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Glycine

甘氨酸

Company: NACALAI TESQUE
Catalog#: 17109-35
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CENP-C Phosphorylation by CDK1 in vitro
Author:
Date:
2021-01-05
[Abstract]  

Accurate chromosome segregation during mitosis requires the kinetochore, a large protein complex, which makes a linkage between chromosomes and spindle microtubes. An essential kinetochore component, CENP-C, is phosphorylated by Cyclin-B-Cyclin dependent kinase 1 (CDK1) that is a master kinase for mitotic progression, promoting proper kinetochore assembly during mitosis. Here, we describe an in vitro CDK1 kinase assay to detect CENP-C phosphorylation using Phos-tag SDS-PAGE without radiolabeled ATP. Our protocol has advantages in ease and safety over conventional phosphorylation assays using [γ-32P]-ATP, which has potential hazards despite their better sensitivity. The protocol described here can be applicable to other kinases and be also useful for analysis of phospho-sites in

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[摘要]  [摘要]在有丝分裂过程中,准确的染色体分离需要动线粒体(一种大型蛋白复合物),使染色体与纺锤体微管之间形成联系。必需的线粒体成分CENP-C被细胞周期蛋白B-细胞周期蛋白依赖性激酶1(CDK1)磷酸化,该激酶是有丝分裂进程的主要激酶,在有丝分裂过程中促进适当的线粒体组装。在这里,我们描述了一种体外CDK1激酶测定法,可使用Phos -tag SDS-PAGE检测CENP-C磷酸化而无放射性ATP 。ø乌尔协议具有使用[γ-在容易且安全优于常规磷酸化试验的优点32 P] -ATP ,其具有潜在危险,尽管其敏感性更高。该协议describ编这里可以适用于其他激酶并且也用于在基板磷酸位点的分析是有用的体外。


[背景]细胞周期蛋白-B细胞周期蛋白依赖性激酶1(CDK1)是有丝分裂的主要调节剂,其磷酸化许多靶标以确保有丝分裂的进展(Nurse,1990 ; Malumbres and Barbacid ,2005 )。在有丝分裂期间,携带遗传信息的染色体被平均分为两个子细胞。线粒体是关键的大蛋白复合物,通过在染色体和纺锤体微管之间架桥来确保忠实的染色体分离(Fukagawa和Earnshaw,2014)。组成动线粒的各种蛋白质被CDK1磷酸化(Gascoigne等人,2013; Nishino等人,2013; Hara等人,2018b; ...

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 ...

Phos-tag Immunoblot Analysis for Detecting IRF5 Phosphorylation
Author:
Date:
2017-05-20
[Abstract]  While the activation of the transcription factor interferon regulatory factor 5 (IRF5) is critical for the induction of innate immune responses, it also contributes to the pathogenesis of the autoimmune disease systemic lupus erythematosus (SLE). IRF5 phosphorylation is a hallmark of its activation in the Toll-like receptor (TLR) pathway, where active IRF5 induces type I interferon and proinflammatory cytokine genes. By using the phosphate-binding molecule Phos-tag, without either radioisotopes or phospho-specific antibodies, the protocol described here enables detection of the phosphorylation of both human and murine IRF5, as well as that of other proteins. [摘要]  虽然转录因子干扰素调节因子5(IRF5)的激活对于诱导先天免疫应答至关重要,但也有助于自身免疫疾病系统性红斑狼疮(SLE)的发病机制。 IRF5磷酸化是其在Toll样受体(TLR)途径中的活化的标志,其中活性IRF5诱导I型干扰素和促炎细胞因子基因。通过使用不含放射性同位素或磷酸特异性抗体的磷酸结合分子磷酸标签,本文所述的方案可以检测人和鼠IRF5以及其他蛋白质的磷酸化。

背景 在TLR-MyD88途径中,IRF5通过翻译后修饰如泛素化和磷酸化被激活,然后活性IRF5转位到细胞核中并诱导其靶基因(Takaoka等人,2005; Balkhi ,2008; Tamura等人,2008; Hayden and Ghosh,2014)。关于IRF5在SLE中的激活状态,已经报道了IRF5积累在SLE患者的单核细胞核中(Stone等人,2012)。此外,我们最近在SLE鼠模型中显示,IRF5超激活(例如,升高的磷酸化)导致SLE样疾病的发展(Ban 等人,,2016年)。因此,分析IRF5的激活状态对于研究SLE以及先天免疫应答是重要的。磷酸化是IRF5激活的核心,因为许多研究已经通过定点诱变和/或质谱法揭示了IRF5的功能性磷酸化位点(Barnes等人,2002; Lin et al。等人,2005; ...

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