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      Surface engineering strategies for control of protein and cell interactions

        , , ,
      Surface Science
      Elsevier BV

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          Global analysis of protein activities using proteome chips.

          To facilitate studies of the yeast proteome, we cloned 5800 open reading frames and overexpressed and purified their corresponding proteins. The proteins were printed onto slides at high spatial density to form a yeast proteome microarray and screened for their ability to interact with proteins and phospholipids. We identified many new calmodulin- and phospholipid-interacting proteins; a common potential binding motif was identified for many of the calmodulin-binding proteins. Thus, microarrays of an entire eukaryotic proteome can be prepared and screened for diverse biochemical activities. The microarrays can also be used to screen protein-drug interactions and to detect posttranslational modifications.
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            Overview of tag protein fusions: from molecular and biochemical fundamentals to commercial systems.

            K Terpe (2003)
            In response to the rapidly growing field of proteomics, the use of recombinant proteins has increased greatly in recent years. Recombinant hybrids containing a polypeptide fusion partner, termed affinity tag, to facilitate the purification of the target polypeptides are widely used. Many different proteins, domains, or peptides can be fused with the target protein. The advantages of using fusion proteins to facilitate purification and detection of recombinant proteins are well-recognized. Nevertheless, it is difficult to choose the right purification system for a specific protein of interest. This review gives an overview of the most frequently used and interesting systems: Arg-tag, calmodulin-binding peptide, cellulose-binding domain, DsbA, c-myc-tag, glutathione S-transferase, FLAG-tag, HAT-tag, His-tag, maltose-binding protein, NusA, S-tag, SBP-tag, Strep-tag, and thioredoxin.
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              Polymer brushes: surface-immobilized macromolecules

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                Author and article information

                Journal
                Surface Science
                Surface Science
                Elsevier BV
                00396028
                October 2004
                October 2004
                : 570
                : 1-2
                : 98-110
                Article
                10.1016/j.susc.2004.06.182
                77f57f82-1bf8-48e7-bc63-12a638ec53f2
                © 2004

                http://www.elsevier.com/tdm/userlicense/1.0/

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