Open access · OA
via OpenAlex
Conditional BRAFV600E Expression Induces DNA Synthesis, Apoptosis, Dedifferentiation, and Chromosomal Instability in Thyroid PCCL3 Cells
Norisato Mitsutake, Jeffrey A. Knauf, Shin Mitsutake, Cléo Otaviano Mesa, Lei Zhang, James A. Fagin
Cancer Research · 2005 · ▲ 225 citations
Abstract
The activating mutation BRAF(T1796A) is the most prevalent genetic alteration in papillary thyroid carcinomas (PTC). It is associated with advanced PTCs, suggesting that this oncoprotein confers thyroid cancers with more aggressive properties. BRAF(T1796A) is also observed in thyroid micropapillary carcinomas and may thus be an early event in tumor development. To explore its biological consequences, we established doxycycline-inducible BRAF(V600E)-expressing clonal lines derived from well-differentiated rat thyroid PCCL3 cells. Expression of BRAF(V600E) did not induce growth in the absence of thyrotropin despite increasing DNA synthesis, which is likely explained because of a concomitant increase in apoptosis. Thyrotropin-dependent cell growth and DNA synthesis were reduced by BRAF(V600E) because of decreased thyrotropin responsiveness associated with inhibition of thyrotropin receptor gene expression. These results are similar to those obtained following conditional expression of RET/PTC. However, in contrast to RET/PTC, BRAF activation did not impair key activation steps distal to the thyrotropin receptor, such as forskolin-induced adenylyl cyclase activity or cyclic AMP-induced DNA synthesis. We reported previously that acute RET/PTC expression in PCCL3 cells did not induce genomic instability. By contrast, induction of BRAF(V600E) expression increased the frequency of micronuclei by both clastogenic and aneugenic events. These data indicate that BRAF(V600E) expression confers thyroid cells with little growth advantage because of concomitant activation of DNA synthesis and apoptosis. However, in contrast to RET/PTC, BRAF(V600E) may facilitate the acquisition of secondary genetic events through induction of genomic instability, which may account for its aggressive properties.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1158/0008-5472.can-04-3314
- Canonical
- link ↗
- Fetched
- 2026-07-16 MST
Cite this
APA
Mitsutake, N., Knauf, J.A., Mitsutake, S., Mesa, C.O., Zhang, L., & Fagin, J.A. (2005). Conditional BRAFV600E Expression Induces DNA Synthesis, Apoptosis, Dedifferentiation, and Chromosomal Instability in Thyroid PCCL3 Cells. <em>Cancer Research</em>. https://doi.org/10.1158/0008-5472.can-04-3314
Vancouver
Mitsutake N, Knauf JA, Mitsutake S, Mesa CO, Zhang L, Fagin JA. Conditional BRAFV600E Expression Induces DNA Synthesis, Apoptosis, Dedifferentiation, and Chromosomal Instability in Thyroid PCCL3 Cells. Cancer Research. 2005. doi:10.1158/0008-5472.can-04-3314.
BibTeX
@article{norisato2005Condit,
title = {Conditional BRAFV600E Expression Induces DNA Synthesis, Apoptosis, Dedifferentiation, and Chromosomal Instability in Thyroid PCCL3 Cells},
author = {Norisato Mitsutake and Jeffrey A. Knauf and Shin Mitsutake and Cléo Otaviano Mesa and Lei Zhang and James A. Fagin},
journal = {Cancer Research},
year = {2005},
doi = {10.1158/0008-5472.can-04-3314},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Proceedings of the National Academy of Sciences 2021
Open access · CC-BY
Pericentromeric noncoding RNA changes DNA binding of CTCF and inflammatory gene expression in senescence and cancer
Stem Cells 2007
Open access · OA
Concise Review: Roles of Polycomb Group Proteins in Development and Disease: A Stem Cell Perspective
Journal of Cancer Research and Therapeutics 2012
Open access · OA
Pre-cancerous (DNA and chromosomal) lesions in professional sports
Carcinogenesis 2005
Open access · OA
Roles of tumor suppressor and telomere maintenance genes in cancer and aging—an epidemiological study
Briefings in Functional Genomics 2013
Open access · OA
Advances in genomics of bony fish
Nature Communications 2021
Open access · CC-BY