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Nm23-H1 can induce cell cycle arrest and apoptosis in B cells.

机译:Nm23-H1可以诱导B细胞的细胞周期停滞和凋亡。

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Nm23-H1 is a well-known tumor metastasis suppressor, which functions as a nucleoside-diphosphate kinase converting nucleoside diphosphates to nucleoside triphosphates with an expense of ATP. It regulates a variety of cellular activities, including proliferation, development, migration and differentiation known to be modulated by a series of complex signaling pathway. Few studies have addressed the mechanistic action of Nm23-H1 in the context of these cellular processes. To determine the downstream pathways modulated by Nm23-H1, we expressed Nm23-H1 in a Burkitt lymphoma derived B-cell line BJAB and performed pathway specific microarray analysis. The genes with significant changes in expression patterns were clustered in groups which are responsible for regulating cell cycle, p53 activities and apoptosis. We found a general reduction of cell cycle regulatory proteins including cyclins and cyclin dependent kinase inhibitors (anti proliferation), and upregulation of apoptotic genes which included caspase 3, 9 and Bcl-x. Nm23-H1 was also found to upregulate p53 and downregulate p21 expression. A number of these genes were validated by real time PCR and results from promoter assays indicated that Nm23-H1 expression downregulated cyclin D1 in a dose responsive manner. Further, we show that Nm23-H1 forms a complex with the cellular transcription factor AP1 to modulate cyclin D1 expression levels. BJAB cells expressing Nm23-H1 showed reduced proliferation rate and were susceptible to increased apoptosis which may in part be due to a direct interaction between Nm23-H1 and p53. These results suggest that Nm23-H1 may have a role in the regulation of cell cycle and apoptosis in human B-cells.
机译:Nm23-H1是一种众所周知的肿瘤转移抑制剂,它起核苷二磷酸激酶的作用,而将核苷二磷酸转化为核苷三磷酸,而ATP却不起作用。它调节多种细胞活动,包括已知由一系列复杂的信号传导途径调节的增殖,发育,迁移和分化。在这些细胞过程中,很少有研究探讨Nm23-H1的机制作用。为了确定由Nm23-H1调节的下游途径,我们在Burkitt淋巴瘤衍生的B细胞系BJAB中表达了Nm23-H1,并进行了途径特异性微阵列分析。表达模式发生重大变化的基因聚集在各个组中,这些组负责调节细胞周期,p53活性和细胞凋亡。我们发现细胞周期调节蛋白的普遍减少,包括细胞周期蛋白和细胞周期蛋白依赖性激酶抑制剂(抗增殖),以及凋亡基因的上调,包括caspase 3、9和Bcl-x。还发现Nm23-H1上调p53和下调p21表达。这些基因中的许多已通过实时PCR验证,并且启动子测定的结果表明Nm23-H1表达以剂量反应方式下调了细胞周期蛋白D1。此外,我们显示Nm23-H1与细胞转录因子AP1形成复合物,以调节细胞周期蛋白D1的表达水平。表达Nm23-H1的BJAB细胞显示出较低的增殖速率,并易于增加凋亡,这可能部分是由于Nm23-H1与p53之间的直接相互作用所致。这些结果表明Nm23-H1可能在人类B细胞的细胞周期和细胞凋亡的调节中发挥作用。

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