Emergence and Cytogenetic Clonal Evolution of Chromosome 7 Abnormalities in Myeloid Malignancies: Investigating the Role of Telomere Dysfunction

被引:0
作者
Baldazzi, Carmen [1 ]
Bandini, Lorenza [2 ]
Robustelli, Valentina [1 ]
Patuelli, Agnese [2 ]
Venturi, Claudia [1 ]
Grassi, Alessandra [2 ]
Marzocchi, Giulia [2 ]
Ielpo, Angela [1 ]
Solli, Vincenza [2 ]
Bochicchio, Maria Teresa [3 ]
Paolini, Stefania [1 ]
Sartor, Chiara [1 ,2 ]
Zingarelli, Federico [1 ]
Curti, Antonio [1 ]
Ottaviani, Emanuela [1 ]
Testoni, Nicoletta [1 ,2 ]
机构
[1] IRCCS Azienda Osped Univ Bologna, Ist Ematol Seragnoli, I-40138 Bologna, Italy
[2] Univ Bologna, Dipartimento Sci Med & Chirurg, I-40138 Bologna, Italy
[3] IRCCS Ist Romagnolo Studio Tumori IRST Dino Amador, Biosci Lab, I-47014 Meldola, Italy
关键词
myeloid neoplasm; clonal evolution; monosomy; 7; deletion; 7q; chromosomal instability; telomeres; BONE-MARROW FAILURE; RING CHROMOSOMES; MDM4; CAUSE; LEUKEMIA; MONOSOMY-7; MUTATIONS; INSTABILITY; EXPRESSION; LANDSCAPE; VARIANTS;
D O I
10.3390/ijms26031162
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Monosomy 7 and deletion 7q are common chromosomal abnormalities in myeloid malignancies, and they are associated with a poor prognosis. The mechanism underlying their acquisition remains elusive. We identified a cohort of 24 patients exhibiting clones with different chromosome 7 abnormalities, such as deletion 7q, unstable derivatives (ring chromosomes or 'naked' centromeres), and monosomy 7. We designated this group as having cytogenetic clonal evolution of chromosome 7 abnormalities (CCE7). In some cases, CCE7 correlated with disease progression, suggesting that deletions or other derivatives involving the q-arm of chromosome 7 may arise early in the disease course. These abnormalities may be transient but can potentially evolve into monosomy 7. Within the CCE7 group, telomere loss or shortening may contribute to chromosomal instability and the emergence of unstable derivatives, as the chromosome 7 derivatives displayed loss or rearrangement of subtelomeric regions. Moreover, we identified variants in genes implicated in telomere biology disorders and observed specific genetic mutation profiles associated with different chromosome 7 abnormalities. These findings shed light on a potential mechanism leading to monosomy 7 through the evolution of chromosome 7q abnormalities. Identifying patients at risk of developing monosomy 7, based on the presence of unstable derivatives with telomere loss or a specific mutation profile, could potentially enhance patient management and guide the development of novel therapeutic strategies.
引用
收藏
页数:23
相关论文
共 48 条
[31]   An update on the biology and management of dyskeratosis congenita and related telomere biology disorders [J].
Niewisch, Marena R. ;
Savage, Sharon A. .
EXPERT REVIEW OF HEMATOLOGY, 2019, 12 (12) :1037-1052
[32]   Whole Chromosome Loss Is Promoted by Telomere Dysfunction in Primary Cells [J].
Pampalona, Judit ;
Soler, David ;
Genesca, Anna ;
Tusell, Laura .
GENES CHROMOSOMES & CANCER, 2010, 49 (04) :368-378
[33]   Genetics of therapy-related myelodysplasia and acute myeloid leukemia [J].
Pedersen-Bjergaard, J. ;
Andersen, M. K. ;
Andersen, M. T. ;
Christiansen, D. H. .
