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串联亲和纯化结合诱导性 shRNA 表达作为研究大分子组装体成熟的工具。

Tandem affinity purification combined with inducible shRNA expression as a tool to study the maturation of macromolecular assemblies.

机构信息

Institute of Biochemistry, ETH Zurich, CH-8093 Zurich, Switzerland.

出版信息

RNA. 2011 Jan;17(1):189-200. doi: 10.1261/rna.2325911. Epub 2010 Nov 19.

DOI:10.1261/rna.2325911
PMID:21097556
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3004060/
Abstract

Tandem affinity purification (TAP) is an efficient method for the purification and characterization of large macromolecular complexes. To elucidate the role of specific components of such complexes, it is important to address the question of how loss of a specific factor affects complex composition. Here, we introduce a method that combines TAP of large macromolecular assemblies with inducible shRNA-mediated protein depletion in human somatic cells. As a proof of principle, we have applied this method to the purification of human pre-ribosomal particles. Using inducible expression of ribosome assembly factors as bait proteins, different pre-40S particles could be isolated and characterized, revealing high conservation of the ribosome biogenesis pathway from yeast to human cells. Besides known ribosome maturation factors, C21orf70 was identified as a novel pre-40S component. By combining TAP of pre-40S particles with shRNA-mediated depletion of the pre-40S-associated protein kinase Rio2, we observed that increased levels of the nuclear HEAT-repeat protein Rrp12 are associated with 40S precursors in absence of Rio2. Further analyses revealed that Rrp12 is partially mislocalized to the cytoplasm and trapped on late 40S precursors upon loss of Rio2, and therefore fails to efficiently recycle to the nucleus. Thus, the combination of tandem affinity purification and shRNA induction provided further insights into late cytoplasmic 40S maturation steps, demonstrating the high potential of this method.

摘要

串联亲和纯化(TAP)是一种用于大规模高分子复合物的纯化和特性分析的有效方法。为了阐明这些复合物中特定成分的作用,重要的是要解决特定因子的缺失如何影响复合物组成的问题。在这里,我们介绍了一种将大规模高分子组装的 TAP 与人类体细胞中诱导型 shRNA 介导的蛋白质缺失相结合的方法。作为原理验证,我们已经将该方法应用于人核前核糖体颗粒的纯化。通过诱导表达核糖体组装因子作为诱饵蛋白,可以分离和表征不同的前 40S 颗粒,从而揭示了从酵母到人细胞的核糖体生物发生途径的高度保守性。除了已知的核糖体成熟因子外,C21orf70 被鉴定为新的前 40S 成分。通过将前 40S 颗粒的 TAP 与 shRNA 介导的前 40S 相关蛋白激酶 Rio2 的缺失相结合,我们观察到在 Rio2 缺失的情况下,核 HEAT 重复蛋白 Rrp12 的水平升高与 40S 前体相关。进一步的分析表明,Rrp12 部分定位到细胞质中,并在前体 Rio2 缺失时被困在前体 40S 上,因此不能有效地循环到核中。因此,串联亲和纯化和 shRNA 诱导的结合为晚期细胞质 40S 成熟步骤提供了进一步的见解,证明了这种方法的巨大潜力。

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The Noc-domain containing C-terminus of Noc4p mediates both formation of the Noc4p-Nop14p submodule and its incorporation into the SSU processome.Noc4p 的 Noc 结构域包含 C 末端,介导 Noc4p-Nop14p 亚基的形成及其掺入到 SSU 加工体。
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