der(1;9)(q10;p10)
2016-01-01 Soad Al Bahar  , Adriana Zamecnikova   Affiliation1.Kuwait Cancer Control Center, Department of Hematology, Laboratory of Cancer Genetics, Kuwait; [email protected]
Abstract
Review on der(1;9)(q10;p10), with data on clinics.
Clinics and Pathology
Disease
Phenotype stem cell origin
Table 1. Reported patients with der(1;9)(q10;p10).
Ref. | Sex/Age | Disease | Karyotype |
|
|
| Myeloid disorders |
1. | F/53 | PV | 47,XX,+der(1;9)(q10;p10) |
2. | F/47 | Post PV | 47,XX,+9 |
3. | F/30 | Post PV | 48,XX,+der(1;9)(q10;p10),+8/48,XX,t(1;9)(p10;q10),+8,+9/48,XX,+8,+9 |
4. | M/59 | Post PV MF | 47,XY,+9/47,XY,+der(1;9)(q10;p10) |
5. | F/61 | Post PV | 45,XX,-5/46,idem,+mar |
6. | M/60 | Post MF AML | 47,XY,+der(1;9)(q10;p10)br />47,XY,+der(1;9),del(13)(q13q31) |
7. | F/62 | Post PV AML | 48,XX,+der(1;9)(q10;p10),+8,del(13)(q11q14)/51,XX,+der(1;9)x2,+8,+14,+19 |
8. | M/59 | MF | 47,XY,t(1;9)(p10;q10),+der(1;9)(q10;p10) |
9. | M/37 | AML-M0 | 46,XY,t(3;12)(q26;p13)/46,idem,der(1;9)(q10;p10) |
10. | M | Post PV MF | 47,XY,+der(1;9)(q10;p10)/47,XY,+9 |
|
|
| Other malignancies |
11. | F | ALL | 46,XX,+1,der(1;9)(q10;p10),i(7)(q10),der(19)t(1;19)(q23;p13)/48,XX,+5,i(7)(q10),+8,der(19)t(1;19)(q23;p13) |
12. | M/45 | DLBCL LN | 48,XY,+der(1)t(1;19;22)(q23;q13;q11),der(1;9)(q10;p10),+3,der(12)t(12;19;22)(p12;q13;q11),der(15)t(15;16) |
13. | F/43 | MM | 48-49,X,-X,der(1;9)(q10;p10),t(1;8)(p21;q24),+3,add(5)(q35),-16,+18,+19,+21 |
14. | F | MM | 46,XX,del(5)(q13)/56-57,XX,+der(1;6)(q10;p10),+der(1;9)(q10;p10),+3,+del(5)(q33),del(6)(q25),+7,+8,+i(8) |
15. | F | MM | 50-54,X,-X,+der(1;9)(q10;p10),der(1)t(1;?3)(p36;q21),i(1)(q10),+3,-4,add(5) (p11),+del(5)(q31q33),+del(7) |
16. | F | MM | 45-49,X,add(?X)(p11),del(1)(p11p31),der(1)del(1)(p11p31)dup(1)(q12q25),+der(1;9)(q10;p10),+9,del(10)(q26), |
Abbreviations: PV., polycythemia vera; AML-M4., acute myelomonocytic leukemia; MF., myelofibrosis., AML-M0., acute myeloblastic leukemia with minimal differentiation; AML-M6., acute erythroleukemia; ALL., acute lymphoblastic leukemia; DLBCL., diffuse large B-cell lymphoma; LN., lymph node; MM., multiple myeloma.
1-2. den Nijs van Weert et al., 1989; 3-5. Swolin et al., 1986; 6-7. Rege-Cambrin et al., 1991; 8. Reilly et al., 1997; 9. Bobadilla et al., 2007; 10. Boiocchi et al 2013; 11. Uckun et al., 1998; 12. Martin-Subero et al., 2007; 13. Mohamed et al., 2007; 14-15. Gabrea et al., 2008; 16. Sawyer et al., 2014.
