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3× FLAG peptide (DYKDDDDK)

3X FLAG

Company: Sigma-Aldrich
Catalog#: F4799
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In vitro Reconstitution Assays of Arabidopsis 20S Proteasome
Author:
Date:
2021-04-05
[Abstract]  

The majority of cellular proteins are degraded by the 26S proteasome in eukaryotes. However, intrinsically disordered proteins (IDPs), which contain large portions of unstructured regions and are inherently unstable, are degraded via the ubiquitin-independent 20S proteasome. Emerging evidence indicates that plant IDP homeostasis may also be controlled by the 20S proteasome. Relatively little is known about the specific functions of the 20S proteasome and the regulatory mechanisms of IDP degradation in plants compared to other species because there is a lack of systematic protocols for in vitro assembly of this complex to perform in vitro degradation assays. Here, we present a detailed protocol of in vitro reconstitution assay of the 20S proteasome in Arabidopsis by modifying previously

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[摘要]  [摘要]大多数细胞蛋白的s的降解通过26S在真核生物蛋白酶。但是,内在无序的蛋白质(IDPs)包含大量的非结构化区域,并且内在地不稳定,因此很容易通过不依赖泛素的20S蛋白酶体降解。越来越多的证据最近显示ň植物境内流离失所者的平衡也可以通过20S蛋白酶控制。但是,由于缺乏用于体外分离20S蛋白酶体和降解测定的系统协议,因此我们对植物中IDP和20S蛋白酶体降解的功能和调控机制的研究和理解一直处于婴儿期与其他生物。在这里,我们通过采用和修改先前公开的方法,对拟南芥中20S蛋白酶体进行体外重组测定的详细方案。在此获得20S核心蛋白酶体的主要策略是从26S蛋白酶体中去除19S调节亚基。该协议包括两个主要部分:1)的来自表达表位标记的PAG1稳定的转基因品系20S蛋白酶体亲和纯化,的20S蛋白酶(程序AD)的基本组成部分; 2 )体外20S蛋白酶体降解测定法(方法E)。我们预计该协议将提供一种简单有效的方法来研究体外20S蛋白酶体降解,并促进植物中蛋白质代谢的研究。

[背景]蛋白质的降解通常是通过真核生物中的蛋白酶体来实现的。整合的26S蛋白酶体由两个亚颗粒组成:一个或两个末端的19S调节颗粒(RP),用作蛋白酶体激活剂;和20S核心蛋白酶体(CP),执行降解过程。大多数真核蛋白被多聚泛素化并导入26S蛋白酶体进行降解。然而,含有固有蛋白质无序已发现的区域直接通过破坏一个由20S蛋白酶的泛素依赖性降解(本日产等人,2014) ...

Native Co-immunoprecipitation Assay to Identify Interacting Partners of Chromatin-associated Proteins in Mammalian Cells
Author:
Date:
2020-12-05
[Abstract]  

Protein-protein interactions play key roles in nuclear processes including transcription, replication, DNA damage repair, and recombination. Co-immunoprecipitation (Co-IP) followed by western blot or mass spectrometry is an invaluable approach to identify protein-protein interactions. One of the challenges in the Co-IP of a protein localized to nucleus is the extraction of nuclear proteins from sub-nuclear fractions without losing physiologically relevant protein interactions. Here we describe a protocol for native Co-IP, which was originally used to successfully identify previously known as well novel topoisomerase 1 (TOP1) interacting proteins. In this protocol, we first extracted nuclear proteins by sequentially increasing detergent and salt concentrations, the extracted fractions were

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[摘要]  [摘要]蛋白质间相互作用 在核过程中起关键作用,包括转录,复制,DNA损伤修复和重组。免疫共沉淀(Co-IP),然后进行蛋白质印迹或质谱分析是鉴定蛋白质-蛋白质相互作用的宝贵方法。在Co-IP中定位于细胞核的蛋白质中的挑战之一是从亚核级分中提取核蛋白质,而又不会失去生理上相关的蛋白质相互作用。在这里,我们描述了一种用于天然Co-IP的协议,该协议最初用于成功地识别以前称为新拓扑拓扑异构酶1(TOP1)相互作用的蛋白质。在此协议中,我们首先通过依次增加去污剂和盐浓度来提取核蛋白,然后将提取的级分稀释,合并并用于Co-IP。该协议可用于鉴定多种哺乳动物细胞中其他染色质相关蛋白的蛋白相互作用组。


背景]钴- IP被广泛地被使用,以解开的错综复杂的关系之间的蛋白复合物和各种染色质交易期间的复制,转录,和基因组的维护。但是,它是具有挑战性的,以保持不稳定的蛋白质-蛋白质相互作用的完整过程中提取,免疫沉淀和一个共同的IP实验的洗涤步骤。稳定不稳定蛋白质相互作用的一种方法是在细胞裂解之前用细胞可渗透的可逆化学交联剂(例如丙酸二硫代双琥珀酰亚胺酯)处理细胞(Smith等人,2011)。由于该方法伴随着诸如提取效率低和非特异性蛋白质捕获之类的缺点,因此优选不交联的Co-IP(天然IP)。

一核蛋白质可以被分配到不同的子-核舱或染色质区域是需要不同程度的严格性为它的提取和溶解。对于例如,TOP ...

In vitro Engineered DNA-binding Molecule-mediated Chromatin Immunoprecipitation (in vitro enChIP) Using CRISPR Ribonucleoproteins in Combination with Next-generation Sequencing (in vitro enChIP-Seq) for the Identification of Chromosomal Interactions
Author:
Date:
2017-11-20
[Abstract]  We have developed locus-specific chromatin immunoprecipitation (locus-specific ChIP) technologies consisting of insertional ChIP (iChIP) and engineered DNA-binding molecule-mediated ChIP (enChIP). Locus-specific ChIP is a method to isolate a genomic region of interest from cells while it also identifies what binds to this region using mass spectrometry (for protein) or next generation sequencing (for RNA or DNA) as described in Fujita et al. (2016a). Recently, we identified genomic regions that physically interact with a locus using an updated form of enChIP, in vitro enChIP, in combination with NGS (in vitro enChIP-Seq) (Fujita et al., 2017a). Here, we describe a protocol on in vitro enChIP to isolate a target locus for identification of ... [摘要]  我们开发了基因座特异性染色质免疫沉淀(基因座特异性芯片)技术,包括插入ChIP(iChIP)和工程DNA-结合分子介导ChIP(enChIP)。 基因座特异性ChIP是一种从细胞中分离感兴趣的基因组区域的方法,同时它还使用质谱(用于蛋白质)或下一代测序(用于RNA或DNA)鉴定什么与该区域结合,如Fujita等人 (2016a)。 最近,我们使用更新后的enChIP形式,结合NGS( in vitro enChIP-Seq),鉴定了与基因座物理相互作用的基因组区域(Fujimita et al。,2017a)。 在这里,我们描述了一个体外试验的方法,用于分离靶基因座以鉴定与基因座物理相互作用的基因组区域。
【背景】阐明基因组功能强调的分子机制需要鉴定与感兴趣的基因组区域相互作用的分子。为此,我们开发了由插入ChIP(iChIP)和工程化DNA结合分子介导的ChIP(enChIP)组成的基因座特异性染色质免疫沉淀技术(基因座特异性ChIP)技术(Fujita等人 ...

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