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一种系统的、无标记的方法,用于鉴定体内的 RNA 相关蛋白,为脊椎动物纤毛运动机制提供了新的见解。

A systematic, label-free method for identifying RNA-associated proteins in vivo provides insights into vertebrate ciliary beating machinery.

机构信息

Dept. of Molecular Biosciences, Center for Systems and Synthetic Biology, University of Texas, Austin, TX, 78712, USA.

Dept. of Molecular Biosciences, Center for Systems and Synthetic Biology, University of Texas, Austin, TX, 78712, USA.

出版信息

Dev Biol. 2020 Nov 1;467(1-2):108-117. doi: 10.1016/j.ydbio.2020.08.008. Epub 2020 Sep 6.

Abstract

Cell-type specific RNA-associated proteins are essential for development and homeostasis in animals. Despite a massive recent effort to systematically identify RNA-associated proteins, we currently have few comprehensive rosters of cell-type specific RNA-associated proteins in vertebrate tissues. Here, we demonstrate the feasibility of determining the RNA-associated proteome of a defined vertebrate embryonic tissue using DIF-FRAC, a systematic and universal (i.e., label-free) method. Application of DIF-FRAC to cultured tissue explants of Xenopus mucociliary epithelium identified dozens of known RNA-associated proteins as expected, but also several novel RNA-associated proteins, including proteins related to assembly of the mitotic spindle and regulation of ciliary beating. In particular, we show that the inner dynein arm tether Cfap44 is an RNA-associated protein that localizes not only to axonemes, but also to liquid-like organelles in the cytoplasm called DynAPs. This result led us to discover that DynAPs are generally enriched for RNA. Together, these data provide a useful resource for a deeper understanding of mucociliary epithelia and demonstrate that DIF-FRAC will be broadly applicable for systematic identification of RNA-associated proteins from embryonic tissues.

摘要

细胞类型特异性 RNA 相关蛋白对于动物的发育和稳态至关重要。尽管最近有大量的工作致力于系统地鉴定 RNA 相关蛋白,但我们目前在脊椎动物组织中仅有少数全面的细胞类型特异性 RNA 相关蛋白目录。在这里,我们通过 DIF-FRAC 证明了使用系统和通用(即无标记)方法确定特定脊椎动物胚胎组织的 RNA 相关蛋白质组的可行性。将 DIF-FRAC 应用于非洲爪蟾粘液纤毛上皮的培养组织外植体,如预期的那样鉴定出了数十种已知的 RNA 相关蛋白,但也鉴定出了几种新的 RNA 相关蛋白,包括与有丝分裂纺锤体组装和纤毛运动调节相关的蛋白。特别是,我们表明内动力蛋白臂的 Cfap44 接头蛋白是一种 RNA 相关蛋白,它不仅定位在轴丝上,还定位在细胞质中的称为 DynAPs 的类似液体的细胞器中。这一结果使我们发现 DynAPs 通常富含 RNA。这些数据共同为深入了解粘液纤毛上皮提供了有用的资源,并表明 DIF-FRAC 将广泛适用于从胚胎组织中系统鉴定 RNA 相关蛋白。

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