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Ethanol absolute for analysis

Company: Sigma-Aldrich
Catalog#: 1009832500
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Identification of Intrinsic RNA Binding Specificity of Purified Proteins by in vitro RNA Immunoprecipitation (vitRIP)
Author:
Date:
2021-03-05
[Abstract]  

RNA-protein interactions are often mediated by dedicated canonical RNA binding domains. However, interactions through non-canonical domains with unknown specificity are increasingly observed, raising the question how RNA targets are recognized. Knowledge of the intrinsic RNA binding specificity contributes to the understanding of target selectivity and function of an individual protein.


The presented in vitro RNA immunoprecipitation assay (vitRIP) uncovers intrinsic RNA binding specificities of isolated proteins using the total cellular RNA pool as a library. Total RNA extracted from cells or tissues is incubated with purified recombinant proteins, RNA-protein complexes are immunoprecipitated and bound transcripts are identified by deep sequencing or quantitative RT-PCR.

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[摘要]  [摘要] RNA-蛋白质相互作用通常由专门的规范RNA结合域介导。然而,越来越多地观察到通过具有未知特异性的非经典结构域的相互作用,这提出了如何识别RNA靶标的问题。内在的RNA结合特异性的知识有助于理解单个蛋白质的靶标选择性和功能。

所呈现的体外RNA免疫沉淀测定法(vitRIP )揭示固有RNA使用总细胞RNA池作为分离的蛋白质的结合特异性一个库。从细胞或组织中提取的总RNA与纯化的重组蛋白孵育,免疫沉淀RNA-蛋白复合物,并通过深度测序或定量RT-PCR鉴定结合的转录物。这些RNA中丰富的RNA类和核苷酸频率决定了重组蛋白的固有特异性。该简单而通用的方案可适用于任何细胞类型或组织的其他RNA结合蛋白和总RNA文库。



图形摘要:


图1.体外RNA免疫沉淀(vitRIP )方案示意图

[背景]真核细胞包含许多不同的RNA类,具有成千上万的RNA种类以及与之相互作用的高度多样化的蛋白质。根据结合的RNA序列或结构的定义以及相互作用中涉及的蛋白质结构域的不同,RNA-蛋白质相互作用可分为特异性和非特异性(Jankowsky和Harris,2015)。越来越多地观察到通过未知特异性的非经典RNA结合结构域进行的RNA相互作用,这提出了如何识别专用RNA靶标的问题。 ...

A SsrA/NIa-based Strategy for Post-Translational Regulation of Protein Levels in Gram-negative Bacteria
Author:
Date:
2020-07-20
[Abstract]  Strategies to control the levels of key enzymes of bacterial metabolism are commonly based on the manipulation of gene of interest within the target pathway. The development of new protocols towards the manipulation of biochemical processes is still a major challenge in the field of metabolic engineering. On this background, the FENIX (functional engineering of SsrA/NIa-based flux control) system allows for the post-translational regulation of protein levels, providing both independent control of the steady-state protein amounts and inducible accumulation of target proteins. This strategy enables an extra layer of control over metabolic fluxes in bacterial cell factories (see Graphical abstract below). The protocol detailed here describes the steps needed to design FENIX-tagged ... [摘要]  [摘要 ] 控制细菌代谢关键酶水平的策略通常基于目标途径内目标基因的操纵。朝着生化过程的操纵发展新协议仍然是代谢工程领域的主要挑战。在此背景下,FENIX(基于SsrA / NIa的流量控制功能工程)系统可进行蛋白质水平的翻译后调节,既提供对稳态蛋白质量的独立控制,又可诱导焦油获得蛋白质的积累。这一战略ENABL 上课了代谢流和细菌细胞工厂控制的一个额外层(见图形抽象下文)。此处详细介绍的协议描述了设计FENIX标签的蛋白质并使系统适应几乎所有代谢通量微调途径的步骤。



D:\重新格式化\ 2020-5-6 \ 1903046--1448贡萨洛·杜兰特714707 \图jpg \图1.jpg

图形概要

[背景 ] 控制蛋白质生产已成为已被一个具有挑战性的问题主要是解决由操纵它的生产的不同层次的调节,如所产生的DNA水平或蛋白质的(一个或多个)的量(吴等人,2016 ; Avcilar- Kucukgoze 等人,2017)。在DNA方面,已经在几种微生物中广泛研究了转录和翻译,从而能够设计和开发大量合成电路以改善生物生产过程(Guzmán 等,1995 ; Lutz 和Bujard ,1997)。相比之下,对蛋白质水平的研究较少,主要基于RNA干扰,核糖调节剂和特定的转录调节子(Isaacs ...

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