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Ribosome biogenesis requires a highly diverged XRN family 5′→3′ exoribonuclease for rRNA processing in Trypanosoma brucei

机译:核糖体生物发生需要布鲁氏锥虫中rRNA加工的高度分散的XRN家族5'→3'核糖核酸外切酶

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Although biogenesis of ribosomes is a crucial process in all organisms and is thus well conserved, Trypanosoma brucei ribosome biogenesis, of which maturation of rRNAs is an early step, has multiple points of divergence. Our aim was to determine whether in the processing of the pre-rRNA precursor molecule, 5′→3′ exoribonuclease activity in addition to endonucleolytic cleavage is necessary in T. brucei as in other organisms. Our approach initiated with the bioinformatic identification of a putative 5 ′→3′ exoribonuclease, XRNE, which is highly diverged from the XRN2/Rat1 enzyme responsible for rRNA processing in other organisms. Tagging this protein in vivo allowed us to classify XRNE as nucleolar by indirect immunofluorescence and identify by copurification interacting proteins, many of which were ribosomal proteins, ribosome biogenesis proteins, and/or RNA processing proteins. To determine whether XRNE plays a role in ribosome biogenesis in procyclic form cells, we inducibly depleted the protein by RNA interference. This resulted in the generation of aberrant preprocessed 18S rRNA and 5′ extended 5.8S rRNA, implicating XRNE in rRNA processing. Polysome profiles of XRNE-depleted cells demonstrated abnormal features including an increase in ribosome small subunit abundance, a decrease in large subunit abundance, and defects in polysome assembly. Furthermore, the 5′ extended 5.8S rRNA in XRNE-depleted cells was observed in the large subunit, monosomes, and polysomes in this gradient. Therefore, the function of XRNE in rRNA processing, presumably due to exonucleolytic activity very early in ribosome biogenesis, has consequences that persist throughout all biogenesis stages.
机译:尽管核糖体的生物发生在所有生物中都是至关重要的过程,因此得到了很好的保存,但是布鲁氏锥虫核糖体的生物发生(rRNA的成熟是一个早期步骤)具有多个分歧点。我们的目标是确定在r-RNA前体分子的加工过程中,是否需要像其他生物一样在布鲁氏杆菌中除内切核酸酶裂解外还需要5'→3'核糖核酸外切酶活性。我们的方法始于对5'→3'外切核糖核酸酶XRNE的生物信息学鉴定,该酶与负责其他生物中rRNA加工的XRN2 / Rat1酶高度不同。在体内标记该蛋白使我们能够通过间接免疫荧光将XRNE归类为核仁,并通过共纯化来鉴定相互作用的蛋白,其中许多是核糖体蛋白,核糖体生物发生蛋白和/或RNA加工蛋白。为了确定XRNE是否在前环形式细胞的核糖体生物发生中起作用,我们通过RNA干扰诱导性地消耗了该蛋白质。这导致异常的预处理18S rRNA和5'延伸的5.8S rRNA的产生,这牵涉XRNE参与rRNA加工。 XRNE耗尽的细胞的多核糖体图谱显示异常特征,包括核糖体小亚基丰度增加,大亚基丰度降低以及多核糖体装配缺陷。此外,在该梯度中的大亚基,单核糖体和多核糖体中,在XRNE耗尽的细胞中观察到5'延伸的5.8S rRNA。因此,推测XRNE在rRNA加工中的功能可能是由于在核糖体生物发生的早期就存在核酸外切酶活性,因此其后果在所有生物发生阶段均持续存在。

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