急性淋巴细胞白血病患者染色体9p21异常及肿瘤抑制基因p15(INK4b)/p16(INK4a)/p14(ARF)缺失的发生率

S Faderl, Z Estrov, H M Kantarjian, D Thomas, J Cortes, T Manshouri, C C Chan, K J Hays, S Pierce, M Albitar
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摘要

细胞遗传学变化对新生急性淋巴细胞白血病(ALL)患者的预后具有关键意义。然而,在某些情况下,白血病母细胞可以在亚显微镜水平上携带基因病变,而常规细胞遗传学研究没有相应异常的证据。这可能导致无法识别染色体异常和不适当的评估有关的治疗分配。为了研究9号染色体短臂缺失与9p21号染色体上肿瘤抑制基因p15/p16/p14缺失检测的差异,我们对92例ALL患者的骨髓样本进行了细胞遗传学分析和Southern blot分析。在41例(45%)患者中,我们发现p15/p16/p14缺失,其中27例为纯合子,14例为半合子。细胞遗传学分析显示,41例患者中只有5例(12%)9号染色体短臂以9p-或del(9p21-22)的形式出现异常。通过Southern blot检测,51例无基因缺失的患者中只有2例显示9p-异常,这仅在细胞的一个亚群中发现。我们证明9p21染色体上p15/p16/p14基因的缺失比细胞遗传学分析显示的更频繁。除了细胞遗传学研究外,分子技术对于检测9号染色体短臂上其他未被识别的遗传病变是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The incidence of chromosome 9p21 abnormalities and deletions of tumor suppressor genes p15(INK4b)/p16(INK4a)/p14(ARF) in patients with acute lymphoblastic leukemia.

Cytogenetic changes are of pivotal prognostic significance in patients with de novo acute lymphoblastic leukemia (ALL). However, in some cases leukemic blasts can harbor gene lesions on a submicroscopic level without evidence of a corresponding abnormality by conventional cytogenetic studies. This can result in failure to recognize chromosomal abnormalities and inappropriate evaluation with respect to therapy assignments. To study the discrepancy in the detection of deletions of the short arm of chromosome 9 and deletions of tumor suppressor genes p15/p16/p14 on chromosome 9p21, we analyzed bone marrow samples from 92 patients with ALL both by cytogenetic analysis and by Southern blot. In 41 patients (45%), we found deletions of p15/p16/p14, which were homozygous in 27 and hemizygous in 14. Cytogenetic analysis demonstrated abnormalities of the short arm of chromosome 9 in the form of 9p- or del(9p21-22) in only 5 of the 41 patients (12%). Only 2 of 51 patients without gene deletions as detected by Southern blot revealed a 9p- abnormality, which was found only in a subpopulation of the cells. We demonstrate that deletions of the p15/p16/p14 genes on chromosome 9p21 are more frequent than indicated by cytogenetic analysis. Molecular techniques in addition to cytogenetic studies are necessary to detect otherwise-unrecognized genetic lesions of the short arm of chromosome 9.

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