首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Antisense oligodeoxynucleotides to the blk tyrosine kinase prevent anti-mu-chain-mediated growth inhibition and apoptosis in a B-cell lymphoma.
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Antisense oligodeoxynucleotides to the blk tyrosine kinase prevent anti-mu-chain-mediated growth inhibition and apoptosis in a B-cell lymphoma.

机译:blk酪氨酸激酶的反义寡聚脱氧核苷酸可防止B细胞淋巴瘤中抗mu链介导的生长抑制和细胞凋亡。

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摘要

Crosslinking of membrane immunoglobulin (mIg) receptors by anti-Ig causes growth inhibition and subsequent cell death due to apoptosis in a murine B-cell lymphoma model. The earliest signal transduction via mIg has recently been shown to be dependent on the activation of one or more protein tyrosine kinases (PTKs). In this study, we utilized the CH31 lymphoma, which is extremely sensitive to growth inhibition by anti-Ig, to examine the role of PTKs in cell cycle arrest. This cell line expresses multiple PTKs, whose activities are stimulated by crosslinking mIg. To determine whether PTK activity is essential for the inhibition of cell growth, we exposed CH31 cells to antisense oligodeoxynucleotides for the blk PTK prior to the growth inhibition assay. We found that exposure of CH31 cells to blk antisense effectively prevented anti-mu-chain-mediated growth inhibition and subsequent apoptosis. Corresponding blk sense or antisense oligonucleotides for other PTKs had no protective effect against anti-mu. Moreover, antisense blk oligonucleotides had no effect on transforming growth factor beta-mediated growth arrest and apoptosis. Further experiments showed significantly reduced endogenous p55blk in blk antisense-treated cells. In addition, anti-mu stimulation of antisense-treated cells failed to induce any detectable increase in kinase activity of p55blk, a result suggesting the uncoupling of blk proteins from normal signal pathways that are essential for growth inhibition. These results implicate a role of blk kinase in anti-mu-mediated pathway to cell cycle arrest.
机译:膜免疫球蛋白(mIg)受体通过抗Ig交联会导致生长抑制和随后的死亡,这是由于鼠B细胞淋巴瘤模型中的细胞凋亡引起的。最近已经证明,通过mIg进行最早的信号转导取决于一种或多种蛋白酪氨酸激酶(PTK)的激活。在这项研究中,我们利用了CH31淋巴瘤,它对抗Ig的生长抑制极为敏感,以检查PTK在细胞周期停滞中的作用。该细胞系表达多种PTK,其活性通过交联mIg刺激。为了确定PTK活性对于抑制细胞生长是否必不可少,我们在生长抑制试验之前将CH31细胞暴露于blk PTK的反义寡聚脱氧核苷酸。我们发现CH31细胞暴露于blk反义有效地防止了抗mu链介导的生长抑制和随后的细胞凋亡。其他PTK的相应的blk有义或反义寡核苷酸对抗mu没有保护作用。此外,反义blk寡核苷酸对转化生长因子β介导的生长停滞和凋亡没有影响。进一步的实验表明,经blk反义处理的细胞中内源性p55blk明显减少。此外,对反义处理细胞的抗mu刺激未能诱导p55blk激酶活性的任何可检测到的增加,结果表明blk蛋白与正常信号通路的解偶联对生长抑制至关重要。这些结果暗示了blk激酶在抗mu介导的细胞周期阻滞途径中的作用。

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