Cargando…

L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation

Canines are useful in mammalian preclinical studies because they are larger than rodents and share many diseases with humans. Canine fetal fibroblast cells (CFFs) are an easily accessible source of somatic cells. However, they are easily driven to senescence and become unusable with continuous in vi...

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, So Hee, Kim, Bokyung, Kim, Jung Hak, Kim, Dong-Hoon, Lee, Seung Hoon, Lee, Dong-Seok, Lee, Hong J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8391401/
https://www.ncbi.nlm.nih.gov/pubmed/34440750
http://dx.doi.org/10.3390/cells10081980
_version_ 1783743266162737152
author Kim, So Hee
Kim, Bokyung
Kim, Jung Hak
Kim, Dong-Hoon
Lee, Seung Hoon
Lee, Dong-Seok
Lee, Hong J.
author_facet Kim, So Hee
Kim, Bokyung
Kim, Jung Hak
Kim, Dong-Hoon
Lee, Seung Hoon
Lee, Dong-Seok
Lee, Hong J.
author_sort Kim, So Hee
collection PubMed
description Canines are useful in mammalian preclinical studies because they are larger than rodents and share many diseases with humans. Canine fetal fibroblast cells (CFFs) are an easily accessible source of somatic cells. However, they are easily driven to senescence and become unusable with continuous in vitro culture. Therefore, to overcome these deficiencies, we investigated whether tetracycline-inducible L-myc gene expression promotes self-renewal activity and tumorigenicity in the production of induced conditional self-renewing fibroblast cells (iCSFCs). Here, we describe the characterization of a new iCSFC line immortalized by transduction with L-myc that displays in vitro self-renewal ability without tumorigenic capacity. We established conditionally inducible self-renewing fibroblast cells by transducing CFF-3 cells with L-myc under the tetracycline-inducible gene expression system. In the absence of doxycycline, the cells did not express L-myc or undergo self-renewal. The iCSFCs had a fibroblast-like morphology, normal chromosome pattern, and expressed fibroblast-specific genes and markers. However, the iCSFCs did not form tumors in a soft agar colony-forming assay. We observed higher expression of three ES modules (core pluripotency genes, polycomb repressive complex genes (PRC), and MYC-related genes) in the iCSFCs than in the CFF-3 cells; in particular, the core pluripotency genes (OCT4, SOX2, and NANOG) were markedly up-regulated compared with the PRC and MYC module genes. These results demonstrated that, in canine fetal fibroblasts, L-myc tetracycline-inducible promoter-driven gene expression induces self-renewal capacity but not tumor formation. This study suggests that L-myc gene-induced conditional self-renewing fibroblast cells can be used as an in vitro tool in a variety of biomedical studies related to drug screening.
format Online
Article
Text
id pubmed-8391401
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-83914012021-08-28 L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation Kim, So Hee Kim, Bokyung Kim, Jung Hak Kim, Dong-Hoon Lee, Seung Hoon Lee, Dong-Seok Lee, Hong J. Cells Article Canines are useful in mammalian preclinical studies because they are larger than rodents and share many diseases with humans. Canine fetal fibroblast cells (CFFs) are an easily accessible source of somatic cells. However, they are easily driven to senescence and become unusable with continuous in vitro culture. Therefore, to overcome these deficiencies, we investigated whether tetracycline-inducible L-myc gene expression promotes self-renewal activity and tumorigenicity in the production of induced conditional self-renewing fibroblast cells (iCSFCs). Here, we describe the characterization of a new iCSFC line immortalized by transduction with L-myc that displays in vitro self-renewal ability without tumorigenic capacity. We established conditionally inducible self-renewing fibroblast cells by transducing CFF-3 cells with L-myc under the tetracycline-inducible gene expression system. In the absence of doxycycline, the cells did not express L-myc or undergo self-renewal. The iCSFCs had a fibroblast-like morphology, normal chromosome pattern, and expressed fibroblast-specific genes and markers. However, the iCSFCs did not form tumors in a soft agar colony-forming assay. We observed higher expression of three ES modules (core pluripotency genes, polycomb repressive complex genes (PRC), and MYC-related genes) in the iCSFCs than in the CFF-3 cells; in particular, the core pluripotency genes (OCT4, SOX2, and NANOG) were markedly up-regulated compared with the PRC and MYC module genes. These results demonstrated that, in canine fetal fibroblasts, L-myc tetracycline-inducible promoter-driven gene expression induces self-renewal capacity but not tumor formation. This study suggests that L-myc gene-induced conditional self-renewing fibroblast cells can be used as an in vitro tool in a variety of biomedical studies related to drug screening. MDPI 2021-08-04 /pmc/articles/PMC8391401/ /pubmed/34440750 http://dx.doi.org/10.3390/cells10081980 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, So Hee
Kim, Bokyung
Kim, Jung Hak
Kim, Dong-Hoon
Lee, Seung Hoon
Lee, Dong-Seok
Lee, Hong J.
L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation
title L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation
title_full L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation
title_fullStr L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation
title_full_unstemmed L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation
title_short L-myc Gene Expression in Canine Fetal Fibroblasts Promotes Self-Renewal Capacity but Not Tumor Formation
title_sort l-myc gene expression in canine fetal fibroblasts promotes self-renewal capacity but not tumor formation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8391401/
https://www.ncbi.nlm.nih.gov/pubmed/34440750
http://dx.doi.org/10.3390/cells10081980
work_keys_str_mv AT kimsohee lmycgeneexpressionincaninefetalfibroblastspromotesselfrenewalcapacitybutnottumorformation
AT kimbokyung lmycgeneexpressionincaninefetalfibroblastspromotesselfrenewalcapacitybutnottumorformation
AT kimjunghak lmycgeneexpressionincaninefetalfibroblastspromotesselfrenewalcapacitybutnottumorformation
AT kimdonghoon lmycgeneexpressionincaninefetalfibroblastspromotesselfrenewalcapacitybutnottumorformation
AT leeseunghoon lmycgeneexpressionincaninefetalfibroblastspromotesselfrenewalcapacitybutnottumorformation
AT leedongseok lmycgeneexpressionincaninefetalfibroblastspromotesselfrenewalcapacitybutnottumorformation
AT leehongj lmycgeneexpressionincaninefetalfibroblastspromotesselfrenewalcapacitybutnottumorformation