting, loading, locking, cleavage, and releasing. We also describe atomic details of the two-Mg2+-ion catalytic mechanism that is applicable to all eukaryotic RNase III enzymes. Overall, our results indicate that substrate selection is achieved independent of cleavage, allowing the recognition of substrates with different structures while preserving the basic mechanism of cleavage. Published by Elsevier Ltd.Entities:
Keywords: RNA processing; RNase III; Rnt1p; SAXS; X-ray crystallography; double-stranded RNA; dsRNA; dsRNA processing; ribonuclease III; small-angle X-ray scattering
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Year: 2017 PMID: 28111020 PMCID: PMC5299047 DOI: 10.1016/j.str.2016.12.013
Source DB: PubMed Journal: Structure ISSN: 0969-2126 Impact factor: 5.006