4.8 Article

Structural basis of 7SK RNA 5′-γ-phosphate methylation and retention by MePCE

Journal

NATURE CHEMICAL BIOLOGY
Volume 15, Issue 2, Pages 132-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41589-018-0188-z

Keywords

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Funding

  1. NIH [GM107567, S10OD016336, P41 RR015301, P41 GM103403, 1S10OD016387]
  2. American Cancer Society [126777-PF-14-179-01-DMC]
  3. DOE [DE-FC0302ER63421, DE-AC02-06CH11357]

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Among RNA 5'-cap structures, gamma-phosphate monomethylation is unique to a small subset of noncoding RNAs, 7SK and U6 in humans. 7SK is capped by methylphosphate capping enzyme (MePCE), which has a second nonenzymatic role as a core component of the 7SK ribonuclear protein (RNP), an essential regulator of RNA transcription. We report 2.0- and 2.1-angstrom X-ray crystal structures of the human MePCE methyltransferase domain bound to S-adenosylhomocysteine (SAH) and uncapped or capped 7SK substrates, respectively. 7SK recognition is achieved by protein contacts to a 5'-hairpin-single-stranded RNA region, thus explaining MePCE's specificity for 7SK and U6. The structures reveal SAH and product RNA in a near-transition-state geometry. Unexpectedly, binding experiments showed that MePCE has higher affinity for capped versus uncapped 7SK, and kinetic data support a model of slow product release. This work reveals the molecular mechanism of methyl transfer and 7SK retention by MePCE for subsequent assembly of 7SK RNP.

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