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Kluyveromyces lactis gamma-toxin, a ribonuclease that recognizes the anticodon stem loop of tRNA

机译:乳酸克鲁维酵母γ-毒素,一种核糖核酸酶,可识别tRNA的反密码子茎环

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摘要

Kluyveromyces lactis gamma-toxin is a tRNA endonuclease that cleaves Saccharomyces cerevisiae tRNA(mcm5s2UUC)(Glu3), tRNA(mcm5s2UUU)(Lys), and tRNA(mcm5s2UUG)(Gln) between position 34 and position 35. All three substrate tRNAs carry a 5-methoxycarbonylmethyl-2-thiouridine (mcm(5)s(2)U) residue at position 34 (wobble position) of which the mcm(5) group is required for efficient cleavage. However, the different cleavage efficiencies of mcm(5)s(2)U(34)-containing tRNAs suggest that additional features of these tRNAs affect cleavage. In the present study, we show that a stable anticodon stem and the anticodon loop are the minimal requirements for cleavage by gamma-toxin. A synthetic minihelix RNA corresponding to the anticodon stem loop (ASL) of the natural substrate tRNA(mcm5s2UUC)(Glu3) is cleaved at the same position as the natural substrate. In ASL(UUC)(Glu3), the nucleotides U(34)U(35)C(36)A(37)C(38) are required for optimal gamma-toxin cleavage, whereas a purine at position 32 or a G in position 33 dramatically reduces the cleavage of the ASL. Comparing modified and partially modified forms of E. coli and yeast tRNA(UUC)(Glu) reinforced the strong stimulatory effects of the mcm(5) group, revealed a weak positive effect of the s(2) group and a negative effect of the bacterial 5-methylaminomethyl (mnm(5)) group. The data underscore the high specificity of this yeast tRNA toxin.
机译:乳酸克鲁维酵母(Kluyveromyces lactis)γ毒素是一种tRNA核酸内切酶,可在酿酒酵母中分离tRNA(mcm5s2UUC)(Glu3),tRNA(mcm5s2UUU)(Lys)和tRNA(mcm5s2UUG)(Gln),在第34位和第35位之间携带3个底物。 5-位甲氧基羰基甲基-2-硫尿苷(mcm(5)s(2)U)在位置34(摆动位置)上的残基,有效裂解需要mcm(5)基团。但是,包含mcm(5)s(2)U(34)的tRNA的不同切割效率表明这些tRNA的其他功能会影响切割。在本研究中,我们表明稳定的反密码子茎和反密码子环是伽玛毒素裂解的最低要求。对应于天然底物tRNA(mcm5s2UUC)(Glu3)的反密码子茎环(ASL)的合成小螺旋RNA在与天然底物相同的位置切割。在ASL(UUC)(Glu3)中,核苷酸U(34)U(35)C(36)A(37)C(38)是最佳γ毒素切割所必需的,而32位的嘌呤或G的G位置33大大减少了ASL的分裂。比较大肠杆菌和酵母tRNA(UUC)(Glu)的修饰形式和部分修饰形式可增强mcm(5)组的强刺激作用,显示s(2)组的弱正作用和s(2)组的负作用细菌5-甲基氨基甲基(mnm(5))组。数据强调了该酵母tRNA毒素的高特异性。

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