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果蝇组织特异性核糖体分析。

Tissue-Specific Ribosome Profiling in Drosophila.

机构信息

Broad Institute of MIT and Harvard, Cambridge, MA, USA.

Department of Neurobiology, University of Southern California, Los Angeles, CA, USA.

出版信息

Methods Mol Biol. 2021;2252:175-188. doi: 10.1007/978-1-0716-1150-0_7.

Abstract

Robust mechanisms exist that serve to dynamically regulate the translation of mRNA into proteins across heterogeneous tissues. These processes ensure timely generation of proteins in quantities that scale with the demands of specific cell types. Importantly, this translational regulation occurs with spatiotemporal precision and is capable of recalibration as conditions change. Aberrant regulation of translation contributes to and exacerbates a wide range of diseases. Although dynamic control of translation is an essential and fundamental process shared by organisms, specific tissues and cell types can be differentially impacted by circumstances that challenge and impair basal translation, highlighting the heterogeneous nature of translational regulation. To understand how translation is differentially regulated during changing environments and across specific cells and tissues, methods capable of profiling translation in specific tissues and cells are crucial. Here, we describe a method for profiling genome-wide translation in specific tissues or cell types in Drosophila melanogaster, in which we combine ribosome affinity purification with ribosome profiling to enable a simplified protocol for robust analysis of translation in specific tissues.

摘要

存在强大的机制,可以动态调节 mRNA 在不同组织中的翻译,从而确保蛋白质的及时生成,其数量与特定细胞类型的需求相匹配。重要的是,这种翻译调节具有时空精度,并能够在条件变化时重新校准。翻译的异常调节导致并加剧了广泛的疾病。尽管翻译的动态控制是生物体共有的一个基本和必要的过程,但特定的组织和细胞类型可能会受到挑战和损害基础翻译的情况产生不同的影响,这突出了翻译调节的异质性。为了了解在不断变化的环境中以及在特定细胞和组织中,翻译是如何不同地调节的,能够在特定组织和细胞中对翻译进行分析的方法是至关重要的。在这里,我们描述了一种在果蝇中对特定组织或细胞类型进行全基因组翻译分析的方法,我们将核糖体亲和纯化与核糖体分析结合起来,为在特定组织中进行稳健的翻译分析提供了简化的方案。

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