Distribution of ABL and BCR genes in cell nuclei of normal and irradiated lymphocytes

被引:88
|
作者
Kozubek, S
Lukasova, E
Ryznar, L
Kozubek, M
Liskova, A
Govorun, RD
Krasavin, EA
Horneck, G
机构
[1] MASARYK UNIV, FAC LNFORMAT, BRNO, CZECH REPUBLIC
[2] JOINT INST NUCL PHYS, MOSCOW, RUSSIA
[3] DEUTSCH FORSCH ANSTALT LUFT & RAUMFAHRTMED, INST LUFT & RAUMFAHRTMED, COLOGNE, GERMANY
关键词
D O I
10.1182/blood.V89.12.4537
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Using dual-color fluorescence in situ hybridization (FISH) combined with two-dimensional (2D) image analysis, the locations of ABL and BCR genes in cell nuclei were studied, The center of nucleus-to-gene and mutual distances of ABL and BCR genes in interphase nuclei of nonstimulated and stimulated lymphocytes as well as in lymphocytes stimulated after irradiation were determined, We found that, after stimulation, the ABL and BCR genes move towards the membrane, their mutual distances increase, and the shortest distance between heterologous ABL and BCR genes increases. The distribution of the shortest distances between ABL and BCR genes in the G(0) phase of lymphocytes corresponds to the theoretical distribution calculated by the Monte-Carlo simulation. Interestingly, the shortest ABL-BCR distances in G(1) and S(G(2)) nuclei are greater in experiment as compared with theory. This result suggests the existence of a certain regularity in the gene arrangement in the G(1) and S(G(2)) nuclei that keeps ABL and BCR genes at longer than random distances. On the other hand, in about 2% to 8% of lymphocytes, the ABL and BCR genes are very close to each other (the distance is less than similar to 0.2 to 0.3 mu m). For comparison, we studied another pair of genes, c-MYC and IgH, that are critical for the induction of t(8;14) translocation that occurs in the Burkitt's lymphoma, We found that in about 8% of lymphocytes, c-MYC and IgH are very close to each other. Similar results were obtained for human fibroblasts. gamma-Radiation leads to substantial changes in the chromatin structure of stimulated lymphocytes: ABL and BCR genes are shifted to the nuclear center, and mutual ABL-BCR distances become much shorter in the G(1) and S(G(2)) nuclei, Therefore, we hypothesize that the changes of chromatin structure in the irradiated lymphocytes might increase the probability of a translocation during G(1) and S(G(2)) stages of the cell cycle. The fact that the genes involved in the t(8;14) translocation are also located close together in a certain fraction of cells substantiates the hypothesis that physical distance plays an important role in the processes leading to the translocations that are respon sible for oncogenic transformation of cells. (C) 1997 by The American Society of Hematology.
引用
收藏
页码:4537 / 4545
页数:9
相关论文
共 50 条
  • [41] BCR/ABL genes and leukemic phenotype: from molecular mechanisms to clinical correlations
    Fabrizio Pane
    Mariano Intrieri
    Concetta Quintarelli
    Barbara Izzo
    Giada Casadei Muccioli
    Francesco Salvatore
    Oncogene, 2002, 21 : 8652 - 8667
  • [42] BCR/ABL genes and leukemic phenotype: from molecular mechanisms to clinical correlations
    Pane, F
    Intrieri, M
    Quintarelli, C
    Izzo, B
    Muccioli, GC
    Salvatore, F
    ONCOGENE, 2002, 21 (56) : 8652 - 8667
  • [43] BCR-ABL, ABL-BCR, BCR, AND ABL GENES ARE ALL EXPRESSED IN INDIVIDUAL GRANULOCYTE-MACROPHAGE COLONY-FORMING UNIT COLONIES DERIVED FROM BLOOD OF PATIENTS WITH CHRONIC MYELOID-LEUKEMIA
    DIAMOND, J
    GOLDMAN, JM
    MELO, JV
    BLOOD, 1995, 85 (08) : 2171 - 2175
  • [44] Overproduction of BCR-ABL induces apoptosis in STI571-resistant BaF/BCR-ABL cell lines.
    Desplat, V
    Belloc, F
    Lagarde, V
    Melo, JV
    Reiffers, J
    Mahon, FX
    BLOOD, 2001, 98 (11) : 148A - 148A
  • [45] Anomalies of interphase nuclei and stable aberrations in lymphocytes of irradiated patients
    Fedortseva, R
    Kravtsov, V
    Jartseva, N
    Starkova, E
    Nikiforov, A
    EUROPEAN JOURNAL OF HUMAN GENETICS, 1998, 6 : 79 - 79
  • [46] Bcr expression inhibits tumor formation induced by the Bcr-Abl oncoprotein but not cell proliferation
    Perrazona, Bastianella
    Lin, Hui
    Sun, Tong
    Wang, Yan
    Ling, Xiaoyang
    Arlinghaus, Ralph B.
    CANCER RESEARCH, 2006, 66 (08)
  • [47] BCR-ABL induces normal erythropoiesis in the absence of JAK2.
    Ghaffari, S
    Kitidis, C
    Neubauer, H
    Pfeffer, K
    Lodish, H
    BLOOD, 2000, 96 (11) : 538A - 538A
  • [48] Roles of Bim in apoptosis of normal and Bcr-Abl-expressing hematopoietic progenitors
    Kuribara, R
    Honda, H
    Matsui, H
    Shinjyo, T
    Inukai, T
    Sugita, K
    Nakazawa, S
    Hirai, H
    Ozawa, K
    Inaba, T
    MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (14) : 6172 - 6183
  • [49] Short-term intense Bcr–Abl kinase inhibition with nilotinib is adequate to trigger cell death in BCR-ABL+ cells
    D K Hiwase
    D L White
    V A Saunders
    S Kumar
    J V Melo
    T P Hughes
    Leukemia, 2009, 23 : 1205 - 1206
  • [50] Normal & ABL1 Is a Tumor Suppressor and Therapeutic Target In BCR-ABL1-positive Leukemias
    Dasgupta, Yashodhara
    Koptyra, Mateusz
    Nieborowska-Skorska, Margaret
    Gillespie, Elisabeth Bolton
    Stoklosa, Tomasz
    Hoser, Grazyna
    Wasik, Mariusz
    Muschen, Markus
    Richardson, Christine
    Skorski, Tomasz
    BLOOD, 2013, 122 (21)