| Literature DB >> 22511333 |
Dana A Uhlenheuer1, Dorothee Wasserberg, Christian Haase, Hoang D Nguyen, Jan Hendrik Schenkel, Jurriaan Huskens, Bart Jan Ravoo, Pascal Jonkheijm, Luc Brunsveld.
Abstract
Supramolecular assembly of proteins on surfaces and vesicles was investigated by site-selective incorporation of a supramolecular guest element on proteins. Fluorescent proteins were site-selectively labeled with bisadamantane by SNAP-tag technology. The assembly of the bisadamantane functionalized SNAP-fusion proteins on cyclodextrin-coated surfaces yielded stable monolayers. The binding of the fusion proteins is specific and occurs with an affinity in the order of 10(6) M(-1) as determined by surface plasmon resonance. Reversible micropatterns of the fusion proteins on micropatterned cyclodextrin surfaces were visualized by using fluorescence microscopy. Furthermore, the guest-functionalized proteins could be assembled out of solution specifically onto the surface of cyclodextrin vesicles. The SNAP-tag labeling of proteins thus allows for assembly of modified proteins through a host-guest interaction on different surfaces. This provides a new strategy in fabricating protein patterns on surfaces and takes advantage of the high labeling efficiency of the SNAP-tag with designed supramolecular elements.Entities:
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Year: 2012 PMID: 22511333 DOI: 10.1002/chem.201200238
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236