Literature DB >> 14734230

Familial myelodysplastic syndromes, monosomy 7/trisomy 8, and mutator effects.

Emanuela Maserati1, Antonella Minelli, Giuseppe Menna, Maria Paola Cecchini, Maria Ester Bernardo, Gabriele Rossi, Paola De Filippi, Francesco Lo Curto, Cesare Danesino, Franco Locatelli, Francesco Pasquali.   

Abstract

A family is reported, in which two sisters presented with myelodysplastic syndrome (MDS), namely refractory anemia with excess of blasts in transformation (RAEB-t), and refractory anemia (RA). Bone marrow chromosome changes were present in both: trisomy and tetrasomy 8 (with a pericentric inversion of one chromosome 8) in the older sister, and monosomy 7 (with clones with additional trisomies 19 and 21) in the younger one. Molecular data were obtained on the parental chromosome involved in these numerical anomalies, which proved to be of paternal origin in these cases. The observations of this family, and a review of familial cases of MDS/acute myeloid leukemia (AML), led us to consider that they may be divided into two groups: those which arise on the basis of a Mendelian predisposing disorder exerting a mutator effect, often with the acquisition of monosomy 7, and those in which no specific Mendelian predisposing disease is recognized, as the familial monosomy 7 cases and the one reported here. We postulate that in these families an inherited mutator effect is present and that it causes a karyotype instability, which leads to MDS/AML, often through the acquisition of monosomy 7 and trisomy 8.

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Year:  2004        PMID: 14734230     DOI: 10.1016/s0165-4608(03)00271-1

Source DB:  PubMed          Journal:  Cancer Genet Cytogenet        ISSN: 0165-4608


  3 in total

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2.  Autosomal dominant and sporadic monocytopenia with susceptibility to mycobacteria, fungi, papillomaviruses, and myelodysplasia.

Authors:  Donald C Vinh; Smita Y Patel; Gulbu Uzel; Victoria L Anderson; Alexandra F Freeman; Kenneth N Olivier; Christine Spalding; Stephen Hughes; Stefania Pittaluga; Mark Raffeld; Lynn R Sorbara; Houda Z Elloumi; Douglas B Kuhns; Maria L Turner; Edward W Cowen; Danielle Fink; Debra Long-Priel; Amy P Hsu; Li Ding; Michelle L Paulson; Adeline R Whitney; Elizabeth P Sampaio; David M Frucht; Frank R DeLeo; Steven M Holland
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3.  Bone marrow failure may be caused by chromosome anomalies exerting effects on RUNX1T1 gene.

Authors:  R Valli; L Vinti; A Frattini; M Fabbri; G Montalbano; C Olivieri; A Minelli; F Locatelli; F Pasquali; E Maserati
Journal:  Mol Cytogenet       Date:  2018-01-11       Impact factor: 2.009

  3 in total

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