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1.
Anal Chem ; 84(24): 10531-6, 2012 Dec 18.
Artigo em Inglês | MEDLINE | ID: mdl-23205933

RESUMO

We present a method that uses fluorescent cellular barcodes to increase the number of unique samples that can be analyzed simultaneously by microengraving, a nanowell array-based technique for quantifying the secretory responses of thousands of single cells in parallel. Using n different fluorescent dyes to generate 2(n) unique cellular barcodes, we achieved a 2(n)-fold reduction in the number of arrays and quantity of reagents required per sample. The utility of this approach was demonstrated in three applications of interest in clinical and experimental immunology. Using barcoded human peripheral blood mononuclear cells and T cells, we constructed dose-response curves, profiled the secretory behavior of cells treated with mechanistically distinct stimuli, and tracked the secretory behaviors of different lineages of CD4(+) T helper cells. In addition to increasing the number of samples analyzed by generating secretory profiles of single cells from multiple populations in a time- and reagent-efficient manner, we expect that cellular barcoding in combination with microengraving will facilitate unique experimental opportunities for quantitatively analyzing interactions among heterogeneous cells isolated in small groups (~2-5 cells).


Assuntos
Leucócitos Mononucleares/química , Leucócitos Mononucleares/metabolismo , Análise de Célula Única/métodos , Linfócitos T/química , Linfócitos T/metabolismo , Corantes Fluorescentes/análise , Corantes Fluorescentes/química , Humanos
2.
Elife ; 72018 12 20.
Artigo em Inglês | MEDLINE | ID: mdl-30570483

RESUMO

Gene expression in all organisms is controlled by cooperative interactions between DNA-bound transcription factors (TFs), but quantitatively measuring TF-DNA and TF-TF interactions remains difficult. Here we introduce a strategy for precisely measuring the Gibbs free energy of such interactions in living cells. This strategy centers on the measurement and modeling of 'allelic manifolds', a multidimensional generalization of the classical genetics concept of allelic series. Allelic manifolds are measured using reporter assays performed on strategically designed cis-regulatory sequences. Quantitative biophysical models are then fit to the resulting data. We used this strategy to study regulation by two Escherichia coli TFs, CRP and [Formula: see text] RNA polymerase. Doing so, we consistently obtained energetic measurements precise to [Formula: see text] kcal/mol. We also obtained multiple results that deviate from the prior literature. Our strategy is compatible with massively parallel reporter assays in both prokaryotes and eukaryotes, and should therefore be highly scalable and broadly applicable. Editorial note: This article has been through an editorial process in which the authors decide how to respond to the issues raised during peer review. The Reviewing Editor's assessment is that minor issues remain unresolved (see decision letter).


Assuntos
Proteína Receptora de AMP Cíclico/genética , DNA Bacteriano/genética , RNA Polimerases Dirigidas por DNA/genética , Proteínas de Escherichia coli/genética , Escherichia coli/genética , Regulação Bacteriana da Expressão Gênica , Modelos Estatísticos , Fator sigma/genética , Alelos , Sítios de Ligação , Bioensaio , Proteína Receptora de AMP Cíclico/metabolismo , DNA Bacteriano/metabolismo , RNA Polimerases Dirigidas por DNA/metabolismo , Escherichia coli/metabolismo , Proteínas de Escherichia coli/metabolismo , Genes Reporter , Cinética , Ligação Proteica , Fator sigma/metabolismo , Termodinâmica , beta-Galactosidase/genética , beta-Galactosidase/metabolismo
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