Cargando…

A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease

BACKGROUND: Gene editing technology has created a revolution in the field of genome editing. The three of the most famous tools in gene editing technology are zinc finger nucleases (ZFNs), transcription activator-like effector nucleases, clustered regularly interspaced short palindromic repeats (CRI...

Descripción completa

Detalles Bibliográficos
Autores principales: Sabzehei, Faezeh, Kouhpayeh, Shirin, Dastjerdeh, Mansoureh Shahbazi, Khanahmad, Hossein, Salehi, Rasoul, Naderi, Shamsi, Taghizadeh, Razieh, Rabiei, Parisa, Hejazi, Zahra, Shariati, Laleh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5735555/
https://www.ncbi.nlm.nih.gov/pubmed/29285485
http://dx.doi.org/10.4103/2277-9175.219420
_version_ 1783287231243354112
author Sabzehei, Faezeh
Kouhpayeh, Shirin
Dastjerdeh, Mansoureh Shahbazi
Khanahmad, Hossein
Salehi, Rasoul
Naderi, Shamsi
Taghizadeh, Razieh
Rabiei, Parisa
Hejazi, Zahra
Shariati, Laleh
author_facet Sabzehei, Faezeh
Kouhpayeh, Shirin
Dastjerdeh, Mansoureh Shahbazi
Khanahmad, Hossein
Salehi, Rasoul
Naderi, Shamsi
Taghizadeh, Razieh
Rabiei, Parisa
Hejazi, Zahra
Shariati, Laleh
author_sort Sabzehei, Faezeh
collection PubMed
description BACKGROUND: Gene editing technology has created a revolution in the field of genome editing. The three of the most famous tools in gene editing technology are zinc finger nucleases (ZFNs), transcription activator-like effector nucleases, clustered regularly interspaced short palindromic repeats (CRISPR), and CRISPR-associated systems. As their predictable nature, it is necessary to assess their efficiency. There are some methods for this purpose, but most of them are time labor and complicated. Here, we introduce a new prokaryotic reporter system, which makes it possible to evaluate the efficiency of gene editing tools faster, cheaper, and simpler than previous methods. MATERIALS AND METHODS: At first, the target sites of a custom ZFN, which is designed against a segment of ampicillin resistance gene, were cloned on both sides of green fluorescent protein (GFP) gene to construct pPRO-GFP. Then pPRO-GFP was transformed into Escherichia coli TOP10F’ that contains pZFN (contains expression cassette of a ZFN against ampicillin resistant gene), or p15A-KanaR as a negative control. The transformed bacteria were cultured on three separate media that contained ampicillin, kanamycin, and ampicillin + kanamycin; then the resulted colonies were assessed by flow cytometry. RESULTS: The results of flow cytometry showed a significant difference between the case (bacteria contain pZFN) and control (bacteria contain p15A, KanaR) in MFI (Mean Fluorescence Intensity) (P < 0.0001). CONCLUSION: According to ZFN efficiency, it can bind and cut the target sites, the bilateral cutting can affect the intensity of GFP fluorescence. Our flow cytometry results showed that this ZFN could reduce the intensity of GFP color and colony count of bacteria in media containing amp + kana versus control sample.
format Online
Article
Text
id pubmed-5735555
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Medknow Publications & Media Pvt Ltd
record_format MEDLINE/PubMed
spelling pubmed-57355552017-12-28 A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease Sabzehei, Faezeh Kouhpayeh, Shirin Dastjerdeh, Mansoureh Shahbazi Khanahmad, Hossein Salehi, Rasoul Naderi, Shamsi Taghizadeh, Razieh Rabiei, Parisa Hejazi, Zahra Shariati, Laleh Adv Biomed Res Original Article BACKGROUND: Gene editing technology has created a revolution in the field of genome editing. The three of the most famous tools in gene editing technology are zinc finger nucleases (ZFNs), transcription activator-like effector nucleases, clustered regularly interspaced short palindromic repeats (CRISPR), and CRISPR-associated systems. As their predictable nature, it is necessary to assess their efficiency. There are some methods for this purpose, but most of them are time labor and complicated. Here, we introduce a new prokaryotic reporter system, which makes it possible to evaluate the efficiency of gene editing tools faster, cheaper, and simpler than previous methods. MATERIALS AND METHODS: At first, the target sites of a custom ZFN, which is designed against a segment of ampicillin resistance gene, were cloned on both sides of green fluorescent protein (GFP) gene to construct pPRO-GFP. Then pPRO-GFP was transformed into Escherichia coli TOP10F’ that contains pZFN (contains expression cassette of a ZFN against ampicillin resistant gene), or p15A-KanaR as a negative control. The transformed bacteria were cultured on three separate media that contained ampicillin, kanamycin, and ampicillin + kanamycin; then the resulted colonies were assessed by flow cytometry. RESULTS: The results of flow cytometry showed a significant difference between the case (bacteria contain pZFN) and control (bacteria contain p15A, KanaR) in MFI (Mean Fluorescence Intensity) (P < 0.0001). CONCLUSION: According to ZFN efficiency, it can bind and cut the target sites, the bilateral cutting can affect the intensity of GFP fluorescence. Our flow cytometry results showed that this ZFN could reduce the intensity of GFP color and colony count of bacteria in media containing amp + kana versus control sample. Medknow Publications & Media Pvt Ltd 2017-11-30 /pmc/articles/PMC5735555/ /pubmed/29285485 http://dx.doi.org/10.4103/2277-9175.219420 Text en Copyright: © 2017 Advanced Biomedical Research http://creativecommons.org/licenses/by-nc-sa/3.0 This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 3.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as the author is credited and the new creations are licensed under the identical terms.
spellingShingle Original Article
Sabzehei, Faezeh
Kouhpayeh, Shirin
Dastjerdeh, Mansoureh Shahbazi
Khanahmad, Hossein
Salehi, Rasoul
Naderi, Shamsi
Taghizadeh, Razieh
Rabiei, Parisa
Hejazi, Zahra
Shariati, Laleh
A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease
title A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease
title_full A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease
title_fullStr A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease
title_full_unstemmed A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease
title_short A Novel Prokaryotic Green Fluorescent Protein Expression System for Testing Gene Editing Tools Activity Like Zinc Finger Nuclease
title_sort novel prokaryotic green fluorescent protein expression system for testing gene editing tools activity like zinc finger nuclease
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5735555/
https://www.ncbi.nlm.nih.gov/pubmed/29285485
http://dx.doi.org/10.4103/2277-9175.219420
work_keys_str_mv AT sabzeheifaezeh anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT kouhpayehshirin anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT dastjerdehmansourehshahbazi anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT khanahmadhossein anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT salehirasoul anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT naderishamsi anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT taghizadehrazieh anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT rabieiparisa anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT hejazizahra anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT shariatilaleh anovelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT sabzeheifaezeh novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT kouhpayehshirin novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT dastjerdehmansourehshahbazi novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT khanahmadhossein novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT salehirasoul novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT naderishamsi novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT taghizadehrazieh novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT rabieiparisa novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT hejazizahra novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease
AT shariatilaleh novelprokaryoticgreenfluorescentproteinexpressionsystemfortestinggeneeditingtoolsactivitylikezincfingernuclease