LEUKEMIA, 2008, 22 (02) :240-248
[34]   Monosomy 7/del (7q) in inherited bone marrow failure syndromes: A systematic review [J].
Pezeshki, Alex ;
Podder, Shreya ;
Kamel, Ralph ;
Corey, Seth J. .
PEDIATRIC BLOOD & CANCER, 2017, 64 (12)
[35]   The impact of concomitant cytogenetic abnormalities on acute myeloid leukemia with monosomy 7 or deletion 7q after HLA-matched allogeneic stem cell transplantation [J].
Poire, Xavier ;
Labopin, Myriam ;
Polge, Emmanuelle ;
Volin, Liisa ;
Finke, Juergen ;
Ganser, Arnold ;
Blaise, Didier ;
Yakoub-Agha, Ibrahim ;
Beelen, Dietrich ;
Forcade, Edouard ;
Lioure, Bruno ;
Socie, Gerard ;
Niederwieser, Dietger ;
Labussiere-Wallet, Helene ;
Maertens, Johan ;
Cornelissen, Jan ;
Craddock, Charles ;
Mohty, Mohamad ;
Esteve, Jordi ;
Nagler, Arnon .
AMERICAN JOURNAL OF HEMATOLOGY, 2020, 95 (03) :282-294
[36]   p53 in the Molecular Circuitry of Bone Marrow Failure Syndromes [J].
Rakotopare, Jeanne ;
Toledo, Franck ;
Baldi, Alfonso .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (19)
[37]   New Comprehensive Cytogenetic Scoring System for Primary Myelodysplastic Syndromes (MDS) and Oligoblastic Acute Myeloid Leukemia After MDS Derived From an International Database Merge [J].
Schanz, Julie ;
Tuechler, Heinz ;
Sole, Francesc ;
Mallo, Mar ;
Luno, Elisa ;
Cervera, Jose ;
Granada, Isabel ;
Hildebrandt, Barbara ;
Slovak, Marilyn L. ;
Ohyashiki, Kazuma ;
Steidl, Christian ;
Fonatsch, Christa ;
Pfeilstoecker, Michael ;
Noesslinger, Thomas ;
Valent, Peter ;
Giagounidis, Aristoteles ;
Aul, Carlo ;
Luebbert, Michael ;
Stauder, Reinhard ;
Krieger, Otto ;
Garcia-Manero, Guillermo ;
Faderl, Stefan ;
Pierce, Sherry ;
Le Beau, Michelle M. ;
Bennett, John M. ;
Greenberg, Peter ;
Germing, Ulrich ;
Haase, Detlef .
JOURNAL OF CLINICAL ONCOLOGY, 2012, 30 (08) :820-829
[38]   Cancer spectrum and outcomes in the Mendelian short telomere syndromes [J].
Schratz, Kristen E. ;
Haley, Lisa ;
Danoff, Sonye K. ;
Blackford, Amanda L. ;
DeZern, Amy E. ;
Gocke, Christopher D. ;
Duffield, Amy S. ;
Armanios, Mary .
BLOOD, 2020, 135 (22) :1946-1956
[39]   Aplastic anemia: Etiology, molecular pathogenesis, and emerging concepts [J].
Shallis, Rory M. ;
Ahmad, Rami ;
Zeidan, Amer M. .
EUROPEAN JOURNAL OF HAEMATOLOGY, 2018, 101 (06) :711-720
[40]   Germline Loss-of-Function Mutations in MDM4 Cause p53-Dependent Hematopoietic Cell Death in Patients with Variable Bone Marrow Failure Phenotypes [J].
Sharma, Richa ;
Bhoopalan, Senthil ;
Han, Lei ;
Yao, Yu ;
Mayberry, Kalin ;
Hansen, Baranda S. ;
Miller, Shondra ;
Khurana, Claudia ;
Erlacher, Miriam ;
Wlodarski, Marcin W. .
BLOOD, 2022, 140 :2955-2956