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In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals

The current study was undertaken to investigate potential oncogenic functions of NanogP8, a tumor-specific retrogene homolog of Nanog (expressed in pluripotent cells), in transgenic animal models. To this end, human primary prostate tumor-derived NanogP8 was targeted to the cytokeratin 14 (K14) cell...

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Autores principales: Badeaux, Mark A, Jeter, Collene R, Gong, Shuai, Liu, Bigang, Suraneni, Mahipal V, Rundhaug, Joyce, Fischer, Susan M, Yang, Tao, Kusewitt, Donna, Tang, Dean G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3841319/
https://www.ncbi.nlm.nih.gov/pubmed/23839044
http://dx.doi.org/10.4161/cc.25402
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author Badeaux, Mark A
Jeter, Collene R
Gong, Shuai
Liu, Bigang
Suraneni, Mahipal V
Rundhaug, Joyce
Fischer, Susan M
Yang, Tao
Kusewitt, Donna
Tang, Dean G
author_facet Badeaux, Mark A
Jeter, Collene R
Gong, Shuai
Liu, Bigang
Suraneni, Mahipal V
Rundhaug, Joyce
Fischer, Susan M
Yang, Tao
Kusewitt, Donna
Tang, Dean G
author_sort Badeaux, Mark A
collection PubMed
description The current study was undertaken to investigate potential oncogenic functions of NanogP8, a tumor-specific retrogene homolog of Nanog (expressed in pluripotent cells), in transgenic animal models. To this end, human primary prostate tumor-derived NanogP8 was targeted to the cytokeratin 14 (K14) cellular compartment, and two lines of K14-NanogP8 mice were derived. The line 1 animals, expressing high levels of NanogP8, experienced perinatal lethality and developmental abnormalities in multiple organs, including the skin, tongue, eye, and thymus in surviving animals. On postnatal day 5 transgenic skin, for example, there was increased c-Myc expression and Ki-67(+) cells accompanied by profound abnormalities in skin development such as thickened interfollicular epidermis and dermis and lack of hypodermis and sebaceous glands. The line 3 mice, expressing low levels of NanogP8, were grossly normal except cataract development by 4–6 mo of age. Surprisingly, both lines of mice do not develop spontaneous tumors related to transgene expression. Even more unexpectedly, high levels of NanogP8 expression in L1 mice actually inhibited tumor development in a two-stage chemical carcinogenesis model. Mechanistic studies revealed that constitutive NanogP8 overexpression in adult L1 mice reduced CD34(+)α6(+) and Lrig-1(+) bulge stem cells, impaired keratinocyte migration, and repressed the expression of many stem cell-associated genes, including Bmp5, Fgfr2, Jmjd1a, and Jun. Our study, for the first time, indicates that transgenically expressed human NanogP8 is biologically functional, but suggests that high levels of NanogP8 may disrupt normal developmental programs and inhibit tumor development by depleting stem cells.
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spelling pubmed-38413192013-11-29 In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals Badeaux, Mark A Jeter, Collene R Gong, Shuai Liu, Bigang Suraneni, Mahipal V Rundhaug, Joyce Fischer, Susan M Yang, Tao Kusewitt, Donna Tang, Dean G Cell Cycle Report The current study was undertaken to investigate potential oncogenic functions of NanogP8, a tumor-specific retrogene homolog of Nanog (expressed in pluripotent cells), in transgenic animal models. To this end, human primary prostate tumor-derived NanogP8 was targeted to the cytokeratin 14 (K14) cellular compartment, and two lines of K14-NanogP8 mice were derived. The line 1 animals, expressing high levels of NanogP8, experienced perinatal lethality and developmental abnormalities in multiple organs, including the skin, tongue, eye, and thymus in surviving animals. On postnatal day 5 transgenic skin, for example, there was increased c-Myc expression and Ki-67(+) cells accompanied by profound abnormalities in skin development such as thickened interfollicular epidermis and dermis and lack of hypodermis and sebaceous glands. The line 3 mice, expressing low levels of NanogP8, were grossly normal except cataract development by 4–6 mo of age. Surprisingly, both lines of mice do not develop spontaneous tumors related to transgene expression. Even more unexpectedly, high levels of NanogP8 expression in L1 mice actually inhibited tumor development in a two-stage chemical carcinogenesis model. Mechanistic studies revealed that constitutive NanogP8 overexpression in adult L1 mice reduced CD34(+)α6(+) and Lrig-1(+) bulge stem cells, impaired keratinocyte migration, and repressed the expression of many stem cell-associated genes, including Bmp5, Fgfr2, Jmjd1a, and Jun. Our study, for the first time, indicates that transgenically expressed human NanogP8 is biologically functional, but suggests that high levels of NanogP8 may disrupt normal developmental programs and inhibit tumor development by depleting stem cells. Landes Bioscience 2013-08-01 2013-06-26 /pmc/articles/PMC3841319/ /pubmed/23839044 http://dx.doi.org/10.4161/cc.25402 Text en Copyright © 2013 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Report
Badeaux, Mark A
Jeter, Collene R
Gong, Shuai
Liu, Bigang
Suraneni, Mahipal V
Rundhaug, Joyce
Fischer, Susan M
Yang, Tao
Kusewitt, Donna
Tang, Dean G
In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals
title In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals
title_full In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals
title_fullStr In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals
title_full_unstemmed In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals
title_short In vivo functional studies of tumor-specific retrogene NanogP8 in transgenic animals
title_sort in vivo functional studies of tumor-specific retrogene nanogp8 in transgenic animals
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3841319/
https://www.ncbi.nlm.nih.gov/pubmed/23839044
http://dx.doi.org/10.4161/cc.25402
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