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Nature 446, 1030-1037 (26 April 2007) | doi:10.1038/nature05817; Published online 25 April 2007
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Single-cell Analysis Platform
This Challenge is looking for novel approaches to analyzing changes at a single-cell level. This is...
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The Seeker is looking for methods to optimize sub-cellular localization tags for protein expression....
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Postdoctoral Fellow - Computational Genomics - Team 78 – Ref: 80464
- Wellcome Trust Sanger Institute
- Hinxton, Cambridgeshire CB10 1, UK
REDD Land-use Change Modeller
- The Macaulay Institute
- Aberdeen, AB15 8QH, UK
Heparan sulphate proteoglycans fine-tune mammalian physiology
Joseph R. Bishop1, Manuela Schuksz1 & Jeffrey D. Esko1
Abstract
Heparan sulphate proteoglycans reside on the plasma membrane of all animal cells studied so far and are a major component of extracellular matrices. Studies of model organisms and human diseases have demonstrated their importance in development and normal physiology. A recurrent theme is the electrostatic interaction of the heparan sulphate chains with protein ligands, which affects metabolism, transport, information transfer, support and regulation in all organ systems. The importance of these interactions is exemplified by phenotypic studies of mice and humans bearing mutations in the core proteins or the biosynthetic enzymes responsible for assembling the heparan sulphate chains.
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