Overcoming technical variation and biological variation in quantitative proteomics
Top Cited Papers
- 9 October 2003
- journal article
- research article
- Published by Wiley in Proteomics
- Vol. 3 (10) , 1912-1919
- https://doi.org/10.1002/pmic.200300534
Abstract
Quantitative proteomics investigates physiology at the molecular level by measuring relative differences in protein expression between samples under different experimental conditions. A major obstacle to reliably determining quantitative changes in protein expression is to overcome error imposed by technical variation and biological variation. In drug discovery and development the issue of biological variation often rises in concordance with the developmental stage of research, spanning from in vitro assays to clinical trials. In this paper we present case studies to raise awareness to the issues of technical variation and biological variation and the impact this places on applying quantitative proteomics. We defined the degree of technical variation from the process of two‐dimensional electrophoresis as 20–30% coefficient of variation. On the other hand, biological variation observed experiment‐to‐experiment showed a broader degree of variation depending upon the sample type. This was demonstrated with case studies where variation was monitored across experiments with bacteria, established cell lines, primary cultures, and with drug treated human subjects. We discuss technical variation and biological variation as key factors to consider during experimental design, and offer insight into preparing experiments that overcome this challenge to provide statistically significant outcomes for conducting quantitative proteomic research.Keywords
This publication has 15 references indexed in Scilit:
- Quantitative evaluation of proteins in one- and two-dimensional polyacrylamide gels using a fluorescent stainElectrophoresis, 2002
- Sample Size DeterminationILAR Journal, 2002
- Proteome and proteomics: New technologies, new concepts, and new wordsElectrophoresis, 1998
- Escherichia coliproteome analysis using the gene‐protein databaseElectrophoresis, 1997
- Interlaboratory reproducibility of yeast protein patterns analyzed by immobilized pH gradient two‐dimensional gel electrophoresisElectrophoresis, 1995
- Quantitation of human leukocyte proteins after silver staining: A study with two‐dimensional electrophoresisElectrophoresis, 1991
- Ribosomes as sensors of heat and cold shock in Escherichia coli.Proceedings of the National Academy of Sciences, 1990
- Gene‐Protein database of Escherichia coli K ‐ 12: Edition 3Electrophoresis, 1990
- Quantitative reproducibility of measurements from Coomassie Blue‐stained two‐dimensional gels: Analysis of mouse liver protein patterns and a comparison of BALB/c and C57 strainsElectrophoresis, 1985
- Introduction to sample size determination and power analysis for clinical trialsControlled Clinical Trials, 1981