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不同谱系的急性白血病具有相似的MLL基因融合,这些融合是由染色体易位产生的,编码相关的嵌合蛋白。

Acute leukemias of different lineages have similar MLL gene fusions encoding related chimeric proteins resulting from chromosomal translocation.

作者信息

Corral J, Forster A, Thompson S, Lampert F, Kaneko Y, Slater R, Kroes W G, van der Schoot C E, Ludwig W D, Karpas A

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1993 Sep 15;90(18):8538-42. doi: 10.1073/pnas.90.18.8538.

Abstract

The MLL gene, on human chromosome 11q23, undergoes chromosomal translocation in acute leukemias, resulting in gene fusion with AF4 (chromosome 4) and ENL (chromosome 19). We report here translocation of MLL with nine different chromosomes and two paracentric chromosome 11 deletions in early B cell, B- or T-cell lineage, or nonlymphocytic acute leukemias. The mRNA translocation junction from 22 t(4;11) patients, including six adult leukemias, and nine t(11;19) tumors reveals a remarkable conservation of breakpoints within MLL, AF4, or ENL genes, irrespective of tumor phenotype. Typically, the breakpoints are upstream of the zinc-finger region of MLL, and deletion of this region can accompany translocation, supporting the der(11) chromosome as the important component in leukemogenesis. Partial sequence of a fusion between MLL and the AFX1 gene from chromosome X shows the latter to be rich in Ser/Pro codons, like the ENL mRNA. These data suggest that the heterogeneous 11q23 abnormalities might cause attachment of Ser/Pro-rich segments to the NH2 terminus of MLL, lacking the zinc-finger region, and that translocations occur in early hematopoietic cells, before commitment to distinct lineages.

摘要

位于人类11号染色体11q23的MLL基因在急性白血病中会发生染色体易位,导致与AF4(4号染色体)和ENL(19号染色体)发生基因融合。我们在此报告了MLL与九条不同染色体的易位以及早期B细胞、B或T细胞系或非淋巴细胞性急性白血病中两条11号染色体臂内倒位。来自22例t(4;11)患者(包括6例成人白血病)和9例t(11;19)肿瘤的mRNA易位连接点显示,无论肿瘤表型如何,MLL、AF4或ENL基因内的断点都有显著的保守性。通常,断点位于MLL锌指区域的上游,该区域的缺失可能伴随易位,这支持了der(11)染色体是白血病发生的重要组成部分。来自X染色体的MLL与AFX1基因融合的部分序列显示,后者富含丝氨酸/脯氨酸密码子,与ENL mRNA相似。这些数据表明,异质性的11q23异常可能导致富含丝氨酸/脯氨酸的片段连接到缺乏锌指区域的MLL的NH2末端,并且易位发生在早期造血细胞中,早于细胞向不同谱系的分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a846/47392/1d650150e099/pnas01475-0244-a.jpg

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