| Literature DB >> 27466408 |
M Alphan Aksoyoglu1, Rudolf Podgornik2, Sergey M Bezrukov3, Philip A Gurnev4, Murugappan Muthukumar5, V Adrian Parsegian1.
Abstract
Nonideal polymer mixtures of PEGs of different molecular weights partition differently into nanosize protein channels. Here, we assess the validity of the recently proposed theoretical approach of forced partitioning for three structurally different β-barrel channels: voltage-dependent anion channel from outer mitochondrial membrane VDAC, bacterial porin OmpC (outer membrane protein C), and bacterial channel-forming toxin α-hemolysin. Our interpretation is based on the idea that relatively less-penetrating polymers push the more easily penetrating ones into nanosize channels in excess of their bath concentration. Comparison of the theory with experiments is excellent for VDAC. Polymer partitioning data for the other two channels are consistent with theory if additional assumptions regarding the energy penalty of pore penetration are included. The obtained results demonstrate that the general concept of "polymers pushing polymers" is helpful in understanding and quantification of concrete examples of size-dependent forced partitioning of polymers into protein nanopores.Entities:
Keywords: macromolecular crowding; nanopore-based sensing; polymer confinement; polymer transport; β-barrel pores
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Year: 2016 PMID: 27466408 PMCID: PMC4987803 DOI: 10.1073/pnas.1602716113
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205