Cargando…

An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology

Zinc Finger Nucleases (ZFNs), famous for their ability to precisely and efficiently modify specific genomic loci, have been employed in numerous transgenic model organism and cell constructions. Here we employ the ZFNs technology, with homologous recombination (HR), to construct sequence-specific Am...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Xiaojing, Li, Hui, Mao, Yiqing, Li, Zhixin, Wang, Rong, Guo, Tingting, Jin, Ling, Song, Rongjing, Xu, Wei, Zhou, Na, Zhang, Yizhuang, Hu, Ruobi, Wang, Xi, Huang, Huakang, Lei, Zhen, Niu, Gang, Irwin, David M., Tan, Huanran
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3819351/
https://www.ncbi.nlm.nih.gov/pubmed/24223114
http://dx.doi.org/10.1371/journal.pone.0075493
_version_ 1782289979542601728
author Zhang, Xiaojing
Li, Hui
Mao, Yiqing
Li, Zhixin
Wang, Rong
Guo, Tingting
Jin, Ling
Song, Rongjing
Xu, Wei
Zhou, Na
Zhang, Yizhuang
Hu, Ruobi
Wang, Xi
Huang, Huakang
Lei, Zhen
Niu, Gang
Irwin, David M.
Tan, Huanran
author_facet Zhang, Xiaojing
Li, Hui
Mao, Yiqing
Li, Zhixin
Wang, Rong
Guo, Tingting
Jin, Ling
Song, Rongjing
Xu, Wei
Zhou, Na
Zhang, Yizhuang
Hu, Ruobi
Wang, Xi
Huang, Huakang
Lei, Zhen
Niu, Gang
Irwin, David M.
Tan, Huanran
author_sort Zhang, Xiaojing
collection PubMed
description Zinc Finger Nucleases (ZFNs), famous for their ability to precisely and efficiently modify specific genomic loci, have been employed in numerous transgenic model organism and cell constructions. Here we employ the ZFNs technology, with homologous recombination (HR), to construct sequence-specific Amyloid Precursor Protein (APP) knock-in cells. With the use of ZFNs, we established APP knock in cell lines with gene-modification efficiencies of about 7%. We electroporated DNA fragment containing the promoter and the protein coding regions of the zinc finger nucleases into cells, instead of the plasmids, to avoid problems associated with off target homologous recombination, and adopted a pair of mutated FokI cleavage domains to reduce the toxic effects of the ZFNs on cell growth. Since over-expression of APP, or a subdomain of it, might lead to an immediately lethal effect, we used the Cre-LoxP System to regulate APP expression. Our genetically transformed cell lines, w5c1 and s12c8, showed detectable APP and Amyloid β (Aβ) production. The Swedish double mutation in the APP coding sequence enhanced APP and Aβ abundance. What is more, the activity of the three key secretases in Aβ formation could be modulated, indicating that these transgenic cells have potential for drug screening to modify amyloid metabolism in cells. Our transformed cells could readily be propagated in culture and should provide an excellent experimental medium for elucidating aspects of the molecular pathogenesis of Alzheimer’s disease, especially those concerning the amyloidogenic pathways involving mutations in the APP coding sequence. The cellular models may also serve as a tool for deriving potentially useful therapeutic agents.
format Online
Article
Text
id pubmed-3819351
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38193512013-11-12 An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology Zhang, Xiaojing Li, Hui Mao, Yiqing Li, Zhixin Wang, Rong Guo, Tingting Jin, Ling Song, Rongjing Xu, Wei Zhou, Na Zhang, Yizhuang Hu, Ruobi Wang, Xi Huang, Huakang Lei, Zhen Niu, Gang Irwin, David M. Tan, Huanran PLoS One Research Article Zinc Finger Nucleases (ZFNs), famous for their ability to precisely and efficiently modify specific genomic loci, have been employed in numerous transgenic model organism and cell constructions. Here we employ the ZFNs technology, with homologous recombination (HR), to construct sequence-specific Amyloid Precursor Protein (APP) knock-in cells. With the use of ZFNs, we established APP knock in cell lines with gene-modification efficiencies of about 7%. We electroporated DNA fragment containing the promoter and the protein coding regions of the zinc finger nucleases into cells, instead of the plasmids, to avoid problems associated with off target homologous recombination, and adopted a pair of mutated FokI cleavage domains to reduce the toxic effects of the ZFNs on cell growth. Since over-expression of APP, or a subdomain of it, might lead to an immediately lethal effect, we used the Cre-LoxP System to regulate APP expression. Our genetically transformed cell lines, w5c1 and s12c8, showed detectable APP and Amyloid β (Aβ) production. The Swedish double mutation in the APP coding sequence enhanced APP and Aβ abundance. What is more, the activity of the three key secretases in Aβ formation could be modulated, indicating that these transgenic cells have potential for drug screening to modify amyloid metabolism in cells. Our transformed cells could readily be propagated in culture and should provide an excellent experimental medium for elucidating aspects of the molecular pathogenesis of Alzheimer’s disease, especially those concerning the amyloidogenic pathways involving mutations in the APP coding sequence. The cellular models may also serve as a tool for deriving potentially useful therapeutic agents. Public Library of Science 2013-11-06 /pmc/articles/PMC3819351/ /pubmed/24223114 http://dx.doi.org/10.1371/journal.pone.0075493 Text en © 2013 Zhang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhang, Xiaojing
Li, Hui
Mao, Yiqing
Li, Zhixin
Wang, Rong
Guo, Tingting
Jin, Ling
Song, Rongjing
Xu, Wei
Zhou, Na
Zhang, Yizhuang
Hu, Ruobi
Wang, Xi
Huang, Huakang
Lei, Zhen
Niu, Gang
Irwin, David M.
Tan, Huanran
An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology
title An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology
title_full An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology
title_fullStr An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology
title_full_unstemmed An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology
title_short An Over Expression APP Model for Anti-Alzheimer Disease Drug Screening Created by Zinc Finger Nuclease Technology
title_sort over expression app model for anti-alzheimer disease drug screening created by zinc finger nuclease technology
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3819351/
https://www.ncbi.nlm.nih.gov/pubmed/24223114
http://dx.doi.org/10.1371/journal.pone.0075493
work_keys_str_mv AT zhangxiaojing anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT lihui anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT maoyiqing anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT lizhixin anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT wangrong anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT guotingting anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT jinling anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT songrongjing anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT xuwei anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT zhouna anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT zhangyizhuang anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT huruobi anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT wangxi anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT huanghuakang anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT leizhen anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT niugang anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT irwindavidm anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT tanhuanran anoverexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT zhangxiaojing overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT lihui overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT maoyiqing overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT lizhixin overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT wangrong overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT guotingting overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT jinling overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT songrongjing overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT xuwei overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT zhouna overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT zhangyizhuang overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT huruobi overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT wangxi overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT huanghuakang overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT leizhen overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT niugang overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT irwindavidm overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology
AT tanhuanran overexpressionappmodelforantialzheimerdiseasedrugscreeningcreatedbyzincfingernucleasetechnology