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Ssf1p可防止早期60S核糖体前体颗粒的过早加工。

Ssf1p prevents premature processing of an early pre-60S ribosomal particle.

作者信息

Fatica Alessandro, Cronshaw Andrew D, Dlakić Mensur, Tollervey David

机构信息

Wellcome Trust Centre for Cell Biology, United Kingdom.

出版信息

Mol Cell. 2002 Feb;9(2):341-51. doi: 10.1016/s1097-2765(02)00458-6.

Abstract

Ssf1p and Ssf2p are two nearly identical and functionally redundant nucleolar proteins. In the absence of Ssf1p and Ssf2p, the 27SA(2) pre-rRNA was prematurely cleaved, inhibiting synthesis of the 27SB and 7S pre-rRNAs and the 5.8S and 25S rRNA components of the large ribosomal subunit. On sucrose gradients, Ssf1p sedimented with pre-60S ribosomal particles. The 27SA(2), 27SA(3), and 27SB pre-rRNAs were copurified with tagged Ssf1p, as were 23 large subunit ribosomal proteins and 21 other proteins implicated in ribosome biogenesis. These included four Brix family proteins, Ssf1p, Rpf1p, Rpf2p, and Brx1p, indicating that the entire family functions in ribosome synthesis. This complex is distinct from recently reported pre-60S complexes in RNA and protein composition. We describe a multistep pathway of 60S preribosome maturation.

摘要

Ssf1p和Ssf2p是两种几乎相同且功能冗余的核仁蛋白。在缺乏Ssf1p和Ssf2p的情况下,27SA(2)前体rRNA会过早裂解,从而抑制27SB和7S前体rRNA以及大核糖体亚基的5.8S和25S rRNA组分的合成。在蔗糖梯度中,Ssf1p与60S前核糖体颗粒一起沉降。27SA(2)、27SA(3)和27SB前体rRNA与带有标签的Ssf1p共纯化,23种大亚基核糖体蛋白和其他21种与核糖体生物发生相关的蛋白也是如此。这些蛋白包括四种Brix家族蛋白、Ssf1p、Rpf1p、Rpf2p和Brx1p,表明整个家族在核糖体合成中发挥作用。该复合物在RNA和蛋白质组成上与最近报道的60S前体复合物不同。我们描述了60S前核糖体成熟的多步骤途径。

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