细胞癌基因SEA中新的限制性片段长度多态性。

Hematologic pathology Pub Date : 1992-01-01
P R Koduru, J C Goh, J D Broome
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引用次数: 0

摘要

SEA癌基因的人类同源物最近被定位在染色体带11q13上。在研究SEA基因可能参与慢性髓性白血病的变异型易位t(9;22;11) (q34;q11;q13)的过程中,我们发现了SEA基因中XbaI和SacI限制性内切酶位点的新多态性。研究了100个健康对照样本、94个非霍奇金淋巴瘤样本、25个良性淋巴结病样本和38个慢性骨髓性白血病样本的多态性等位基因频率。XbaI酶切结果为3等位基因多态性,其中a和B为2个频繁等位基因(8.0 kb)和9.2 kb, 1个罕见等位基因(5.8 kb)。SacI消化后,探针鉴定出两个主要基因型。基因型1显示两个杂交DNA片段,分别为6.6 kb和3.5 kb。在基因型II中,3.5 kb片段缺失,取而代之的是两个较小的片段,分别为1.9 kb和1.6 kb。6.6 kb片段(等位基因AA)有3个多态位点,分别产生6.2 kb片段(等位基因BB)、7.4 kb片段(等位基因CC)和7.8 kb片段(等位基因DD)。两种基因型和四种等位基因的频率在所有研究样本中均符合孟德尔比例。此外,本研究显示了对癌基因探针附近DNA的限制性内切图分析对于区分基因的自然多态性和疾病相关重排的重要性。
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Novel restriction fragment length polymorphisms in the cellular oncogene SEA.

The human homologue of the SEA oncogene has been mapped recently to chromosome band 11q13. While studying the possible involvement of this gene in the variant translocation t(9;22;11) (q34;q11;q13) in a case of chronic myelogenous leukemia, we identified novel polymorphisms for XbaI and SacI restriction enzyme sites in the SEA gene. Frequency of the polymorphic alleles was studied in 100 samples from healthy controls, 94 samples from patients with non-Hodgkin's lymphoma, 25 samples from patients with benign lymphadenopathy, and 38 samples from patients with chronic myelogenous leukemia. XbaI digestion showed a three-allele polymorphism with two frequent alleles A (8.0 kb) and B (9.2 kb) and a rare allele (5.8 kb). After SacI digestion the probe identified two primary genotypes. Genotype I showed two hybridizable DNA fragments, one each of 6.6 and 3.5 kb. In genotype II the 3.5 kb fragment was absent, instead two smaller fragments, one each of 1.9 kb and 1.6 kb were present. The 6.6 kb fragment (allele AA) had three polymorphic sites generating 6.2 kb fragment (allele BB), 7.4 kb fragment (allele CC), and 7.8 kb fragment (allele DD). Frequencies of the two genotypes and the four alleles followed Mendelian proportions in all the samples studied. Furthermore, this study shows the importance of restriction map analysis of DNA in the vicinity of the probe of an oncogene to distinguish natural polymorphisms from the disease-related rearrangements in the gene.

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