Epidemiology
Prognosis
Cytogenetics
Cytogenetics morphological
Additional anomalies
Genes Involved and Proteins
Result of the Chromosomal Anomaly
Oncogenesis
der(1;9)(q10;p10) is a relatively rare cytogenetic aberration that presumably occur in myeloproliferative neoplasms (den Nijs van Weert et al., 1989; Rege-Cambrin et al., 1991). In the majority of these cases, it was found as +der(1;9)(q10;p10), therefore leading to trisomy of both 1q and 9p arms. The formation of an extra copies of the entire chromosome arms are likely to be implicated in a neoplastic processes by a gene dosage effect, analogous to numerical aberrations.
The occurrence of +9 in patients with myeloproliferative disorders is of special interest with respect to the JAK2 gene on 9p24.1, suggesting that JAK2 copy number may play a pathogenetic role. This is supported by observation of a series of MPNs patients with t(1;9) describing that patients with either trisomy 9/+9p are invariably JAK2V617F-positive. The majority of these cases also possessed amplification of the gene in addition to the mutation, thus JAK2 activating mutations may cooperate with 9/9p trisomy. It can be hypothesized that the gain-of-function of JAK2 contributes to the disease phenotype while its enhanced constitutive activation provides a proliferative advantage (Reilly et al., 2008; Campbell et al., 2006). While the timing of the JAK2 mutation is unclear, the occurrence of common trisomies and non-random chromosome deletions in these patients suggests that it may not be the initiating event, but chromosome aneuploidy and gene deletions may precede the acquisition of JAK2 mutations. These data suggest that multiple genetic events may be associated with the development of der(1;9)(q10;p10) that frequently coexists at presentation or later during the further course of the disease. The der(1;9)(q10;p10) is usually present with additional common abnormalities, therefore it is likely to be a secondary event, representing clonal evolution that may play a role in disease progression.
Article Bibliography
| Pubmed ID | Last Year | Title | Authors |
|---|---|---|---|
| 17341266 | 2007 | An interphase fluorescence in situ hybridisation assay for the detection of 3q26.2/EVI1 rearrangements in myeloid malignancies. | Bobadilla D et al |
| 23787440 | 2013 | Morphologic and cytogenetic differences between post-polycythemic myelofibrosis and primary myelofibrosis in fibrotic stage. | Boiocchi L et al |
| 16873677 | 2006 | Mutation of JAK2 in the myeloproliferative disorders: timing, clonality studies, cytogenetic associations, and role in leukemic transformation. | Campbell PJ et al |
| 18381641 | 2008 | Secondary genomic rearrangements involving immunoglobulin or MYC loci show similar prevalences in hyperdiploid and nonhyperdiploid myeloma tumors. | Gabrea A et al |
| 2449753 | 1988 | CD4 T cells and allograft rejection. | Hao L et al |
| 17495977 | 2007 | A comprehensive genetic and histopathologic analysis identifies two subgroups of B-cell malignancies carrying a t(14;19)(q32;q13) or variant BCL3-translocation. | Martín-Subero JI et al |
| 17654686 | 2007 | Chromosome aberrations in a series of 120 multiple myeloma cases with abnormal karyotypes. | Mohamed AN et al |
| 1774954 | 1991 | Extra translocation +der(1q9p) is a prognostic indicator in myeloproliferative disorders. | Rege-Cambrin G et al |
| 18754027 | 2008 | Pathogenetic insight and prognostic information from standard and molecular cytogenetic studies in the BCR-ABL-negative myeloproliferative neoplasms (MPNs). | Reilly JT et al |
| 9233570 | 1997 | Cytogenetic abnormalities and their prognostic significance in idiopathic myelofibrosis: a study of 106 cases. | Reilly JT et al |
| 3706291 | 1986 | Trisomy 1q in polycythemia vera and its relation to disease transition. | Swolin B et al |
| 9469337 | 1998 | Clinical significance of translocation t(1;19) in childhood acute lymphoblastic leukemia in the context of contemporary therapies: a report from the Children's Cancer Group. | Uckun FM et al |
| 2758394 | 1989 | der(1)t(1;9): a specific chromosome abnormality in polycythemia vera? Cytogenetic and in situ hybridization studies. | den Nijs van Weert JI et al |
Citation
Soad Al Bahar ; Adriana Zamecnikova
der(1;9)(q10;p10)
Atlas Genet Cytogenet Oncol Haematol. 2016-01-01
Online version: http://atlasgeneticsoncology.org/haematological/1647/der(1
