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Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts

The diversity and flexibility of life offers a wide variety of molecules and systems useful for biosensing. A biosensor device should be robust, specific and reliable. Inorganic arsenic is a highly toxic water contaminant with worldwide distribution that poses a threat to public health. With the goa...

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Autores principales: Barone, Federico, Dorr, Francisco, Marasco, Luciano E, Mildiner, Sebastián, Patop, Inés L, Sosa, Santiago, Vattino, Lucas G, Vignale, Federico A, Altszyler, Edgar, Basanta, Benjamin, Carlotto, Nicolás, Gasulla, Javier, Giménez, Manuel, Grande, Alicia, Nieto Moreno, Nicolás, Bonomi, Hernán R, Nadra, Alejandro D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7445792/
https://www.ncbi.nlm.nih.gov/pubmed/32995507
http://dx.doi.org/10.1093/synbio/ysx006
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author Barone, Federico
Dorr, Francisco
Marasco, Luciano E
Mildiner, Sebastián
Patop, Inés L
Sosa, Santiago
Vattino, Lucas G
Vignale, Federico A
Altszyler, Edgar
Basanta, Benjamin
Carlotto, Nicolás
Gasulla, Javier
Giménez, Manuel
Grande, Alicia
Nieto Moreno, Nicolás
Bonomi, Hernán R
Nadra, Alejandro D
author_facet Barone, Federico
Dorr, Francisco
Marasco, Luciano E
Mildiner, Sebastián
Patop, Inés L
Sosa, Santiago
Vattino, Lucas G
Vignale, Federico A
Altszyler, Edgar
Basanta, Benjamin
Carlotto, Nicolás
Gasulla, Javier
Giménez, Manuel
Grande, Alicia
Nieto Moreno, Nicolás
Bonomi, Hernán R
Nadra, Alejandro D
author_sort Barone, Federico
collection PubMed
description The diversity and flexibility of life offers a wide variety of molecules and systems useful for biosensing. A biosensor device should be robust, specific and reliable. Inorganic arsenic is a highly toxic water contaminant with worldwide distribution that poses a threat to public health. With the goal of developing an arsenic biosensor, we designed an incoherent feed-forward loop (I-FFL) genetic circuit to correlate its output pulse with the input signal in a relatively time-independent manner. The system was conceived exclusively based on the available BioBricks in the iGEM Registry of Standard Biological Parts. The expected behavior in silico was achieved; upon arsenic addition, the system generates a short-delayed reporter protein pulse that is dose dependent to the contaminant levels. This work is an example of the power and variety of the iGEM Registry of Standard Biological Parts, which can be reused in different sophisticated system designs like I-FFLs. Besides the scientific results, one of the main impacts of this synthetic biology project is the influence it had on team’s members training and career choices which are summarized at the end of this article.
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spelling pubmed-74457922020-09-28 Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts Barone, Federico Dorr, Francisco Marasco, Luciano E Mildiner, Sebastián Patop, Inés L Sosa, Santiago Vattino, Lucas G Vignale, Federico A Altszyler, Edgar Basanta, Benjamin Carlotto, Nicolás Gasulla, Javier Giménez, Manuel Grande, Alicia Nieto Moreno, Nicolás Bonomi, Hernán R Nadra, Alejandro D Synth Biol (Oxf) Education The diversity and flexibility of life offers a wide variety of molecules and systems useful for biosensing. A biosensor device should be robust, specific and reliable. Inorganic arsenic is a highly toxic water contaminant with worldwide distribution that poses a threat to public health. With the goal of developing an arsenic biosensor, we designed an incoherent feed-forward loop (I-FFL) genetic circuit to correlate its output pulse with the input signal in a relatively time-independent manner. The system was conceived exclusively based on the available BioBricks in the iGEM Registry of Standard Biological Parts. The expected behavior in silico was achieved; upon arsenic addition, the system generates a short-delayed reporter protein pulse that is dose dependent to the contaminant levels. This work is an example of the power and variety of the iGEM Registry of Standard Biological Parts, which can be reused in different sophisticated system designs like I-FFLs. Besides the scientific results, one of the main impacts of this synthetic biology project is the influence it had on team’s members training and career choices which are summarized at the end of this article. Oxford University Press 2017-12-08 /pmc/articles/PMC7445792/ /pubmed/32995507 http://dx.doi.org/10.1093/synbio/ysx006 Text en © The Author 2017. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Education
Barone, Federico
Dorr, Francisco
Marasco, Luciano E
Mildiner, Sebastián
Patop, Inés L
Sosa, Santiago
Vattino, Lucas G
Vignale, Federico A
Altszyler, Edgar
Basanta, Benjamin
Carlotto, Nicolás
Gasulla, Javier
Giménez, Manuel
Grande, Alicia
Nieto Moreno, Nicolás
Bonomi, Hernán R
Nadra, Alejandro D
Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts
title Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts
title_full Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts
title_fullStr Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts
title_full_unstemmed Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts
title_short Design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard iGEM parts
title_sort design and evaluation of an incoherent feed-forward loop for an arsenic biosensor based on standard igem parts
topic Education
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7445792/
https://www.ncbi.nlm.nih.gov/pubmed/32995507
http://dx.doi.org/10.1093/synbio/ysx006
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