Florencia Villafañez, Vanesa Gottifredi, Gastón Soria
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引用次数: 3
摘要
翻译后修饰(ptm)是蛋白质功能的基本特征,在过去的几年里,他们的研究已经通过几种方法得到了解决。然而,用于检测ptm调节因子的筛选方法意味着许多挑战,并且通常基于昂贵的技术。在此,我们描述了基于western blot的平台的开发和优化,用于鉴定增殖细胞核抗原(PCNA)特异性ptm单泛素化的调节因子。这种基于细胞的方法不需要特定的设备,除了基本的western blot (WB)设备和次要的附件,大多数研究实验室都可以获得。对经典WB方案的改进允许对96孔板的单孔进行PTM分析,只需最少的样品操作,板内和板间的可变性低,使该方法成为筛选96孔格式排列化合物文库的理想方法。因此,我们的实验管道通过提高经典western blots的定量准确性和吞吐量,为设计PTM调节因子的小筛选提供了概念证明。
Development and Optimization of a Miniaturized Western Blot-Based Screening Platform to Identify Regulators of Post-Translational Modifications.
Post-translational modifications (PTMs) are fundamental traits of protein functionality and their study has been addressed using several approaches over the past years. However, screening methods developed to detect regulators of PTMs imply many challenges and are usually based on expensive techniques. Herein, we described the development and optimization of a western blot-based platform for identification of regulators of a specific PTM-mono-ubiquitylation of proliferating cell nuclear antigen (PCNA). This cell-based method does not require specific equipment, apart from the basic western blot (WB) devices and minor accessories, which are accessible for most research labs. The modifications introduced to the classical WB protocol allow the performance of PTM analysis from a single well of a 96-well plate with minimal sample manipulation and low intra- and inter-plate variability, making this method ideal to screen arrayed compound libraries in a 96-well format. As such, our experimental pipeline provides the proof of concept to design small screenings of PTM regulators by improving the quantitative accuracy and throughput capacity of classical western blots.
High-ThroughputBiochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.60
自引率
0.00%
发文量
0
审稿时长
9 weeks
期刊介绍:
High-Throughput (formerly Microarrays, ISSN 2076-3905) is a multidisciplinary peer-reviewed scientific journal that provides an advanced forum for the publication of studies reporting high-dimensional approaches and developments in Life Sciences, Chemistry and related fields. Our aim is to encourage scientists to publish their experimental and theoretical results based on high-throughput techniques as well as computational and statistical tools for data analysis and interpretation. The full experimental or methodological details must be provided so that the results can be reproduced. There is no restriction on the length of the papers. High-Throughput invites submissions covering several topics, including, but not limited to: -Microarrays -DNA Sequencing -RNA Sequencing -Protein Identification and Quantification -Cell-based Approaches -Omics Technologies -Imaging -Bioinformatics -Computational Biology/Chemistry -Statistics -Integrative Omics -Drug Discovery and Development -Microfluidics -Lab-on-a-chip -Data Mining -Databases -Multiplex Assays