RNA 2015-03-01

Using droplet-based microfluidics to improve the catalytic properties of RNA under multiple-turnover conditions.

Michael Ryckelynck, Stéphanie Baudrey, Christian Rick, Annick Marin, Faith Coldren, Eric Westhof, Andrew D Griffiths

Index: RNA 21(3) , 458-69, (2015)

Full Text: HTML

Abstract

In vitro evolution methodologies are powerful approaches to identify RNA with new functionalities. While Systematic Evolution of Ligands by Exponential enrichment (SELEX) is an efficient approach to generate new RNA aptamers, it is less suited for the isolation of efficient ribozymes as it does not select directly for the catalysis. In vitro compartmentalization (IVC) in aqueous droplets in emulsions allows catalytic RNAs to be selected under multiple-turnover conditions but suffers severe limitations that can be overcome using the droplet-based microfluidics workflow described in this paper. Using microfluidics, millions of genes in a library can be individually compartmentalized in highly monodisperse aqueous droplets and serial operations performed on them. This allows the different steps of the evolution process (gene amplification, transcription, and phenotypic assay) to be uncoupled, making the method highly flexible, applicable to the selection and evolution of a variety of RNAs, and easily adaptable for evolution of DNA or proteins. To demonstrate the method, we performed cycles of random mutagenesis and selection to evolve the X-motif, a ribozyme which, like many ribozymes selected using SELEX, has limited multiple-turnover activity. This led to the selection of variants, likely to be the optimal ribozymes that can be generated using point mutagenesis alone, with a turnover number under multiple-turnover conditions, k(ss) cat, ∼ 28-fold higher than the original X-motif, primarily due to an increase in the rate of product release, the rate-limiting step in the multiple-turnover reaction.© 2015 Ryckelynck et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society.


Related Compounds

  • sodium chloride
  • Ethanol
  • spermidine
  • Magnesium choride
  • 7-Amino-4-methylco...
  • SODIUM CHLOR...
  • Sodium levothyroxi...
  • DL-Dithiothreitol
  • L-thyroxine

Related Articles:

Salicylic acid signaling controls the maturation and localization of the arabidopsis defense protein ACCELERATED CELL DEATH6.

2014-08-01

[Mol. Plant 7(8) , 1365-83, (2014)]

Mechanism of human PTEN localization revealed by heterologous expression in Dictyostelium.

2014-12-11

[Oncogene 33(50) , 5688-96, (2014)]

Functional consequence of the MET-T1010I polymorphism in breast cancer.

2015-02-20

[Oncotarget 6(5) , 2604-14, (2015)]

Aptamer-based polyvalent ligands for regulated cell attachment on the hydrogel surface.

2015-04-13

[Biomacromolecules 16(4) , 1382-9, (2015)]

Melatonin-mediated Bim up-regulation and cyclooxygenase-2 (COX-2) down-regulation enhances tunicamycin-induced apoptosis in MDA-MB-231 cells.

2015-04-01

[J. Pineal Res. 58(3) , 310-20, (2015)]

More Articles...