Literature DB >> 23471983

Entropy-driven collective interactions in DNA brushes on a biochip.

Dan Bracha1, Eyal Karzbrun, Gabriel Shemer, Philip A Pincus, Roy H Bar-Ziv.   

Abstract

Cell-free gene expression in localized DNA brushes on a biochip has been shown to depend on gene density and orientation, suggesting that brushes form compartments with partitioned conditions. At high density, the interplay of DNA entropic elasticity, electrostatics, and excluded volume interactions leads to collective conformations that affect the function of DNA-associated proteins. Hence, measuring the collective interactions in dense DNA, free of proteins, is essential for understanding crowded cellular environments and for the design of cell-free synthetic biochips. Here, we assembled dense DNA polymer brushes on a biochip along a density gradient and directly measured the collective extension of DNA using evanescent fluorescence. DNA of 1 kbp in a brush undergoes major conformational changes, from a relaxed random coil to a stretched configuration, following a universal function of density to ionic strength ratio with scaling exponent of 1/3. DNA extends because of the swelling force induced by the osmotic pressure of ions, which are trapped in the brush to maintain local charge neutrality, in competition with the restoring force of DNA entropic elasticity. The measurements reveal in DNA crossover between regimes of osmotic, salted, mushroom, and quasineutral brush. It is surprising to note that, at physiological ionic strength, DNA density does not induce collective stretch despite significant chain overlap, which implies that excluded volume interactions in DNA are weak.

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Year:  2013        PMID: 23471983      PMCID: PMC3607050          DOI: 10.1073/pnas.1220076110

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  26 in total

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  9 in total

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5.  Nanometer-Scale Force Profiles of Short Single- and Double-Stranded DNA Molecules on a Gold Surface Measured Using a Surface Forces Apparatus.

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7.  Synthetic Semiflexible and Bioactive Brushes.

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8.  Boundary-Free Ribosome Compartmentalization by Gene Expression on a Surface.

Authors:  Michael Levy; Reuven Falkovich; Ohad Vonshak; Dan Bracha; Alexandra M Tayar; Yoshihiro Shimizu; Shirley S Daube; Roy H Bar-Ziv
Journal:  ACS Synth Biol       Date:  2021-02-17       Impact factor: 5.110

9.  Physical Principles of Membrane Shape Regulation by the Glycocalyx.

Authors:  Carolyn R Shurer; Joe Chin-Hun Kuo; LaDeidra Monét Roberts; Jay G Gandhi; Marshall J Colville; Thais A Enoki; Hao Pan; Jin Su; Jade M Noble; Michael J Hollander; John P O'Donnell; Rose Yin; Kayvon Pedram; Leonhard Möckl; Lena F Kourkoutis; W E Moerner; Carolyn R Bertozzi; Gerald W Feigenson; Heidi L Reesink; Matthew J Paszek
Journal:  Cell       Date:  2019-05-02       Impact factor: 41.582

  9 in total

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