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Non-specific deadenylation and deguanylation of naked RNA catalyzed by ricin under acidic condition

机译:蓖麻毒素在酸性条件下催化裸RNA的非特异性腺苷酸化和脱胍基化

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Ricin A-chain catalyzes the hydrolysis of the N-glycosidic bond of a conserved adenosine at position 4324 in the sarcin/ricin domain of 28S RNA of rat ribosome. The GAGA tetraloop closed by C-G pairs is required for recognition of the cleavage site on 28S ribosomal RNA by ricin A-chain. In this study, ricin A-chain (reduced ricin) exhibits specific depurination on a synthetic oligoribonucleotide (named SRD RNA) mimic of the sarcin/ricin domain of rat 28S ribosomal RNA under neutral and weak acidic conditions. Furthermore, the activity of intact ricin is also similar to that of ricin A-chain. However, under more acidic conditions, both enzymes lose their site specificity. The alteration in specificity of depurination is not dependent on the GAGA tetraloop of SRD RNA. A higher concentration of KCl inhibits the non-specific N-glycosidase activity much more than the specific activity of ricin A-chain. In addition, characterization of depurination sites by RNA sequencing reveals that under acidic conditions ricin A-chain can release not only adenines, but also guanines from SRD RNA or 5S ribosomal RNA. This is the first report of the non-specific deadenylation and deguanylation activity of ricin A-chain to the naked RNA under acidic conditions.
机译:蓖麻蛋白A链催化大鼠核糖体28S RNA的sarcin / ricin结构域中4324位保守腺苷的N-糖苷键的水解。由C-G对封闭的GAGA四环是通过蓖麻毒素A链识别28S核糖体RNA上的切割位点所必需的。在这项研究中,蓖麻毒蛋白A链(还原的蓖麻毒蛋白)在中性和弱酸性条件下,模仿大鼠28S核糖体RNA的sarcin / ricin结构域的合成寡核糖核苷酸(称为SRD RNA)具有特定的脱嘌呤作用。此外,完整的蓖麻毒蛋白的活性也类似于蓖麻毒蛋白A链的活性。但是,在更酸性的条件下,两种酶都失去了位点特异性。脱嘌呤特异性的改变不取决于SRD RNA的GAGA四环。较高浓度的KCl比蓖麻毒蛋白A链的比活性更能抑制非特异性N-糖苷酶的活性。此外,通过RNA测序对脱嘌呤位点的表征表明,在酸性条件下,蓖麻毒蛋白A链不仅可以从SRD RNA或5S核糖体RNA中释放腺嘌呤,而且还可以释放鸟嘌呤。这是关于在酸性条件下蓖麻蛋白A链对裸露的RNA的非特异性腺苷酸化和脱鸟苷化活性的首次报道。

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