首页> 外文期刊>Blood: The Journal of the American Society of Hematology >TBLR1 fuses to retinoid acid receptor α in a variant t(3;17)(q26;q21) translocation of acute promyelocytic leukemia
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TBLR1 fuses to retinoid acid receptor α in a variant t(3;17)(q26;q21) translocation of acute promyelocytic leukemia

机译:TBLR1在变体T(3; 17)(Q26; Q21)易腐蚀性突出细胞细胞白血病的易腐蚀剂中熔化到类视黄醇受体α

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摘要

The majority of acute promyelocytic leukemia (APL) cases are characterized by the PML-RARα fusion gene. Although the PML-RARa fusion gene can be detected in >98% of APL cases, RARα is also found to be fused with other partner genes, which are also related to all-trans retinoic acid (ATRA)-dependent transcriptional activity and cell differentiation. In this study, we identified a novel RARα fusion gene, TBLR1-RARα (GenBank KF589333), in a rare case of APL with a t(3;17)(q26;q21),t(7;17)(q11.2;q21) complex chromosomal rearrangement. To our knowledge, TBLR1-RARα is the 10th RARα chimeric gene that has been reported up to now. TBLR1-RARα contained the B-F domains of RARα and exhibited a distinct subcellular localization. It could form homodimers and also heterodimers with retinoid X receptor α. As a result, TBLR1-RARα exhibited diminished transcriptional activity by recruitment of more transcriptional corepressors compared with RARα. In the presence of pharmacologic doses of ATRA, TBLR1-RARα could be degraded, and its homo dimerization was abrogated. Moreover, when treated with ATRA, TBLR1-RARα could mediate the dissociation and degradation of transcriptional corepressors, consequent transactivation of RARα target genes, and cell differentiation induction in a dose- and time-dependent manner.
机译:大多数急性早幼粒细胞白血病(APL)病例的特征在于pML-RARα融合基因。虽然可以检测到PML-RARA融合基因> 98%的APL病例,但也发现RARα与其他合作基因融合,其与全反式视黄酸(ATRA)依赖性转录活性和细胞分化有关。在这项研究中,我们鉴定了一种新的RARα融合基因TBLR1-RARα(GenBank KF589333),在罕见的APL含有AT(3; 17)(Q26; Q21),T(7; 17)(Q11.2; Q21)复杂的染色体重排。据我们所知,TBLR1-RARα是现在据报道的第10次RARα嵌合基因。 TBLR1-RARα含有RARα的B-F结构域,并表现出不同的亚细胞定位。它可以形成同源体,也可以形成具有类视黄醇X受体α的异二聚体。结果,通过募集与RARα相比,通过募集更多转录的核心压力,TBLR1-RARα表现出转录活性减少。在药物剂量的ATRA的存在下,TBLR1-RARα可以降解,并且其同性化二聚化耗尽。此外,当用ATRA处理时,TBLR1-RARα可以介导转录核心压缩机的解离和降解,随后的RARα靶基因的转发,以及以剂量和时间依赖性的方式进行细胞分化诱导。

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    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

    Department of Clinical Hematology Chinese Academy of Medical Sciences Peking Union Medical;

    Department of Hematopathology Chinese Academy of Medical Sciences Peking Union Medical College;

    Department of Hematopathology Chinese Academy of Medical Sciences Peking Union Medical College;

    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

    Department of Clinical Hematology Chinese Academy of Medical Sciences Peking Union Medical;

    Department of Clinical Hematology Weifang People's Hospital Shandong China;

    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

    State Key Laboratory of Experimental Hematology Chinese Academy of Medical Sciences Peking Union;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病;
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