Published April 2006 | Version v1
Miscellaneous Open

SCK-CEN Genomic Platform: the microarray technology

Description

The human body contains approximately 1014 cells, wherein each one is a nucleus. The nucleus contains 2x23 chromosomes, or two complete sets of the human genome, one set coming from the mother and the other from the father. In principle each set includes 30.000-40.000 genes. If the genome was a book, it would be twenty-three chapters, called chromosomes,each chapter with several thousand stories, called genes. Each story made up of paragraphs, called exons and introns. Each paragraph made up of 3 letter words, called codons. Each word is written with letters called bases (AGCT). But the whole is written in a single very long sentence, which is the DNA molecule or deoxy nucleic acid. The usual state of DNA is two complementary strands intertwined forming a double helix. In the cell, DNA is duplicated during each cell division to ensure the transmission of the genome to the daughter cells. For expression, the DNA is transcribed to messenger RNA. The RNA is edited and finally translated to a protein, each three bases coding for one amino acid. When the whole message is translated, the chain of amino acids folds itself up into a distinctive shape that depends on its sequence. Proteins are the effectors of the genes, and are responsible for all metabolic, hormonal and enzymatic reactions in the cells. The expressed RNA determines the amount of proteins to be produced and subsequently the desired effect (strong or weak) in the cell. The microarray technology aims at quantifying the amount of RNA present in the cell from each expressed gene, and at evaluating the changes of these amounts after exposure of the cell to toxic chemicals, ionising radiation or other stress components. The global picture of expressed genes helps to understand the affected genetic pathways in the cell at the molecular level. The microarray technology is used in the Radiobiology and Microbiology topics to study the effect of ionising radiation on human cells and mouse tissue, as well as the effect of harsh environment and space conditions on micro-organisms

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Part of:
Scientific Report 2005

Additional details

Identifiers

Publishing Information

Publisher
Belgian Nuclear Research Center SCK-CEN
Imprint Place
Mol (Belgium)
Imprint Title
Scientific Report 2005
Imprint Pagination
124 p.
Journal Page Range
p. 28-29
Report number
INIS-BE--0010

INIS

Country of Publication
Belgium
Country of Input or Organization
Belgium
INIS RN
37092347
Subject category
S60: APPLIED LIFE SCIENCES;
Resource subtype / Literary indicator
Progress Report
Descriptors DEI
GENOME MUTATIONS; PROGRESS REPORT; RADIATION EFFECTS
Descriptors DEC
DOCUMENT TYPES; MUTATIONS

Optional Information

Notes
The abstract is a contribution to the 2005 Scientific Report of the Belgian Nuclear Research Centre SCK-CEN