4.4 Article

Ribonucleoprotein purification and characterization using RNA Mango

期刊

RNA
卷 23, 期 10, 页码 1592-1599

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1261/rna.062166.117

关键词

RNA; Mango; fluorophore; desthiobiotin; purification; RNP pull-down; TO1; TO3

资金

  1. National Science and Engineering Research Council Operating grant [RGPIN238948]
  2. National Institutes of Health [R00 GM086471, R01 GM112735]
  3. Shaw Scientist and Beckman Young Investigator awards
  4. University of Wisconsin-Madison
  5. Wisconsin Alumni Research Foundation (WARF)
  6. Department of Biochemistry
  7. National Institute of General Medical Sciences of the National Institutes of Health [R15GM123446]
  8. Gordon and Betty Moore Foundation Grant [GBMF5263.10]
  9. National Science Foundation [MCB-1413664]
  10. Boise State University
  11. National Science and Engineering Research Council

向作者/读者索取更多资源

The characterization of RNA-protein complexes (RNPs) is a difficult but increasingly important problem in modern biology. By combining the compact RNA Mango aptamer with a fluorogenic thiazole orange desthiobiotin (TO1-Dtb or TO3-Dtb) ligand, we have created an RNA tagging system that simplifies the purification and subsequent characterization of endogenous RNPs. Mango-tagged RNP complexes can be immobilized on a streptavidin solid support and recovered in their native state by the addition of free biotin. Furthermore, Mango-based RNP purification can be adapted to different scales of RNP isolation ranging from pull-down assays to the isolation of large amounts of biochemically defined cellular RNPs. We have incorporated the Mango aptamer into the S. cerevisiae U1 small nuclear RNA (snRNA), shown that the Mango-snRNA is functional in cells, and used the aptamer to pull down a U1 snRNA-associated protein. To demonstrate large-scale isolation of RNPs, we purified and characterized bacterial RNA polymerase holoenzyme (HE) in complex with a Mango-containing 6S RNA. We were able to use the combination of a red-shifted TO3-Dtb ligand and eGFP-tagged HE to follow the binding and release of the 6S RNA by two-color native gel analysis as well as by single-molecule fluorescence cross-correlation spectroscopy. Together these experiments demonstrate how the Mango aptamer in conjunction with simple derivatives of its flurophore ligands enables the purification and characterization of endogenous cellular RNPs in vitro.

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