首页> 美国卫生研究院文献>Molecular and Cellular Biology >Disruption of Sept6 a Fusion Partner Gene of MLL Does Not Affect Ontogeny Leukemogenesis Induced by MLL-SEPT6 or Phenotype Induced by the Loss of Sept4
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Disruption of Sept6 a Fusion Partner Gene of MLL Does Not Affect Ontogeny Leukemogenesis Induced by MLL-SEPT6 or Phenotype Induced by the Loss of Sept4

机译:MLL的融合伴侣基因Sept6的破坏不影响个体发育MLL-SEPT6诱导的白血病发生或Sept4缺失诱导的表型。

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摘要

Septins are evolutionarily conserved GTP-binding proteins that can heteropolymerize into filaments. Recent studies have revealed that septins are involved in not only diverse normal cellular processes but also the pathogenesis of various diseases, including cancer. SEPT6 is ubiquitously expressed in tissues and one of the fusion partner genes of MLL in the 11q23 translocations implicated in acute leukemia. However, the roles of this septin in vivo remain elusive. We have developed Sept6-deficient mice that exhibited neither gross abnormalities, changes in cytokinesis, nor spontaneous malignancy. Sept6 deficiency did not cause any quantitative changes in any of the septins evaluated in this study, nor did it cause any additional changes in the Sept4-deficient mice. Even the depletion of Sept11, a close homolog of Sept6, did not affect the Sept6-null cells in vitro, thus implying a high degree of redundancy in the septin system. Furthermore, a loss of Sept6 did not alter the phenotype of myeloproliferative disease induced by MLL-SEPT6, thus suggesting that Sept6 does not function as a tumor suppressor. To our knowledge, this is the first report demonstrating that a disruption of the translocation partner gene of MLL in 11q23 translocation does not contribute to leukemogenesis by the MLL fusion gene.
机译:Septins是进化保守的GTP结合蛋白,可杂聚成丝。最近的研究表明,Septins不仅参与各种正常的细胞过程,而且还参与包括癌症在内的各种疾病的发病机理。 SEPT6在组织中普遍表达,并且在涉及急性白血病的11q23易位中MLL的融合伴侣基因之一。但是,这种Septin在体内的作用仍然难以捉摸。我们已经开发了Sept6缺陷小鼠,既没有表现出明显的异常,胞质分裂的变化,也没有表现出自发的恶性肿瘤。 Sept6缺乏症不会在这项研究中评估的任何Septin中引起任何定量变化,也不会在Sept4缺陷小鼠中引起任何其他变化。即使是Sept11的耗尽,Sept6的近亲同源物,在体外也不会影响Sept6-null细胞,因此暗示septin系统具有高度的冗余性。此外,Sept6的缺失并没有改变由MLL-SEPT6诱导的骨髓增生性疾病的表型,因此表明Sept6不能起到抑癌作用。据我们所知,这是第一份证明在11q23易位中MLL易位伴侣基因的破坏不会通过MLL融合基因促成白血病的报告。

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