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利用调控遗传互补系统解析布鲁氏锥虫 RRP44 在分段核糖体 RNA 成熟中的功能。

Dissecting Trypanosoma brucei RRP44 function in the maturation of segmented ribosomal RNA using a regulated genetic complementation system.

机构信息

Carlos Chagas Institute, Oswaldo Cruz Foundation, FIOCRUZ, R. Prof. Algacyr Munhoz Mader 3775, 81350-010, Curitiba-PR, Brazil.

Biochemistry Postgraduate Program, Federal University of Paraná, Curitiba-PR, Brazil.

出版信息

Nucleic Acids Res. 2023 Jan 11;51(1):396-419. doi: 10.1093/nar/gkac1217.

Abstract

Trypanosoma brucei belongs to a group of protozoans presenting fragmented large subunit rRNA. Its LSU rRNA equivalent to the 25S/28S rRNA of other eukaryotes is split into six fragments, requiring additional processing for removal of the extra spacer sequences. We have used a genetic complementation strategy to further investigate the T. brucei RRP44 nuclease in pre-rRNA maturation. TbRRP44 contains both a PIN and a RNB domain whose homologues are found in association with the exosome complex. We found that the exonucleolytic activity of the RNB domain as well as the physical presence of the PIN domain are essential for TbRRP44 function, while a catalytic site mutation in the PIN domain has no detectable effect on cell growth. A new endonucleolytic cleavage site in ITS1 was identified. In addition to the 5.8S rRNA 3'-end maturation, TbRRP44 is required for degradation of the excised 5'-ETS and for removal of part of ITS1 during maturation of the 18S rRNA 3'-end. TbRRP44 deficiency leads to accumulation of many LSU intermediate precursors, most of them not detected in control cells. TbRRP44 is also required for U3 snoRNA and spliced leader processing, indicating that TbRRP44 may have a wide role in RNA processing in T. brucei.

摘要

布氏锥虫属于一组呈现断裂大亚基 rRNA 的原生动物。其 LSU rRNA 相当于其他真核生物的 25S/28S rRNA 被分成六个片段,需要进一步加工去除额外的间隔序列。我们使用遗传互补策略进一步研究了 T. brucei RRP44 核酸内切酶在前 rRNA 成熟中的作用。TbRRP44 包含一个 PIN 和一个 RNB 结构域,其同源物与核酶复合物有关。我们发现 RNB 结构域的外切核酸酶活性以及 PIN 结构域的物理存在对于 TbRRP44 功能至关重要,而 PIN 结构域中的催化位点突变对细胞生长没有可检测的影响。在 ITS1 中鉴定了一个新的内切酶切割位点。除了 5.8S rRNA 3'-末端成熟外,TbRRP44 还需要降解切除的 5'-ETS,并在 18S rRNA 3'-末端成熟过程中去除 ITS1 的一部分。TbRRP44 缺陷导致许多 LSU 中间前体的积累,其中大多数在对照细胞中未检测到。TbRRP44 还需要 U3 snoRNA 和剪接前体的加工,表明 TbRRP44 在 T. brucei 的 RNA 加工中可能具有广泛的作用。

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