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Gene expression / RNA / DNA / Laboratory techniques / Reverse transcription polymerase chain reaction / Transcriptome / Regulation of gene expression / Protein expression / Real-time polymerase chain reaction / Biology / Biochemistry / Molecular biology


Promiscuous gene expression patterns in single medullary thymic epithelial cells argue for a stochastic mechanism
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City

Denver / Xian / Heidelberg / Paris / /

Company

Farr AG / Becton Dickinson / Charles River Laboratories / J.D. S.P. / Shimizu / /

Country

Germany / Finland / /

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Facility

University of Helsinki / German Cancer Research Center / Research Center / SAS Institute / Necker Institute / /

IndustryTerm

collagenase/dispase solution / transcriptional entry site / /

MedicalCondition

cancer / JE / organ-specific autoimmune diseases / autoimmune polyglandular syndrome / multiorgan autoimmune disease / MS / /

Organization

Bruno Kyewski* Division of Developmental Immunology / SAS Institute / German Cancer Research Center / Research Center / G8 / Necker Institute / University of Helsinki / Helsinki / German Research Foundation / Jewish Medical and Research Center / National Academy of Sciences / Division of Developmental Immunology / /

Person

Wolfgang Schmid / Sheena Pinto / Ludger Klein / Jens Derbinski / Alexa Fluor / Bruno Kyewski / Klaus Hexel / Benedita Rocha / Marta Monteiro / Philippa Marrack / Stefanie Ro¨sch / Annette Kopp-Schneider / /

Position

Stanford PM / /

ProvinceOrState

Colorado / /

RadioStation

Midgley FM / McConnell FM / /

Technology

Genomics / WAP / gene expression / /

URL

www.pnas.org͞cgi͞doi͞10.1073͞pnas.0707486105 / www.pnas.org/cgi/content/full / /

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