Regulome
Regulome refers to the whole set of regulatory components in a
Components
One of the major players in cellular regulation are
Measuring
High-throughput technologies for the analysis of biological samples (for example, DNA microarrays, proteomics analysis) allow the measurement of thousands of biological components such as mRNAs, proteins, or metabolites.[3] Chromatin immunoprecipitation of transcription factors can be used to map transcription factor binding sites in the genome.[4]
Such techniques allow researchers to study the effects of particular substances and/or situations on a cellular sample at a genomic level (for example, by addition of a drug, or by placing cells in a situation of stress). The information obtained allows parts of the regulome to be inferred.
Modeling
One of the objectives of systems biology is the modeling of biological processes using mathematics and computer simulation.[5] The production of data from techniques of genomic analysis is not always amenable to interpretation mainly due to the complexity of the data and the large number of data points. Modeling can handle the data and allow to test a hypothesis (for example, gene A is regulated by protein B) that can be verified experimentally.
Applications
The complete knowledge of the regulome will allow researchers to model cell behaviour entirely. This will facilitate the design of drugs for therapy,[6] the control of stem cell differentiation, and the prognosis of disease.
See also
- Genome
- Proteome
- Cytome
- Bioinformatics
- Systems biology
- DNA microarray
- Mass spectrometry
- 2-D electrophoresis
- Protein engineering
- Swiss-Prot
- List of omics topics in biology
References
- ISBN 9388449738.
- PMC 3640494.
- ^ "Technologies used in functional genomic studies | Functional genomics". Retrieved 30 September 2021.
- .
- .
- ^ "An integrated systems-level framework for deciphering multidrug resistant epilepsy". Retrieved 30 September 2021.