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Rapid, Low-Cost Detection of Water Contaminants Using Regulated In Vitro Transcription

View ORCID ProfileKhalid K. Alam, View ORCID ProfileJaeyoung K. Jung, View ORCID ProfileMatthew S. Verosloff, View ORCID ProfilePhillip R. Clauer, View ORCID ProfileJeong Wook Lee, View ORCID ProfileDaiana A. Capdevila, View ORCID ProfilePablo A. Pastén, View ORCID ProfileDavid P. Giedroc, View ORCID ProfileJames J. Collins, View ORCID ProfileJulius B. Lucks
doi: https://doi.org/10.1101/619296
Khalid K. Alam
1Department of Chemical and Biological Engineering, Northwestern University (Evanston IL, USA)
2Center for Synthetic Biology, Northwestern University (Evanston, IL, USA)
3Center for Water Research, Northwestern University (Evanston, IL, USA)
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Jaeyoung K. Jung
1Department of Chemical and Biological Engineering, Northwestern University (Evanston IL, USA)
2Center for Synthetic Biology, Northwestern University (Evanston, IL, USA)
3Center for Water Research, Northwestern University (Evanston, IL, USA)
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Matthew S. Verosloff
2Center for Synthetic Biology, Northwestern University (Evanston, IL, USA)
3Center for Water Research, Northwestern University (Evanston, IL, USA)
4Interdisciplinary Biological Sciences Graduate Program, Northwestern University (Evanston, IL, USA)
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Phillip R. Clauer
5Department of Biochemistry, Penn State University (University Park, PA, USA)
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Jeong Wook Lee
6Department of Chemical Engineering, Pohang University of Science and Technology (Pohang, Republic of Korea)
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Daiana A. Capdevila
7Department of Chemistry, Indiana University, (Bloomington, IN, USA)
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  • ORCID record for Daiana A. Capdevila
Pablo A. Pastén
8Departmento de Ingeniería Hidráulica y Ambiental, Pontificia Universidad Católica de Chile (Santiago, Chile)
9Centro de Desarrollo Urbano Sustentable (CEDEUS) (Santiago, Chile)
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David P. Giedroc
7Department of Chemistry, Indiana University, (Bloomington, IN, USA)
10Department of Molecular and Cellular Biochemistry, Indiana University, (Bloomington, IN, USA)
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James J. Collins
11Institute for Medical Engineering & Science, Department of Biological Engineering, and Synthetic Biology Center, Massachusetts Institute of Technology (Cambridge, MA, USA)
12Wyss Institute for Biologically Inspired Engineering, Harvard University (Boston, MA, USA)
13Broad Institute of MIT and Harvard (Cambridge, MA, USA)
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Julius B. Lucks
1Department of Chemical and Biological Engineering, Northwestern University (Evanston IL, USA)
2Center for Synthetic Biology, Northwestern University (Evanston, IL, USA)
3Center for Water Research, Northwestern University (Evanston, IL, USA)
4Interdisciplinary Biological Sciences Graduate Program, Northwestern University (Evanston, IL, USA)
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  • For correspondence: jblucks@northwestern.edu
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ABSTRACT

Synthetic biology has enabled the development of powerful nucleic acid diagnostic technologies for detecting pathogens and human health biomarkers. Here we expand the reach of synthetic biology-enabled diagnostics by developing a cell-free biosensing platform that uses RNA output sensors activated by ligand induction (ROSALIND) to detect harmful contaminants in aqueous samples. ROSALIND consists of three programmable components: highly-processive RNA polymerases, allosteric transcription factors, and synthetic DNA transcription templates. Together, these components allosterically regulate the in vitro transcription of a fluorescence-activating RNA aptamer: in the absence of a target compound, transcription is blocked, while in its presence a fluorescent signal is produced. We demonstrate that ROSALIND can be configured to detect a range of water contaminants, including antibiotics, toxic small molecules, and metals. Our cell-free biosensing platform, which can be freeze-dried for field deployment, creates a new capability for point-of-use monitoring of molecular species to address growing global crises in water quality and human health.

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  • Updated acknowledgements and author ORCID.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted May 02, 2019.
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Rapid, Low-Cost Detection of Water Contaminants Using Regulated In Vitro Transcription
Khalid K. Alam, Jaeyoung K. Jung, Matthew S. Verosloff, Phillip R. Clauer, Jeong Wook Lee, Daiana A. Capdevila, Pablo A. Pastén, David P. Giedroc, James J. Collins, Julius B. Lucks
bioRxiv 619296; doi: https://doi.org/10.1101/619296
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Rapid, Low-Cost Detection of Water Contaminants Using Regulated In Vitro Transcription
Khalid K. Alam, Jaeyoung K. Jung, Matthew S. Verosloff, Phillip R. Clauer, Jeong Wook Lee, Daiana A. Capdevila, Pablo A. Pastén, David P. Giedroc, James J. Collins, Julius B. Lucks
bioRxiv 619296; doi: https://doi.org/10.1101/619296

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