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Identification of the Fanconi Anemia Complementation Group I Gene, FANCI

To identify the gene underlying Fanconi anemia (FA) complementation group I we studied informative FA-I families by a genome-wide linkage analysis, which resulted in 4 candidate regions together encompassing 351 genes. Candidates were selected via bioinformatics and data mining on the basis of their...

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Autores principales: Dorsman, Josephine C., Levitus, Marieke, Rockx, Davy, Rooimans, Martin A., Oostra, Anneke B., Haitjema, Anneke, Bakker, Sietske T., Steltenpool, Jûrgen, Schuler, Dezsö, Mohan, Sheila, Schindler, Detlev, Arwert, Fré, Pals, Gerard, Mathew, Christopher G., Waisfisz, Quinten, de Winter, Johan P., Joenje, Hans
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4618213/
https://www.ncbi.nlm.nih.gov/pubmed/17452773
http://dx.doi.org/10.1155/2007/151968
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author Dorsman, Josephine C.
Levitus, Marieke
Rockx, Davy
Rooimans, Martin A.
Oostra, Anneke B.
Haitjema, Anneke
Bakker, Sietske T.
Steltenpool, Jûrgen
Schuler, Dezsö
Mohan, Sheila
Schindler, Detlev
Arwert, Fré
Pals, Gerard
Mathew, Christopher G.
Waisfisz, Quinten
de Winter, Johan P.
Joenje, Hans
author_facet Dorsman, Josephine C.
Levitus, Marieke
Rockx, Davy
Rooimans, Martin A.
Oostra, Anneke B.
Haitjema, Anneke
Bakker, Sietske T.
Steltenpool, Jûrgen
Schuler, Dezsö
Mohan, Sheila
Schindler, Detlev
Arwert, Fré
Pals, Gerard
Mathew, Christopher G.
Waisfisz, Quinten
de Winter, Johan P.
Joenje, Hans
author_sort Dorsman, Josephine C.
collection PubMed
description To identify the gene underlying Fanconi anemia (FA) complementation group I we studied informative FA-I families by a genome-wide linkage analysis, which resulted in 4 candidate regions together encompassing 351 genes. Candidates were selected via bioinformatics and data mining on the basis of their resemblance to other FA genes/proteins acting in the FA pathway, such as: degree of evolutionary conservation, presence of nuclear localization signals and pattern of tissue-dependent expression. We found a candidate, KIAA1794 on chromosome 15q25-26, to be mutated in 8 affected individuals previously assigned to complementation group I. Western blots of endogenous FANCI indicated that functionally active KIAA1794 protein is lacking in FA-I individuals. Knock-down of KIAA1794 expression by siRNA in HeLa cells caused excessive chromosomal breakage induced by mitomycin C, a hallmark of FA cells. Furthermore, phenotypic reversion of a patient-derived cell line was associated with a secondary genetic alteration at the KIAA1794 locus. These data add up to two conclusions. First, KIAA1794 is a FA gene. Second, this gene is identical to FANCI, since the patient cell lines found mutated in this study included the reference cell line for group I, EUFA592.
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spelling pubmed-46182132016-01-12 Identification of the Fanconi Anemia Complementation Group I Gene, FANCI Dorsman, Josephine C. Levitus, Marieke Rockx, Davy Rooimans, Martin A. Oostra, Anneke B. Haitjema, Anneke Bakker, Sietske T. Steltenpool, Jûrgen Schuler, Dezsö Mohan, Sheila Schindler, Detlev Arwert, Fré Pals, Gerard Mathew, Christopher G. Waisfisz, Quinten de Winter, Johan P. Joenje, Hans Cell Oncol Other To identify the gene underlying Fanconi anemia (FA) complementation group I we studied informative FA-I families by a genome-wide linkage analysis, which resulted in 4 candidate regions together encompassing 351 genes. Candidates were selected via bioinformatics and data mining on the basis of their resemblance to other FA genes/proteins acting in the FA pathway, such as: degree of evolutionary conservation, presence of nuclear localization signals and pattern of tissue-dependent expression. We found a candidate, KIAA1794 on chromosome 15q25-26, to be mutated in 8 affected individuals previously assigned to complementation group I. Western blots of endogenous FANCI indicated that functionally active KIAA1794 protein is lacking in FA-I individuals. Knock-down of KIAA1794 expression by siRNA in HeLa cells caused excessive chromosomal breakage induced by mitomycin C, a hallmark of FA cells. Furthermore, phenotypic reversion of a patient-derived cell line was associated with a secondary genetic alteration at the KIAA1794 locus. These data add up to two conclusions. First, KIAA1794 is a FA gene. Second, this gene is identical to FANCI, since the patient cell lines found mutated in this study included the reference cell line for group I, EUFA592. IOS Press 2007 2007-04-23 /pmc/articles/PMC4618213/ /pubmed/17452773 http://dx.doi.org/10.1155/2007/151968 Text en Copyright © 2007 Hindawi Publishing Corporation and the authors.
spellingShingle Other
Dorsman, Josephine C.
Levitus, Marieke
Rockx, Davy
Rooimans, Martin A.
Oostra, Anneke B.
Haitjema, Anneke
Bakker, Sietske T.
Steltenpool, Jûrgen
Schuler, Dezsö
Mohan, Sheila
Schindler, Detlev
Arwert, Fré
Pals, Gerard
Mathew, Christopher G.
Waisfisz, Quinten
de Winter, Johan P.
Joenje, Hans
Identification of the Fanconi Anemia Complementation Group I Gene, FANCI
title Identification of the Fanconi Anemia Complementation Group I Gene, FANCI
title_full Identification of the Fanconi Anemia Complementation Group I Gene, FANCI
title_fullStr Identification of the Fanconi Anemia Complementation Group I Gene, FANCI
title_full_unstemmed Identification of the Fanconi Anemia Complementation Group I Gene, FANCI
title_short Identification of the Fanconi Anemia Complementation Group I Gene, FANCI
title_sort identification of the fanconi anemia complementation group i gene, fanci
topic Other
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4618213/
https://www.ncbi.nlm.nih.gov/pubmed/17452773
http://dx.doi.org/10.1155/2007/151968
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