首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Meis1 and pKnox1 bind DNA cooperatively with Pbx1 utilizing an interaction surface disrupted in oncoprotein E2a-Pbx1
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Meis1 and pKnox1 bind DNA cooperatively with Pbx1 utilizing an interaction surface disrupted in oncoprotein E2a-Pbx1

机译:Meis1和pKnox1利用在癌蛋白E2a-Pbx1中相互作用的相互作用表面与Pbx1协同结合DNA

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摘要

E2a-Pbx1 is a chimeric transcription factor oncoprotein produced by the t(1;19) translocation in human pre-B cell leukemia. Class I Hox proteins bind DNA cooperatively with both Pbx proteins and oncoprotein E2a-Pbx1, suggesting that leukemogenesis by E2a-Pbx1 and Hox proteins may alter transcription of cellular genes regulated by Pbx–Hox motifs. Likewise, in murine myeloid leukemia, transcriptional coactivation of Meis1 with HoxA7/A9 suggests that Meis1–HoxA7/9 heterodimers may evoke aberrant gene transcription. Here, we demonstrate that both Meis1 and its relative, pKnox1, dimerize with Pbx1 on the same TGATTGAC motif selected by dimers of Pbx proteins and unidentified partner(s) in nuclear extracts, including those from t(1;19) pre-B cells. Outside their homeodomains, Meis1 and pKnox1 were highly conserved only in two motifs required for cooperativity with Pbx1. Like the unidentified endogenous partner(s), both Meis1 and pKnox1 failed to dimerize significantly with E2a-Pbx1. The Meis1/pKnox1-interaction domain in Pbx1 resided predominantly in a conserved N-terminal Pbx domain deleted in E2a-Pbx1. Thus, the leukemic potential of E2a-Pbx1 may require abrogation of its interaction with members of the Meis and pKnox families of transcription factors, permitting selective targeting of genes regulated by Pbx–Hox complexes. In addition, because most motifs bound by Pbx–Meis1/pKnox1 were not bound by Pbx1–Hox complexes, the leukemic potential of Meis1 in myeloid leukemias may involve shifting Pbx proteins from promoters containing Pbx–Hox motifs to those containing Pbx–Meis motifs.
机译:E2a-Pbx1是由人类前B细胞白血病中的t(1; 19)易位产生的嵌合转录因子癌蛋白。 I类Hox蛋白与Pbx蛋白和癌蛋白E2a-Pbx1协同结合DNA,表明E2a-Pbx1和Hox蛋白的白血病发生可能会改变受Pbx-Hox图案调控的细胞基因的转录。同样,在鼠骨髓性白血病中,Meis1与HoxA7 / A9的转录共激活表明Meis1-HoxA7 / 9异二聚体可能引起异常的基因转录。在这里,我们证明了Meis1及其相对的pKnox1在相同的TGATTGAC基序上与Pbx1二聚化,该基序由Pbx蛋白的二聚体和核提取物中的身份不明的伙伴选择,包括来自t(1; 19)pre-B细胞的伙伴。在其同源结构域之外,Meis1和pKnox1仅在与Pbx1协同作用所需的两个基序中高度保守。像身份不明的内源性伴侣一样,Meis1和pKnox1都无法通过E2a-Pbx1显着二聚。 Pbx1中的Meis1 / pKnox1相互作用域主要位于E2a-Pbx1中缺失的保守N末端Pbx域中。因此,E2a-Pbx1的潜在白血病可能需要废除其与Meis和pKnox转录因子家族成员的相互作用,从而可以选择性靶向由Pbx-Hox复合物调控的基因。另外,由于大多数与Pbx–Meis1 / pKnox1结合的基序不受Pbx1-Hox复合物的结合,因此Meis1在髓样白血病中的白血病潜能可能涉及将Pbx蛋白从含有Pbx–Hox基序的启动子转移到含有Pbx–Meis基序的启动子。

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