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首页> 外文期刊>Molecular and Cellular Biology >Xenopus U3 snoRNA GAC-Box A′ and Box A Sequences Play Distinct Functional Roles in rRNA Processing
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Xenopus U3 snoRNA GAC-Box A′ and Box A Sequences Play Distinct Functional Roles in rRNA Processing

机译:非洲爪蟾U3 snoRNA GAC-Box A'和Box A序列在rRNA加工中发挥不同的功能

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Mutations in the 5′ portion of Xenopus U3 snoRNA were tested for function in oocytes. The results revealed a new cleavage site (A0) in the 3′ region of vertebrate external transcribed spacer sequences. In addition, U3 mutagenesis uncoupled cleavage at sites 1 and 2, flanking the 5′ and 3′ ends of 18S rRNA, and generated novel intermediates: 19S and 18.5S pre-rRNAs. Furthermore, specific nucleotides in Xenopus U3 snoRNA that are required for cleavages in pre-rRNA were identified: box A is essential for site A0 cleavage, the GAC-box A′ region is necessary for site 1 cleavage, and the 3′ end of box A′ and flanking nucleotides are required for site 2 cleavage. Differences between metazoan and yeast U3 snoRNA-mediated rRNA processing are enumerated. The data support a model where metazoan U3 snoRNA acts as a bridge to draw together the 5′ and 3′ ends of the 18S rRNA coding region within pre-rRNA to coordinate their cleavage.
机译:测试了非洲爪蟾U3 snoRNA 5'部分的突变在卵母细胞中的功能。结果揭示了在脊椎动物外部转录的间隔区序列的3'区域中的新切割位点(A0)。此外,U3诱变使位点1和2的解偶联解偶联,位于18S rRNA的5'和3'末端,并产生了新的中间体:19S和18.5S pre-rRNA。此外,还鉴定了在 Xenopus U3 snoRNA中进行pre-rRNA切割所需的特定核苷酸:框A对于位点A0切割必不可少,GAC-box A'区对于位点1切割必不可少,位点2的切割需要框A'的3'末端和侧翼核苷酸。列举了后生动物和酵母U3 snoRNA介导的rRNA处理之间的差异。数据支持了一种模型,其中后生动物U3 snoRNA充当桥梁,将pre-rRNA内18S rRNA编码区的5'和3'末端拉在一起,以协调它们的切割。

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