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Adenosine 5'-O-(3-thio)triphosphate (ATPgammaS) is a substrate for the nucleotide hydrolysis and RNA unwinding activities of eukaryotic translation initiation factor eIF4A.

机译:5'-O-(3-硫代)三磷酸腺苷(ATPgammaS)是真核翻译起始因子eIF4A的核苷酸水解和RNA解旋活性的底物。

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摘要

Whereas ATPgammaS is often considered a nonhydrolyzable substrate for ATPases, we present evidence that ATPgammaS is a good substrate for the RNA-stimulated nucleotide hydrolysis and RNA unwinding activities of eIF4A. In the presence of saturating single-stranded poly(U) RNA, eIF4A hydrolyzes ATPgammaS.Mg and ATP.Mg with similar steady-state parameters (KM(NTP.Mg) = 66 and 58 microM and kcat = 1.0 and 0.97 min(-1), respectively). ATPgammaS.Mg also supports catalysis of RNA unwinding within 10-fold of the rate supported by ATP.Mg. The identical steady-state rate parameters, in comparison with the expected difference in the intrinsic rate of hydrolysis for ATP and ATPgammaS, suggest a nonchemical rate-limiting step for nucleotide hydrolysis. These results raise caution concerning the assumption that ATPgammaS is a nonhydrolyzable ATP analog and underscore the utility of thio-substituted NTPs as mechanistic probes.
机译:尽管ATPgammaS通常被认为是ATPase的不可水解底物,但我们提供的证据表明ATPgammaS是eIF4A的RNA刺激的核苷酸水解和RNA解旋活性的良好底物。在存在饱和单链poly(U)RNA的情况下,eIF4A水解ATPgammaS.Mg和ATP.Mg的稳态参数相似(KM(NTP.Mg)= 66和58 microM,kcat = 1.0和0.97 min(- 1)。 ATPgammaS.Mg还支持在ATP.Mg支持的速率的10倍内展开RNA的催化作用。与ATP和ATPgammaS的固有水解速率的预期差异相比,相同的稳态速率参数表明核苷酸水解的非化学速率限制步骤。这些结果使人们对ATPgammaS是不可水解的ATP类似物这一假设提出了警告,并强调了硫取代的NTP作为机械探针的实用性。

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