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RNaseIN

重组RNasin 核糖核酸酶抑制剂

Company: Promega
Catalog#: N2511
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Advances in Proximity Ligation in situ Hybridization (PLISH)
Author:
Date:
2020-11-05
[Abstract]  Understanding tissues in the context of development, maintenance and disease requires determining the molecular profiles of individual cells within their native in vivo spatial context. We developed a Proximity Ligation in situ Hybridization technology (PLISH) that enables quantitative measurement of single cell gene expression in intact tissues, which we have now updated. By recording spatial information for every profiled cell, PLISH enables retrospective mapping of distinct cell classes and inference of their in vivo interactions. PLISH has high sensitivity, specificity and signal to noise ratio. It is also rapid, scalable, and does not require expertise in molecular biology so it can be easily adopted by basic and clinical researchers. [摘要]  [摘要]在发育,维持和疾病的背景下了解组织需要确定单个细胞在其天然体内空间范围内的分子谱。我们开发了一种邻近连接原位杂交技术(PLISH),该技术能够定量测量完整组织中单细胞基因的表达,现已更新。通过记录每个分析细胞的空间信息,PLISH可以回顾性绘制不同细胞类别并推断其体内 互动。PLISH具有很高的灵敏度,特异性和信噪比。它也快速,可扩展,并且不需要分子生物学方面的专门知识,因此基础和临床研究人员可以轻松地采用它。

[背景技术]我们最近开发了一种复用原位称为PLISH(邻位连接杂交技术原位杂交)(Nagendran等人,2018)。PLISH与其他现有的空间转录组学技术不同,因为它结合了高性能,快速多路复用,低成本和技术简单性(Wilbrey -Clark等人,2020年)。可以通过自动计算完整的冷冻或石蜡包埋组织中单细胞表达图谱来分析PLISH结果,它与同时进行的免疫染色兼容。

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Novel Protein-oligonucleotide Conjugation Method Involving a High-affinity Capture HaloTag
Author:
Date:
2020-09-20
[Abstract]  Highly sensitive quantitative protein profiling can play a key role in the early diagnosis of diseases, such as autoimmune diseases and cancer. We developed a modified protein-oligonucleotide conjugation method termed HaloTag-mediated barcoding, for quantifying protein molecules at a higher sensitivity than conventional protein quantification methods. This novel and efficient conjugation method can be used to prepare HaloTag-barcoded proteins using a click chemistry-based labeling technique. Here, we describe the preparation of protein-DNA complexes and detection of protein-protein interactions which can be used in a HaloTag protein barcode assay to detect an antibody. The protocol includes procedures for preparing the ligand-oligonucleotide complex, plasmid DNA preparation for protein ... [摘要]  [摘要 ] 高灵敏度的定量蛋白质谱分析可以在疾病的早期诊断中发挥关键作用,例如自身免疫性疾病和癌症。我们开发了一种改良的蛋白质-寡核苷酸缀合方法,称为HaloTag 介导的条形码,用于以比常规蛋白质定量方法更高的灵敏度来定量蛋白质分子。可以使用这种基于点击化学的标记技术,将这种新颖而有效的结合方法用于制备HaloTag 条形码蛋白。在这里,我们描述了可在HaloTag中使用的蛋白质-DNA复合物的制备和蛋白质-蛋白质相互作用的检测 蛋白质条形码检测以检测抗体。该方案包括制备配体-寡核苷酸复合物的程序,用于蛋白质表达的质粒DNA制备以及蛋白质-寡核苷酸复合物的制备。所描述的基于点击反应的方案简化了常规胺-酯反应方法,该方法需要色谱纯化的额外步骤。

[背景 ] 蛋白质分子可通过常规实验进行定量酶联免疫吸附测定法,western印迹和质谱的方法,例如。这些常规的定量蛋白质谱分析技术涉及使用校准曲线进行相对测量,而没有考虑DNA扩增的高灵敏度,这限制了蛋白质本身绝对量的检测。化学蛋白质组学成为可能多重测定我n中的相对定量方式,例如串联质量标签标记方法加上质谱(汤普森等人,2003 )。蛋白质条形码技术与下一代测序技术相结合已经可以识别目标蛋白质分子。这些方法包括CITE- SEQ ,的Ab- SEQ 和L1 BRA- SEQ ...

Analysis of in vivo Interaction between RNA Binding Proteins and Their RNA Targets by UV Cross-linking and Immunoprecipitation (CLIP) Method
Author:
Date:
2017-05-20
[Abstract]  RNA metabolism is tightly controlled across different tissues and developmental stages, and its dysregulation is one of the molecular hallmarks of cancer. Through direct binding to specific sequence element(s), RNA binding proteins (RBPs) play a pivotal role in co- and post-transcriptional RNA regulatory events. We have recently demonstrated that, in pancreatic cancer cells, acquisition of a drug resistant (DR)-phenotype relied on upregulation of the polypyrimidine tract binding protein (PTBP1), which in turn is recruited to the pyruvate kinase pre-mRNA and favors splicing of the oncogenic PKM2 variant. Herein, we describe a step-by-step protocol of the ultraviolet (UV) light cross-linking and immunoprecipitation (CLIP) method to determine the direct binding of an RBP to specific regions ... [摘要]  RNA代谢在不同的组织和发育阶段被严格控制,其失调是癌症的分子特征之一。 通过直接结合特定的序列元件,RNA结合蛋白(RBP)在共转录和转录后调控事件中起关键作用。 我们最近证实,在胰腺癌细胞中,获得耐药(DR) - 表型取决于多聚嘧啶区结合蛋白(PTBP1)的上调,其又被引入丙酮酸激酶前mRNA并有利于剪接 致癌性PKM2变体。 在这里,我们描述了紫外(UV)光交联和免疫沉淀(CLIP)方法的逐步方案,以确定RBP与贴壁人细胞系中其目标RNA的特定区域的直接结合。

背景 在细胞核中转录时,新生的RNA立即与被称为RNA结合蛋白(RBP)的反式因子立即组装。这些因子直接与RNA分子中特定的顺式调控序列相互作用,从而形成核糖核蛋白(RNP)复合物(Dreyfuss et al。,2002; ...

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