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Lac operon / Repressor / Lac repressor / RNA polymerase / Transcriptional regulation / Promoter / Operator / Inducer / Operon / Gene expression / Biology / Biochemistry


Supporting Information Garcia and PhillipspnasSI Text S1. Theoretical Background. In the following sections we explore the theoretical background leading to the different predictions explored in the
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Document Date: 2011-07-22 08:11:22


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City

Washington / DC / Berlin / Eppendorf / Pasadena / /

Company

RBS / Cold Spring Harbor Lab Press / DNA / BT / GE Healthcare / Millipore / Thomason LC / Kao / /

Currency

pence / /

Facility

University of Washington Yeast Resource Center / Cold Spring Harbor / California Institute of Technology / duplex DNA / /

IndustryTerm

nonspecific binding energy / stock solution / chemical reactions / nonspecific site / energy gain / β-galactosidase protocol / main operator / repressor purification protocol / 1M solution / power law / microfluidic chip / computing / main repressor binding site / site energy / energy / /

Organization

University of Washington / California Institute of Technology / NS NS / /

Person

Washington Yeast / Walter de Gruyter / Stephanie Johnson / Michael Elowitz / /

Position

Lac repressor head / Model for the RNA polymerase reservoir / Model for the nonspecific looping background / binding head / Butler / LacZ reporter / LacI head / head / reporter / /

Product

M-9 / /

ProvinceOrState

South Dakota / Nova Scotia / California / /

PublishedMedium

Molecular Biology / /

Technology

genetic engineering / microfluidic chip / gene expression / directed mutagenesis / spectroscopy / DNA binding / recombination / β-galactosidase protocol / Lac repressor purification protocol / using a microfluidic chip / /

URL

www.pnas.org/cgi/content/short/1015616108 / /

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