proteomics - significado y definición. Qué es proteomics
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Qué (quién) es proteomics - definición

LARGE-SCALE STUDY OF PROTEINS
Human Proteome Resource; Whole proteome analysis; Proteonomics; Proteonics; Proteomic chemistry; Proteomic Chemistry; Proteomic; Protein analysis; Expression proteomics; Call-map proteomics
  • Ketone and aldehyde mechanism with cell surface labeling. Staudinger ligations and their interaction with azide groups for labeling are shown in the second figure.
  • Mechanisms showing how AHA labels onto proteins and where biotin-FLAG-alkyne tags mark the amino acid. Hand Drawn via Sigma Aldrich
  • LCQ Mass Spectrometer used in mass spectrometry.

proteomics         
¦ plural noun [treated as sing.] the branch of molecular biology concerned with determining the proteome.
Derivatives
proteomic adjective
Proteomics (journal)         
SCIENTIFIC JOURNAL
Proteomics is a peer-reviewed scientific journal covering topics including whole proteome analysis of organisms, protein expression profiling, disease, pharmaceutical, agricultural and biotechnological applications, and analysis of cellular systems, organelles and protein complexes.
Molecular & Cellular Proteomics         
JOURNAL
User:Boron11/Molecular and Cellular Proteomics; User:Boron11/Molecular & cellular proteomics; Molecular and cellular proteomics; Mol. Cell Proteomics; Mol Cell Proteomics; Mol. Cell. Proteomics; Molecular & cellular proteomics: MCP; Molecular and Cellular Proteomics; Mol. Cell. Proteom.; Mol Cell Proteom; Molecular and cellular proteomics: MCP; Molecular & cellular proteomics; User:Boron11/Molecular and cellular proteomics; User:Boron11/Molecular & Cellular Proteomics
Molecular & Cellular Proteomics is a monthly peer-reviewed scientific journal established in 2002 and published by the American Society for Biochemistry and Molecular Biology. It covers research on structural and functional properties of proteins, especially with regard to development.

Wikipedia

Proteomics

Proteomics is the large-scale study of proteins. Proteins are vital parts of living organisms, with many functions such as the formation of structural fibers of muscle tissue, enzymatic digestion of food, or synthesis and replication of DNA. In addition, other kinds of proteins include antibodies that protect an organism from infection, and hormones that send important signals throughout the body.

The proteome is the entire set of proteins produced or modified by an organism or system. Proteomics enables the identification of ever-increasing numbers of proteins. This varies with time and distinct requirements, or stresses, that a cell or organism undergoes.

Proteomics is an interdisciplinary domain that has benefited greatly from the genetic information of various genome projects, including the Human Genome Project. It covers the exploration of proteomes from the overall level of protein composition, structure, and activity, and is an important component of functional genomics.

Proteomics generally denotes the large-scale experimental analysis of proteins and proteomes, but often refers specifically to protein purification and mass spectrometry. Indeed, mass spectrometry is the most powerful method for analysis of proteomes, both in large samples composed of millions of cells and in single cells.

Ejemplos de uso de proteomics
1. "This immensely powerful supercomputer is normally used in astronomy, academic and life science research involving proteomics and protein interactions requiring significant computing power.
2. KIST is also in alliance with Brookhaven National Laboratory, a U.S. state–funded institution, in the fields of nano, molecular imaging and proteomics.
3. Therefore, GEI will also invest in innovative new technologies to measure environmental toxins, dietary intake and physical activity, and to determine an individual‘s biological response to those influences, using new tools of genomics, proteomics and metabolomics.
4. "People perceive that there is an increasing gap of knowledge between those two –– the bench and the bedside." For example, one of the most exciting fields in biomedical research today is an area known as "proteomics," which is the study of proteins and the genes linked to them.
5. They are increasing the solar photo–voltaic cell efficiency using nano–technology, research in proteomics to identify the disease causing mechanism and new methods to treat them, earthquake forecasting, building a validated mathematical model for predicting the quantum of rain and developing products in health care, electronics and materials to meet national requirement using convergence of nano, bio and info technologies.