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Stability of the unique anticodon loop conformation of E.coli tRNAfMet

机译:大肠杆菌tRNAfMet独特反密码子环构象的稳定性

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摘要

Initiator tRNAs have an anticodon loop conformation distinct from that of elongation tRNAs as detected by susceptibility to SI nuclease. We now find the anticodon loop conformation of E.ooli tRNAMet to be stable under different salt conditions as detected by using SI nuclease as a structural probe. In contrast, a conformational change is observed in the T- and D- loop of this tRNA in the absence of added Mg2+. This change can be suppressed by spermine. Even under those conditions effecting a change in T- and D- loop conformation, the anticodon loop does not change. This suggests that the conformational shift is controlled by Mg2+ and restricted to the D- and T- loop region only without affecting the anticodon domain. The use of S1 nuclease as a conformational probe requires the use of kinetic studies to determine the initial cleavage sites. Thus, the use of a strong inhibitor which immediately stops the action of this nuclease is necessary. ATP is shown to be such an inhibitor.
机译:通过对SI核酸酶的敏感性检测,启动子tRNA具有与延伸tRNA不同的反密码子环构象。现在我们发现,通过使用SI核酸酶作为结构探针检测到,E.ooli tRNA Met 的反密码子环构象在不同的​​盐条件下是稳定的。相反,在不添加Mg 2 + 的情况下,该tRNA的T-环和D-环中发生了构象变化。精胺可以抑制这种变化。即使在那些影响T-和D-环构象改变的条件下,反密码子环也不会改变。这表明构象转变受Mg 2 + 控制,仅在D-和T-环区域受到限制,而不影响反密码子结构域。使用S1核酸酶作为构象探针需要使用动力学研究来确定初始切割位点。因此,必须使用立即停止该核酸酶作用的强抑制剂。 ATP被证明是这样的抑制剂。

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