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Protein expression

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facet applications:Protein expression
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Duolink® 原位精简操作指南 - 荧光
本页详细介绍了Duolink®原位精简实验方案
Duolink® PLA明场实验方案
使用明场显微镜和Duolink® PLA试剂用于检测和定量组织和细胞样品中的个体蛋白质、蛋白质修饰和蛋白质相互作用。
酵母转化实验方法
酵母因能够快速生长并具有分散的细胞而被认为是用于真核生物研究的模范系统。
酵母生长实验方案
酵母因能够快速生长并具有分散的细胞而被认为是用于真核生物研究的模范系统。酵母培养物可采用类似于细菌培养物的技术在液体培养基或琼脂平板上进行生长、维持和保存。
Duolink® PLA Probemaker指南
用于免疫荧光或明场检测的定制PLA探针的创建指南。
二代无细胞蛋白质表达试剂盒(小麦胚芽)(CFPS700)实验方案
无细胞蛋白合成试剂盒分三个阶段合成蛋白:转录模板制备、转录和翻译。
通过Duolink®邻位连接技术研究蛋白质互作
上方视频介绍了如何在单次实验中通过简单直接的方法检测、定量和胞内定位蛋白质互作及其修饰情况。
Duolink® PLA多色检测方案
使用荧光显微镜和多色试剂同时检测、可视化和定量一个组织或细胞样本中多达4种的蛋白、蛋白修饰或蛋白互作。
Duolink®PLA流式检测方案
本实验方案描述如何使用Duolink® PLA邻位连接试剂,通过流式细胞术检测细胞群内的单个蛋白质、蛋白修饰和蛋白相互。
Duolink In Situ后复染实验方案
我们建议在Duolink In Situ 荧光用户手册的第7.3节第5步完成扩增步骤后进行复染操作。
如何创建PLA®探针
Duolink®试剂盒使用原位PLA®技术(一种邻位连接检测技术)准确、客观地量化单个蛋白质,以及这些蛋白在未修饰细胞和组织中的互作和修饰。
ALiCE®无细胞蛋白质表达系统的实验方案
ALiCE®无细胞蛋白表达系统可高产率合成蛋白,并在数小时而不是数周内获得“难以生产”的蛋白质。
ALiCE®Cell-Free Protein Synthesis System Protocol
Achieve high protein yields with the ALiCE® Cell-Free Protein Synthesis System that allows you to obtain “difficult to produce” proteins in a matter of hours instead of weeks.
Counterstaining after the Duolink In Situ Protocol
We recommend applying the counterstaining protocol after the completion of the Amplification step in section 7.3, step 5 of the Duolink In Situ Fluorescence User Manual.
Handling Inclusion Bodies in Recombinant Protein Expression
How to isolate proteins from inclusion bodies using Cytiva products.
Duolink® PLA Fluorescence Protocol
This protocol describes how to perform immunofluorescent detection of proteins in cells and tissue.
Duolink® PLA Flow Cytometry Protocol
Protocol for use of Duolink® PLA reagents for the detection of individual proteins, protein modifications, and protein-protein interactions within cell populations by flow cytometry.
Using Duolink® in Protein Interaction Studies
The video follows the simple and straightforward procedure that allows you to detect, quantify and obtain cell localization of protein interactions and their modifications in a single experiment.
Measuring Kinase Inhibitor Residence Times
Jump dilution protocol to determine the residence time of a drug (or drug candidate) during its interaction with a kinase using a fluorescence polarization assay based on the detection of ADP.
Yeast Growth Protocols
Yeasts are considered model systems for eukaryotic studies as they exhibit fast growth and have dispersed cells. Yeast cultures can be grown, maintained, and stored in liquid media or on agar plates using techniques similar to those for bacterial cultures.
Liberase™ TM Research Grade Protocol & Troubleshooting
Liberase™ TM Research Grade Protocol & Troubleshooting
AliCE® Cell-Free Protein Synthesis Kit Quick Start Guide
Follow these five quick steps to perform cell-free protein synthesis using the ALiCE® protein expression plant lysate kit.
Next Generation Cell Free Protein Expression Kit (Wheat Germ) (CFPS700) PROTOCOL
Protein synthesis using cell-free protein synthesis reagent kit consists of three stages: preparation of transcription template, transcription and translation.
cOmplete™ Protocol
It is possible dissolve 1 tablet in as little as 2 ml double distilled Water, results in a 25x stock solution, without difficulty.
Duolink® PLA Probemaker Guide
Guide to create custom PLA probes for immunofluorescent or brightfield detection.
Duolink® PLA Multicolor Detection Protocol
Duolink® PLA Multicolor Detection Protocol
Duolink® PLA Brightfield Protocol
This protocol describes the use of Duolink® PLA reagents for the brightfield detection, visualization, and quantification of individual proteins, protein modifications, and protein interactions in tissue and cell samples.
Duolink® In Situ Short Instructions - Fluorescence
This page details the Duolink® In Situ Short Protocol for fluorescence detection
How to Create PLA® Probes
Duolink® kits use in situ PLA®, a proximity ligation assay technology, to accurately and objectively quantify individual proteins, and their interactions and modifications in unmodified cells and tissue.
Yeast Transformation Protocols
Yeasts are considered model systems for eukaryotic studies as they exhibit fast growth and have dispersed cells.
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