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Nuclear Transport Receptor Binding Avidity Triggers A Self-Healing Collapse Transition In Fg-Nucleoporin Molecular Brushes.

Proc Natl Acad Sci U S A.. 2012-10;  109(42):16911 - 16916
Rafael L. Schoch, Larisa E. Kapinos, and Roderick Y. H. Lim. Biozentrum and Swiss Nanoscience Institute, University of Basel, 4056 Basel, Switzerland.
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Abstract

Conformational changes at supramolecular interfaces are fundamentally coupled to binding activity, yet it remains a challenge to probe this relationship directly. Within the nuclear pore complex, this underlies how transport receptors known as karyopherins proceed through a tethered layer of intrinsically disordered nucleoporin domains containing Phe-Gly (FG)-rich repeats (FG domains) that otherwise hinder passive transport. Here, we use nonspecific proteins (i.e., BSA) as innate molecular probes to explore FG domain conformational changes by surface plasmon resonance. This mathematically diminishes the surface plasmon resonance refractive index constraint, thereby providing the means to acquire and correlate h... More

Keywords

biointerface; molecular crowding; multivalent binding; nucleocytoplasmic transport; polymer brush