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Mad1与c-Myc在活化的正常B淋巴细胞中的共诱导。

Co-induction of Mad1 and c-Myc in activated normal B lymphocytes.

作者信息

Ertesvåg A, Blomhoff H K, Beiske K, Naderi S

机构信息

Department of Immunology, Institute of Cancer Research, The Norwegian Radium Hospital, N-0310 Oslo, Norway.

出版信息

Scand J Immunol. 2000 Jun;51(6):565-70. doi: 10.1046/j.1365-3083.2000.00726.x.

DOI:10.1046/j.1365-3083.2000.00726.x
PMID:10849366
Abstract

The purpose of the present study was to examine the expression of the Myc network proteins c-Myc, Mad1 and Max in normal cells under different growth and differentiation conditions. A dominant view has been that Mad1 as a c-Myc antagonist plays a role in growth inhibition linked to differentiation. Of particular interest to us was therefore to study the regulation of Mad1 in cells undergoing differentiation in the absence of growth cessation. To do so we utilized normal B lymphocytes isolated from peripheral blood. The cells were induced to concomitant proliferation and differentiation by stimulation with a combination of anti-IgM antibodies (anti-mu) and the phorbol ester TPA. Thus, by 72 h of stimulation the percentage of plasmablasts increased from 3 to 17%, and the percentage of lymphocytes decreased from 89 to 27%. The most intriguing observation we made using this cell system was a pronounced coinduction of Mad1 and c-Myc. The levels of c-Myc and Mad1 mRNAs and proteins increased within 3 h of anti-mu stimulation, and the levels were further enhanced by TPA. Furthermore, the expressions of both c-Myc and Mad1 were reduced by forskolin, which also inhibited the anti-mu + TPA driven growth and differentiation of the B lymphocytes. The level of Max remained virtually unchanged. Taken together, our results indicate that a high level of Mad1 in normal human B cells is linked to differentiation and not to growth inhibition. Furthermore, the results demonstrate that Mad1 and c-Myc are not necessarily expressed in a reciprocal manner, which underlines an independent role of Mad1 unrelated to its function as a c-Myc antagonist.

摘要

本研究的目的是检测Myc网络蛋白c-Myc、Mad1和Max在不同生长和分化条件下正常细胞中的表达。一种主流观点认为,Mad1作为c-Myc的拮抗剂,在与分化相关的生长抑制中发挥作用。因此,我们特别感兴趣的是研究在没有生长停滞的情况下,正在分化的细胞中Mad1的调控。为此,我们利用从外周血中分离出的正常B淋巴细胞。通过用抗IgM抗体(抗μ)和佛波酯TPA的组合进行刺激,诱导这些细胞同时进行增殖和分化。因此,到刺激72小时时,成浆细胞的百分比从3%增加到17%,淋巴细胞的百分比从89%下降到27%。我们使用这个细胞系统所做的最有趣的观察是Mad1和c-Myc的明显共诱导。抗μ刺激后3小时内,c-Myc和Mad1的mRNA及蛋白水平升高,TPA进一步增强了这些水平。此外,福斯高林降低了c-Myc和Mad1的表达,福斯高林也抑制了抗μ + TPA驱动的B淋巴细胞的生长和分化。Max的水平几乎保持不变。综上所述,我们的结果表明,正常人B细胞中高水平的Mad1与分化有关,而与生长抑制无关。此外,结果表明Mad1和c-Myc不一定以相互对应的方式表达,这突出了Mad1与其作为c-Myc拮抗剂的功能无关的独立作用。

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