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一种新型前体B细胞急性淋巴细胞白血病细胞系,其16号染色体(INK4A)/15号染色体(INK4B)肿瘤抑制基因与免疫球蛋白重链基因之间存在染色体易位:转化生长因子β/白细胞介素-7抑制信号传导机制

A novel pre-B acute lymphoblastic leukemia cell line with chromosomal translocation between p16(INK4A)/p15(INK4B) tumor suppressor and immunoglobulin heavy chain genes: TGFbeta/IL-7 inhibitory signaling mechanism.

作者信息

Urashima M, Hoshi Y, Sugimoto Y, Kaihara C, Matsuzaki M, Chauhan D, Ogata A, Teoh G, DeCaprio J A, Anderson K C

机构信息

Dana-Farber Cancer Institute and the Department of Medicine, Harvard Medical School, Boston, MA, USA.

出版信息

Leukemia. 1996 Oct;10(10):1576-83.

PMID:8847892
Abstract

p16 INK4A and/or p15 INK4B genes are frequently deleted in leukemias and other cancers. We have established a novel pre-B acute lymphoblastic leukemia (ALL) cell line (JKB2) with a chromosomal translocation between 9p2l and 14q32, on which p16INK4A/p15INK4B and heavy chain immunoglobulin (Ig) genes, respectively, are located. Homozygous deletions of P16INK4A/p15INK4B genes in JKB2 cells were confirmed by polymerase chain reaction, and their protein products were not detectable by Western blotting. Therefore JKB2 is the first example of an immunoglobulin heavy chain translocation associated with deletions of these genes. In JKB2 cells, cyclin-dependent kinase(CDK)4 and CDK6 formed complexes with cyclin D, due to the lack of p16, triggering phosphorylation of retinoblastoma protein (pRB) and continuous cell proliferation. Moreover, the growth of JKB2 cells was partially inhibited by TGF beta or IL-7, accompanied by decreased CDK4 and CDK6 expression, increased p2l and p27 expression, decreased p27 binding to CDK4/CDK6, and increased binding of p27 to CDK2. In addition, IL-7 both inhibited proliferation and induced differentiation of JKB2 cells. These studies suggest that a t(9;14)(p21;q32) chromosomal translocation can result in deletion of both p16 INK4A and p15 INK4B genes in pre-B ALL, and that the JKB2 cell line therefore provides a model for the study of leukemogenesis related to abnormalities in chromosome 9p2l. Moreover, they suggest that TGF-beta can, suppress JKB2 cell growth in a p15-independent mechanism.

摘要

p16 INK4A和/或p15 INK4B基因在白血病和其他癌症中经常缺失。我们建立了一种新型的前B细胞急性淋巴细胞白血病(ALL)细胞系(JKB2),其9p2l和14q32之间存在染色体易位,p16INK4A/p15INK4B基因和重链免疫球蛋白(Ig)基因分别位于这两个区域。通过聚合酶链反应证实JKB2细胞中P16INK4A/p15INK4B基因存在纯合缺失,蛋白质印迹法检测不到它们的蛋白质产物。因此,JKB2是与这些基因缺失相关的免疫球蛋白重链易位的首个实例。在JKB2细胞中,由于缺乏p16,细胞周期蛋白依赖性激酶(CDK)4和CDK6与细胞周期蛋白D形成复合物,触发视网膜母细胞瘤蛋白(pRB)的磷酸化并导致细胞持续增殖。此外,转化生长因子β(TGF-β)或白细胞介素-7(IL-7)可部分抑制JKB2细胞的生长,同时伴有CDK4和CDK6表达降低、p21和p27表达增加、p27与CDK4/CDK6的结合减少以及p27与CDK2的结合增加。此外,IL-7既能抑制JKB2细胞的增殖,又能诱导其分化。这些研究表明,t(9;14)(p21;q32)染色体易位可导致前B-ALL中p16 INK4A和p15 INK4B基因均缺失,因此JKB2细胞系为研究与9p2l染色体异常相关的白血病发生提供了一个模型。此外,研究表明TGF-β可通过一种不依赖p15的机制抑制JKB2细胞生长。

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