Activation of 2â²-5â² Oligoadenylate Synthetase by Single-stranded and Double-stranded RNA Aptamers
A number of small RNA molecules that are high affinity ligands for the 46-kDa form of human 2â²-5â² oligoadenylate synthetase have been identified by the SELEX method. Surface plasmon resonance analysis indicates that these RNAs bind to the enzyme with dissociation constants in the nanomolar range...
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Veröffentlicht in: | The Journal of biological chemistry 1998-02, Vol.273 (6), p.3236 |
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Sprache: | eng |
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Zusammenfassung: | A number of small RNA molecules that are high affinity ligands for the 46-kDa form of human 2â²-5â² oligoadenylate synthetase
have been identified by the SELEX method. Surface plasmon resonance analysis indicates that these RNAs bind to the enzyme
with dissociation constants in the nanomolar range. Competition experiments indicate that the binding site for the small RNAs
on the 2â²-5â² oligoadenylate synthetase molecule at least partially overlaps that for the synthetic double-stranded RNA, poly(I)·poly(C).
Several of the RNAs function as potent activators of 2â²-5â² oligoadenylate synthetase in vitro , although there is no correlation between binding affinity and ability to activate. The RNA aptamers having the strongest
activation potential appear to have few base-paired regions. This suggests that 2â²-5â² oligoadenylate synthetase, which has
previously been believed to be activated only by double-stranded RNA, can also be activated by RNA ligands with little secondary
structure. Since 2â²-5â² oligoadenylate synthetase possesses no homology to other known RNA-binding proteins, the development
of small specific ligands by SELEX should facilitate studies of RNA-protein interactions and may reveal novel features of
the structure-function relationships involving this enzyme. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.273.6.3236 |