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All three functional domains of the large ribosomal subunit protein L25 are required for both early and late pre-rRNA processing steps in Saccharomyces cerevisiae

机译:酿酒酵母早期和晚期pre-rRNA加工步骤都需要大核糖体亚基蛋白L25的所有三个功能域

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摘要

Mutational analysis has shown that the integrity of the region in domain III of 25S rRNA that is involved in binding of ribosomal protein L25 is essential for the production of mature 25S rRNA in the yeast Saccharomyces cerevisiae. However, even structural alterations that do not noticeably affect recognition by L25, as measured by an in vitro assay, strongly reduced 25S rRNA formation by inhibiting the removal of ITS2 from the 27SB precursor. In order to analyze the role of L25 in yeast pre-rRNA processing further we studied the effect of genetic depletion of the protein or mutation of each of its three previously identified functional domains, involved in nuclear import (N-terminal), RNA binding (central) and 60S subunit assembly (C-terminal), respectively. Depletion of L25 or mutating its (pre-)rRNA-binding domain blocked conversion of the 27SB precursor to 5.8S/25S rRNA, confirming that assembly of L25 is essential for ITS2 processing. However, mutations in either the N- or the C-terminal domain of L25, which only marginally affect its ability to bind to (pre-)rRNA, also resulted in defective ITS2 processing. Furthermore, in all cases there was a notable reduction in the efficiency of processing at the early cleavage sites A0, A1 and A2. We conclude that the assembly of L25 is necessary but not sufficient for removal of ITS2, as well as for fully efficient cleavage at the early sites. Additional elements located in the N- as well as C-terminal domains of L25 are required for both aspects of pre-rRNA processing.
机译:突变分析表明,25S rRNA结构域III中与核糖体蛋白L25结合有关的区域的完整性对于在酿酒酵母中产生成熟的25S rRNA至关重要。然而,通过体外测定所测量的,即使是不会显着影响L25识别的结构改变,也可通过抑制ITS2从27SB前体中的去除而大大降低25S rRNA的形成。为了进一步分析L25在酵母pre-rRNA加工中的作用,我们进一步研究了蛋白质的遗传耗竭或其三个先前确定的功能域(涉及核输入(N-末端),RNA结合(中央)和60S子单元组件(C端)。 L25的耗尽或使其(pre)rRNA结合域发生突变,阻止了27SB前体向5.8S / 25S rRNA的转化,这证实L25的组装对于ITS2加工至关重要。但是,L25的N端或C端结构域中的突变(仅略微影响其与(前)rRNA的结合能力)也会导致ITS2处理缺陷。此外,在所有情况下,早期切割位点A0,A1和A2处的加工效率均显着降低。我们得出结论,L25的组装是必需的,但不足以去除ITS2,以及在早期位点进行完全有效的切割。 r25预处理前的两个方面都需要位于L25的N端和C端结构域的其他元件。

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