Structure–activity relationships of aminoglycoside-arginine conjugates that bind HIV-1 RNAs as determined by fluorescence and NMR spectroscopy

We present here a new set of aminoglycoside-arginine conjugates (AACs) that are either site-specific or per-arginine conjugates of paromomycin, neamine, and neomycin B as well as their structure–activity relationships. Their binding constants ( K D) for TAR and RRE RNAs, measured by fluorescence ani...

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Veröffentlicht in:FEBS letters 2004-11, Vol.577 (3), p.415-421
Hauptverfasser: Lapidot, Aviva, Vijayabaskar, Veerappan, Litovchick, Alexander, Yu, Jingua, James, Thomas L.
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Sprache:eng
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Zusammenfassung:We present here a new set of aminoglycoside-arginine conjugates (AACs) that are either site-specific or per-arginine conjugates of paromomycin, neamine, and neomycin B as well as their structure–activity relationships. Their binding constants ( K D) for TAR and RRE RNAs, measured by fluorescence anisotropy, revealed dependence on the number and location of arginines in the different aminoglycoside conjugates. The binding affinity of the per-arginine aminoglycosides to TAR is higher than to RRE, and hexa-arginine neomycin B is the most potent binder ( K D=5 and 23 nM, respectively). The 2D TOCSY NMR spectrum of the TAR monoarginine-neomycin complex reveals binding at the bulge region of TAR.
ISSN:0014-5793
1873-3468
DOI:10.1016/j.febslet.2004.10.038