Cargando…

Chromosomal assignment of canine THADA gene to CFA 10q25

BACKGROUND: Chromosomal translocations affecting the chromosome 2p21 cluster in a 450 kb breakpoint region are frequently observed in human benign thyroid adenomas. THADA (thyroid adenoma associated) was identified as the affected gene within this breakpoint region. In contrast to man tumours of the...

Descripción completa

Detalles Bibliográficos
Autores principales: Soller, Jan T, Beuing, Claudia, Murua Escobar, Hugo, Winkler, Susanne, Reimann-Berg, Nicola, Drieschner, Norbert, Dolf, Gaudenz, Schelling, Claude, Nolte, Ingo, Bullerdiek, Jörn
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2430699/
https://www.ncbi.nlm.nih.gov/pubmed/18522714
http://dx.doi.org/10.1186/1755-8166-1-11
_version_ 1782156419864199168
author Soller, Jan T
Beuing, Claudia
Murua Escobar, Hugo
Winkler, Susanne
Reimann-Berg, Nicola
Drieschner, Norbert
Dolf, Gaudenz
Schelling, Claude
Nolte, Ingo
Bullerdiek, Jörn
author_facet Soller, Jan T
Beuing, Claudia
Murua Escobar, Hugo
Winkler, Susanne
Reimann-Berg, Nicola
Drieschner, Norbert
Dolf, Gaudenz
Schelling, Claude
Nolte, Ingo
Bullerdiek, Jörn
author_sort Soller, Jan T
collection PubMed
description BACKGROUND: Chromosomal translocations affecting the chromosome 2p21 cluster in a 450 kb breakpoint region are frequently observed in human benign thyroid adenomas. THADA (thyroid adenoma associated) was identified as the affected gene within this breakpoint region. In contrast to man tumours of the thyroid gland of dogs (Canis lupus familiaris) constitute mainly as follicular cell carcinomas, with malignant thyroid tumours being more frequent than benign thyroid adenomas. In order to elucidate if the THADA gene is also a target of chromosomal rearrangements in thyroid adenomas of the dog we have physically mapped the canine THADA gene to canine chromosome 10. A PCR was established to screen a canine genome library for a BAC clone containing the gene sequence of canine THADA. Further PCR reactions were done using the identified BAC clone as a template in order to verify the corresponding PCR product by sequencing. Canine whole blood was incubated with colcemid in order to arrest the cultured cells in metaphases. The verified BAC DNA was digoxigenin labeled and used as a probe in fluorescence in situ hybridization (FISH). Ten well spread metaphases were examined indicating a signal on canine chromosome 10 on both chromatids. A detailed fine mapping was performed indicating the canine THADA gene locus on the q-arm of chromosome 10. RESULTS: The canine THADA gene locus was mapped on chromosome 10q25. Our mapping results obtained in this study following the previously described nomenclature for the canine karyotype. CONCLUSION: We analysed whether the THADA gene locus is a hotspot of canine chromosomal rearrangements in canine neoplastic lesions of the thyroid and in addition might play a role as a candidate gene for a possible malignant transformation of canine thyroid adenomas. Although the available cytogenetic data of canine thyroid adenomas are still insufficient the chromosomal region to which the canine THADA has been mapped seems to be no hotspot of chromosomal aberrations seen in canine thyroid adenomas.
format Text
id pubmed-2430699
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-24306992008-06-19 Chromosomal assignment of canine THADA gene to CFA 10q25 Soller, Jan T Beuing, Claudia Murua Escobar, Hugo Winkler, Susanne Reimann-Berg, Nicola Drieschner, Norbert Dolf, Gaudenz Schelling, Claude Nolte, Ingo Bullerdiek, Jörn Mol Cytogenet Short Report BACKGROUND: Chromosomal translocations affecting the chromosome 2p21 cluster in a 450 kb breakpoint region are frequently observed in human benign thyroid adenomas. THADA (thyroid adenoma associated) was identified as the affected gene within this breakpoint region. In contrast to man tumours of the thyroid gland of dogs (Canis lupus familiaris) constitute mainly as follicular cell carcinomas, with malignant thyroid tumours being more frequent than benign thyroid adenomas. In order to elucidate if the THADA gene is also a target of chromosomal rearrangements in thyroid adenomas of the dog we have physically mapped the canine THADA gene to canine chromosome 10. A PCR was established to screen a canine genome library for a BAC clone containing the gene sequence of canine THADA. Further PCR reactions were done using the identified BAC clone as a template in order to verify the corresponding PCR product by sequencing. Canine whole blood was incubated with colcemid in order to arrest the cultured cells in metaphases. The verified BAC DNA was digoxigenin labeled and used as a probe in fluorescence in situ hybridization (FISH). Ten well spread metaphases were examined indicating a signal on canine chromosome 10 on both chromatids. A detailed fine mapping was performed indicating the canine THADA gene locus on the q-arm of chromosome 10. RESULTS: The canine THADA gene locus was mapped on chromosome 10q25. Our mapping results obtained in this study following the previously described nomenclature for the canine karyotype. CONCLUSION: We analysed whether the THADA gene locus is a hotspot of canine chromosomal rearrangements in canine neoplastic lesions of the thyroid and in addition might play a role as a candidate gene for a possible malignant transformation of canine thyroid adenomas. Although the available cytogenetic data of canine thyroid adenomas are still insufficient the chromosomal region to which the canine THADA has been mapped seems to be no hotspot of chromosomal aberrations seen in canine thyroid adenomas. BioMed Central 2008-06-03 /pmc/articles/PMC2430699/ /pubmed/18522714 http://dx.doi.org/10.1186/1755-8166-1-11 Text en Copyright © 2008 Soller et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Report
Soller, Jan T
Beuing, Claudia
Murua Escobar, Hugo
Winkler, Susanne
Reimann-Berg, Nicola
Drieschner, Norbert
Dolf, Gaudenz
Schelling, Claude
Nolte, Ingo
Bullerdiek, Jörn
Chromosomal assignment of canine THADA gene to CFA 10q25
title Chromosomal assignment of canine THADA gene to CFA 10q25
title_full Chromosomal assignment of canine THADA gene to CFA 10q25
title_fullStr Chromosomal assignment of canine THADA gene to CFA 10q25
title_full_unstemmed Chromosomal assignment of canine THADA gene to CFA 10q25
title_short Chromosomal assignment of canine THADA gene to CFA 10q25
title_sort chromosomal assignment of canine thada gene to cfa 10q25
topic Short Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2430699/
https://www.ncbi.nlm.nih.gov/pubmed/18522714
http://dx.doi.org/10.1186/1755-8166-1-11
work_keys_str_mv AT sollerjant chromosomalassignmentofcaninethadagenetocfa10q25
AT beuingclaudia chromosomalassignmentofcaninethadagenetocfa10q25
AT muruaescobarhugo chromosomalassignmentofcaninethadagenetocfa10q25
AT winklersusanne chromosomalassignmentofcaninethadagenetocfa10q25
AT reimannbergnicola chromosomalassignmentofcaninethadagenetocfa10q25
AT drieschnernorbert chromosomalassignmentofcaninethadagenetocfa10q25
AT dolfgaudenz chromosomalassignmentofcaninethadagenetocfa10q25
AT schellingclaude chromosomalassignmentofcaninethadagenetocfa10q25
AT nolteingo chromosomalassignmentofcaninethadagenetocfa10q25
AT bullerdiekjorn chromosomalassignmentofcaninethadagenetocfa10q25