首页> 外文OA文献 >Panhandle and reverse-panhandle PCR enable cloning of der(11) and der(other) genomic breakpoint junctions of MLL translocations and identify complex translocation of MLL, AF-4, and CDK6
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Panhandle and reverse-panhandle PCR enable cloning of der(11) and der(other) genomic breakpoint junctions of MLL translocations and identify complex translocation of MLL, AF-4, and CDK6

机译:Panhandle和反向Panhandle PCR能够克隆MLL易位的der(11)和der(other)基因断点连接,并鉴定MLL,AF-4和CDK6的复杂易位

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摘要

We used panhandle PCR to clone the der(11) genomic breakpoint junction in three leukemias with t(4;11) and devised reverse-panhandle PCR to clone the breakpoint junction of the other derivative chromosome. This work contributes two elements to knowledge on MLL translocations. First is reverse-panhandle PCR for cloning breakpoint junctions of the other derivative chromosomes, sequences of which are germane to understanding the MLL translocation process. The technique revealed duplicated sequences in one case of infant acute lymphoblastic leukemia (ALL) and small deletions in a case of treatment-related ALL. The second element is discovery of a three-way rearrangement of MLL, AF-4, and CDK6 in another case of infant ALL. Cytogenetic analysis was unsuccessful at diagnosis, but suggested t(4;11) and del(7)(q21q31) at relapse. Panhandle PCR analysis of the diagnostic marrow identified a breakpoint junction of MLL intron 8 and AF-4 intron 3. Reverse-panhandle PCR identified a breakpoint junction of CDK6 from band 7q21-q22 and MLL intron 9. CDK6 encodes a critical cell cycle regulator and is the first gene of this type disrupted by MLL translocation. Cdk6 is overexpressed or disrupted by translocation in many cancers. The in-frame CDK6-MLL transcript is provocative with respect to a potential contribution of the predicted Cdk6-MLL fusion protein in the genesis of the ALL, which also contains an in-frame MLL-AF4 transcript. The sequences in these three cases show additional MLL genomic breakpoint heterogeneity. Each breakpoint junction suggests nonhomologous end joining and is consistent with DNA damage and repair. CDK6-MLL is a new fusion of both genes.
机译:我们使用panhandle PCR克隆t(4; 11)在三个白血病中的der(11)基因组断裂点连接,并设计了反向panhandle PCR克隆另一个衍生染色体的断裂点连接。这项工作为有关MLL易位的知识贡献了两个要素。首先是反向panhandle PCR,用于克隆其他衍生染色体的断点连接,其序列与理解MLL易位过程密切相关。该技术揭示了一例婴儿急性淋巴细胞白血病(ALL)的重复序列,以及一例与治疗有关的ALL的小缺失。第二个要素是发现另一例婴儿ALL时MLL,AF-4和CDK6的三向重排。细胞遗传学分析在诊断时不成功,但建议在复发时使用t(4; 11)和del(7)(q21q31)。对诊断骨髓的Panhandle PCR分析确定了MLL内含子8和AF-4内含子3的一个断裂点连接。反向Panhandle PCR鉴定了7q21-q22带和MLL内含子9的CDK6的一个断裂点连接。CDK6编码一个关键的细胞周期调节子是该类型的第一个被MLL易位破坏的基因。在许多癌症中,Cdk6被易位过度表达或破坏。关于预测的Cdk6-MLL融合蛋白在ALL的起源中的潜在贡献,框内CDK6-MLL转录物是挑衅性的,ALL也包含框内MLL-AF4转录物。这三种情况下的序列显示出额外的MLL基因组断点异质性。每个断点连接暗示非同源末端连接,并且与DNA损伤和修复一致。 CDK6-MLL是两个基因的新融合体。

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