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骨髓增生异常综合征伴t(5;12)(q13;p13)累及ETV6基因的克隆进化过程中12号染色体短臂的间质缺失。

Interstitial deletion of the short arm of chromosome 12 during clonal evolution in myelodysplastic syndrome with t(5;12)(q13;p13) involving the ETV6 gene.

作者信息

Yamamoto K, Nagata K, Yagasaki F, Tsurukubo Y, Tamura A, Taniwaki M, Hamaguchi H

机构信息

Department of Hematology, Musashino Red Cross Hospital, Musashino, Tokyo, Japan.

出版信息

Cancer Genet Cytogenet. 2000 Jun;119(2):113-7. doi: 10.1016/s0165-4608(99)00227-7.

DOI:10.1016/s0165-4608(99)00227-7
PMID:10867145
Abstract

We report here a 65-year-old man with a myelodysplastic syndrome (MDS), refractory anemia with excess of blasts. He had received chemotherapy with tegafur for renal carcinoma. Chromosome analysis of bone marrow cells revealed complex karyotypes; del(5)(q13) was observed in all 20 metaphase spreads, and two related aberrations, add(12)(p11) and add(12)(p13), were detected in 13 and 7 cells, respectively. Fluorescence in situ hybridization (FISH) analysis with chromosome-specific DNAs revealed that these alterations originated from a reciprocal translocation (5;12)(q13;p13). Therefore, del(5)(q13), add(12)(p11), and add(12)(p13) were revised as der(5)t(5;12)(q13;p13), der(12)del(12)(p11p13)t(5;12)(q13;p13), and der(12)t(5;12)(q13;p13), respectively. Fluorescence in situ hybridization with a series of cosmid probes spanning the ETV6 gene showed that the 12p13 breakpoint on the der(12)t(5;12)(q13;p13) was located in intron 1, but the exon 1 signal was deleted. Our results suggest that a fusion gene was generated between the 5'-end of an unidentified partner at 5q13 and the 3'-end of ETV6 by t(5;12)(q13;p13), and that the interstitial deletion (12)(p11p13) occurred following t(5;12) during clonal evolution. del(12)(p11p13), including the rearranged ETV6 gene, may be implicated in the progression of MDS.

摘要

我们在此报告一名65岁患有骨髓增生异常综合征(MDS)、伴过多原始细胞的难治性贫血的男性患者。他曾接受替加氟治疗肾癌。对骨髓细胞进行染色体分析显示为复杂核型;在所有20个中期分裂相中均观察到del(5)(q13),在13个和7个细胞中分别检测到两个相关的畸变,即add(12)(p11)和add(12)(p13)。用染色体特异性DNA进行荧光原位杂交(FISH)分析表明,这些改变源自相互易位(5;12)(q13;p13)。因此,del(5)(q13)、add(12)(p11)和add(12)(p13)分别被修订为der(5)t(5;12)(q13;p13)、der(12)del(12)(p11p13)t(5;12)(q13;p13)和der(12)t(5;12)(q13;p13)。用一系列跨越ETV6基因的黏粒探针进行荧光原位杂交表明,der(12)t(5;12)(q13;p13)上的12p13断点位于第1内含子,但外显子1信号缺失。我们的结果提示,t(5;12)(q13;p13)导致在5q13处一个未识别的伙伴基因的5'端与ETV6的3'端之间产生了一个融合基因,并且在克隆进化过程中,t(5;12)之后发生了间质缺失(12)(p11p13)。包括重排的ETV6基因在内的del(12)(p11p13)可能与MDS的进展有关。

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