Relationship between chromosome fragility, aneuploidy and severity of the haematological disease in Fanconi anaemia

被引:3
作者
Callén, E
Ramírez, MJ
Creus, A
Marcos, R
Ortega, JJ
Olivé, T
Badell, I
Surrallés, J
机构
[1] Univ Autonoma Barcelona, Grp Mutagenesis, Dept Genet & Microbiol, Bellaterra 08193, Barcelona, Spain
[2] Hosp Gen Valle Hebron, Bone Marrow Transplantat Unit, Serv Paediat Hematol Oncol, Barcelona 08035, Spain
基金
欧盟地平线“2020”;
关键词
aneuploidy; chromosome fragility; Fanconi anaemia; haematological abnormalities; telomeres;
D O I
10.1016/S0027-5107(02)00081-7
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Fanconi anemia (FA) is a chromosome instability syndrome, characterized by progressive pancytopenia and cancer susceptibility. Other cellular features of FA cells are hypersensitivity to DNA cross-linking agents and accelerated telomere shortening. We have quantified overall genome chromosome fragility and euploidy as well as chromosomes 7 and 8 aneuploidy in peripheral blood lymphocytes from a group of FA patients and age-matched controls that were previously measured for telomere length. The haematology of FA samples were also characterized in terms of whole blood cell, neuthrophil and platelet counts, transfusion dependency, requirement of androgens, cortico-steroids or bone marrow transplantation, and the development of bone marrow clonal cytogenetic abnormalities, myelodysplastic syndrome or acute myeloid leukemia. As expected, a high frequency of spontaneous chromosome breaks was observed in FA patients, especially of chromatid-type. No differences in chromosomes 7 and 8 monosomy, polysomy and non-disjunction were detected between FA patients and controls. The same was true for overall genome haploidy or polyploidy. Interestingly, the spontaneous levels of chromosome fragility but not of numerical abnormalities were correlated to the severity of the haematological disease in FA. None of the variables included in the present investigation (chromosome fragility, chromosome numerical abnormalities and haematological status) were correlated to telomere length. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:75 / 83
页数:9
相关论文
共 30 条
[1]   Positional cloning of the Fanconi anaemia group A gene [J].
Apostolou, S ;
Whitmore, SA ;
Crawford, J ;
Lennon, G ;
Sutherland, GR ;
Callen, DF ;
Ianzano, L ;
Savino, M ;
DApolito, M ;
Notarangelo, A ;
Memeo, E ;
Piemontese, MR ;
Zelante, L ;
Savoia, A ;
Gibson, RA ;
Tipping, AJ ;
Morgan, NV ;
Hassock, S ;
Jansen, S ;
deRavel, TJ ;
VanBerkel, C ;
Pronk, JC ;
Easton, DF ;
Mathew, CG ;
Levran, O ;
Verlander, PC ;
Batish, SD ;
Erlich, T ;
Auerbach, AD ;
CletonJansen, AM ;
Moerland, EW ;
Cornelisse, CJ ;
Doggett, NA ;
Deaven, LL ;
Moyzis, RK .
NATURE GENETICS, 1996, 14 (03) :324-328
[2]   Telomere shortening and tumor formation by mouse cells lacking telomerase RNA [J].
Blasco, MA ;
Lee, HW ;
Hande, MP ;
Samper, E ;
Lansdorp, PM ;
DePinho, RA ;
Greider, CW .
CELL, 1997, 91 (01) :25-34
[3]   Breaks at telomeres and TRF2-independent end fusions in Fanconi anemia [J].
Callén, E ;
Samper, E ;
Ramírez, MJ ;
Creus, A ;
Marcos, R ;
Ortega, JJ ;
Olivé, T ;
Badell, I ;
Blasco, MA ;
Surrallés, J .
HUMAN MOLECULAR GENETICS, 2002, 11 (04) :439-444
[4]  
CASADO JA, 2001, FANC AN RES FUND S P
[5]   The Fanconi anaemia gene FANCF encodes a novel protein with homology to ROM [J].
de Winter, JP ;
Rooimans, MA ;
van der Weel, L ;
van Berkel, CGM ;
Alon, N ;
Bosnoyan-Collins, L ;
de Groot, J ;
Zhi, Y ;
Waisfisz, Q ;
Pronk, JC ;
Arwert, F ;
Mathew, CG ;
Scheper, RJ ;
Hoatlin, ME ;
Buchwald, M ;
Joenje, H .
NATURE GENETICS, 2000, 24 (01) :15-16
[6]   The Fanconi anaemia group G gene FANCG is identical with XRCC9 [J].
de Winter, JP ;
Waisfisz, Q ;
Rooimans, MA ;
van Berkel, CGM ;
Bosnoyan-Collins, L ;
Alon, N ;
Carreau, M ;
Bender, O ;
Demuth, I ;
Schindler, D ;
Pronk, JC ;
Arwert, F ;
Hoehn, H ;
Digweed, M ;
Buchwald, M ;
Joenje, H .
NATURE GENETICS, 1998, 20 (03) :281-283
[7]   Isolation of a cDNA representing the Fanconi anemia complementation group E gene [J].
de Winter, JP ;
Léveillé, F ;
van Berkel, CGM ;
Rooimans, MA ;
van der Weel, L ;
Steltenpool, J ;
Demuth, I ;
Morgan, NV ;
Alon, N ;
Bosnoyan-Collins, L ;
Lightfoot, J ;
Leegwater, PA ;
Waisfisz, Q ;
Komatsu, K ;
Arwert, F ;
Pronk, JC ;
Mathew, CG ;
Digweed, M ;
Buchwald, M ;
Joenje, H .
AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 67 (05) :1306-1308
[8]   The fidelity of double strand breaks processing is impaired in complementation groups B and D of Fanconi anemia, a genetic instability syndrome [J].
Escarceller, M ;
Rousset, S ;
Moustacchi, E ;
Papadopoulo, D .
SOMATIC CELL AND MOLECULAR GENETICS, 1997, 23 (06) :401-411
[9]   Fanconi anemia C gene product plays a role in the fidelity of blunt DNA end-joining [J].
Escarceller, M ;
Buchwald, M ;
Singleton, BK ;
Jeggo, PA ;
Jackson, SP ;
Moustacchi, E ;
Papadopoulo, D .
JOURNAL OF MOLECULAR BIOLOGY, 1998, 279 (02) :375-385
[10]   SPONTANEOUS CHROMOSOME-ABERRATIONS IN FANCONIS ANEMIA PATIENTS ARE LOCATED AT FRAGILE SITES AND ACUTE MYELOID-LEUKEMIA BREAKPOINTS [J].
FUNDIA, A ;
GORLA, N ;
LARRIPA, I .
HEREDITAS, 1994, 120 (01) :47-50