Cargando…

Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy

Secreted Nano-luciferase (secNluc) is a newly engineered secreted luciferase that possesses advantages of high structural stability, long half-life, and glow-type kinetics together with high light emission intensity, and thus would become one of the most valuable tools for bioluminescence assays. Ho...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, JingZhe, Guo, ZhiLan, Sato, Takashi, Yuan, Bo, Ma, YanYan, Qian, Dan, Zhong, JuYing, Jin, MengMeng, Huang, Peng, Che, LuYang, Wang, Yi, Lei, Yan, Liu, ChangZhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5931628/
https://www.ncbi.nlm.nih.gov/pubmed/29719001
http://dx.doi.org/10.1371/journal.pone.0196617
_version_ 1783319676278800384
author Li, JingZhe
Guo, ZhiLan
Sato, Takashi
Yuan, Bo
Ma, YanYan
Qian, Dan
Zhong, JuYing
Jin, MengMeng
Huang, Peng
Che, LuYang
Wang, Yi
Lei, Yan
Liu, ChangZhen
author_facet Li, JingZhe
Guo, ZhiLan
Sato, Takashi
Yuan, Bo
Ma, YanYan
Qian, Dan
Zhong, JuYing
Jin, MengMeng
Huang, Peng
Che, LuYang
Wang, Yi
Lei, Yan
Liu, ChangZhen
author_sort Li, JingZhe
collection PubMed
description Secreted Nano-luciferase (secNluc) is a newly engineered secreted luciferase that possesses advantages of high structural stability, long half-life, and glow-type kinetics together with high light emission intensity, and thus would become one of the most valuable tools for bioluminescence assays. However, like other secreted luciferases, secNluc has to mix with the components in the conditioned medium surrounding test cells, or in the biological samples such as blood or urine after being secreted. These components may interfere with secNluc-catalyzed bioluminescence reactions and thus limit the application of the secNluc reporter system. In this study, we first examined the effects of three factors, pH, serum and residual reagents, on secNluc-catalyzed bioluminescence reactions, finding that these factors could interfere with bioluminescence reactions and result in background signal. To resolve these problems, we applied a simple affinity purification strategy in which secNluc was fused with a FLAG-tag, and anti-FLAG magnetic beads were used to catch and transfer the fusion protein to PBST, an optimal buffer for secNluc-catalyzed bioluminescence reactions that was identified in this study. The results indicated that this strategy could not only negate the interferences from serum or residual reagents and enhance the stability of light emission but also greatly increase signal intensity through enzyme enrichment. This strategy may contribute to biomedical studies that utilize secNluc and other secreted luciferases, especially those requiring superior sensitivity, low background noise and high reproducibility.
format Online
Article
Text
id pubmed-5931628
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-59316282018-05-11 Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy Li, JingZhe Guo, ZhiLan Sato, Takashi Yuan, Bo Ma, YanYan Qian, Dan Zhong, JuYing Jin, MengMeng Huang, Peng Che, LuYang Wang, Yi Lei, Yan Liu, ChangZhen PLoS One Research Article Secreted Nano-luciferase (secNluc) is a newly engineered secreted luciferase that possesses advantages of high structural stability, long half-life, and glow-type kinetics together with high light emission intensity, and thus would become one of the most valuable tools for bioluminescence assays. However, like other secreted luciferases, secNluc has to mix with the components in the conditioned medium surrounding test cells, or in the biological samples such as blood or urine after being secreted. These components may interfere with secNluc-catalyzed bioluminescence reactions and thus limit the application of the secNluc reporter system. In this study, we first examined the effects of three factors, pH, serum and residual reagents, on secNluc-catalyzed bioluminescence reactions, finding that these factors could interfere with bioluminescence reactions and result in background signal. To resolve these problems, we applied a simple affinity purification strategy in which secNluc was fused with a FLAG-tag, and anti-FLAG magnetic beads were used to catch and transfer the fusion protein to PBST, an optimal buffer for secNluc-catalyzed bioluminescence reactions that was identified in this study. The results indicated that this strategy could not only negate the interferences from serum or residual reagents and enhance the stability of light emission but also greatly increase signal intensity through enzyme enrichment. This strategy may contribute to biomedical studies that utilize secNluc and other secreted luciferases, especially those requiring superior sensitivity, low background noise and high reproducibility. Public Library of Science 2018-05-02 /pmc/articles/PMC5931628/ /pubmed/29719001 http://dx.doi.org/10.1371/journal.pone.0196617 Text en © 2018 Li 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Li, JingZhe
Guo, ZhiLan
Sato, Takashi
Yuan, Bo
Ma, YanYan
Qian, Dan
Zhong, JuYing
Jin, MengMeng
Huang, Peng
Che, LuYang
Wang, Yi
Lei, Yan
Liu, ChangZhen
Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy
title Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy
title_full Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy
title_fullStr Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy
title_full_unstemmed Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy
title_short Optimized application of the secreted Nano-luciferase reporter system using an affinity purification strategy
title_sort optimized application of the secreted nano-luciferase reporter system using an affinity purification strategy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5931628/
https://www.ncbi.nlm.nih.gov/pubmed/29719001
http://dx.doi.org/10.1371/journal.pone.0196617
work_keys_str_mv AT lijingzhe optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT guozhilan optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT satotakashi optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT yuanbo optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT mayanyan optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT qiandan optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT zhongjuying optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT jinmengmeng optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT huangpeng optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT cheluyang optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT wangyi optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT leiyan optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy
AT liuchangzhen optimizedapplicationofthesecretednanoluciferasereportersystemusinganaffinitypurificationstrategy