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Nucleic Acids Research 2006 34(8):2445-2454; doi:10.1093/nar/gkl276
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Published online 8 May 2006

© The Author 2006. Published by Oxford University Press. All rights reserved
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Article

Characterization of long RNA-cleaving deoxyribozymes with short catalytic cores: the effect of excess sequence elements on the outcome of in vitro selection

Kenny Schlosser, Jeffrey C.F. Lam and Yingfu Li*

Department of Biochemistry and Biomedical Sciences and Department of Chemistry, McMaster University Hamilton, Canada L8N 3Z5

*To whom correspondence should be addressed. Tel: 1 905 5259140; Fax: 1 905 522 9033; Email: liying{at}mcmaster.ca

Received March 6, 2006. Revised March 27, 2006. Accepted April 4, 2006.

We previously conducted an in vitro selection experiment for RNA-cleaving deoxyribozymes, using a combinatorial DNA library containing 80 random nucleotides. Ultimately, 110 different sequence classes were isolated, but the vast majority contained a short14–15 nt catalytic DNA motif commonly known as 8–17. Herein, we report extensive truncation experiments conducted on multiple sequence classes to confirm the suspected catalytic role played by 8–17 and to determine the effect of excess sequence elements on the activity of this motif and the outcome of selection. Although we observed beneficial, detrimental and neutral consequences for activity, the magnitude of the effect rarely exceeded 2-fold. These deoxyribozymes appear to have survived increasing selection pressure despite the presence of additional sequence elements, rather than because of them. A new deoxyribozyme with comparable activity, called G15–30, was ~2.5-fold larger and experienced a ~4-fold greater inhibitory effect from excess sequence elements than the average 8–17 motif. Our results suggest that 8–17 may be less susceptible to the potential inhibitory effects of excess arbitrary sequence than larger motifs, which represents a previously unappreciated selective advantage that may contribute to its widespread recurrence.


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K. Schlosser, J. Gu, L. Sule, and Y. Li
Sequence-function relationships provide new insight into the cleavage site selectivity of the 8-17 RNA-cleaving deoxyribozyme
Nucleic Acids Res., March 1, 2008; 36(5): 1472 - 1481.
[Abstract] [Full Text] [PDF]



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