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Helios可能通过对蛋白激酶C的转录调控参与控制未成熟B细胞功能。

Possible involvement of Helios in controlling the immature B cell functions via transcriptional regulation of protein kinase Cs.

作者信息

Kikuchi Hidehiko, Nakayama Masami, Takami Yasunari, Kuribayashi Futoshi, Nakayama Tatsuo

机构信息

Section of Biochemistry and Molecular Biology, Department of Medical Sciences, Miyazaki Medical College, University of Miyazaki, 5200 Kihara, Kiyotake, Miyazaki 889-1692, Japan.

Department of Biochemistry, Kawasaki Medical School, Kurashiki, Okayama 701-0192, Japan.

出版信息

Results Immunol. 2011 Nov 12;1(1):88-94. doi: 10.1016/j.rinim.2011.11.002. eCollection 2011.

Abstract

The transcription factor Ikaros family consists of five zinc-finger proteins: Ikaros, Aiolos, Helios, Eos and Pegasus; these proteins except Pegasus are essential for development and differentiation of lymphocytes. However, in B lymphocytes, the physiological role of Helios remains to be elucidated yet, because its expression level is very low. Here, we generated the Helios-deficient DT40 cells, Helios (-/-), and showed that the Helios-deficiency caused significant increases in transcriptions of four protein kinase Cs (PKCs); PKC-δ, PKC-ε, PKC-η and PKC-ζ, whereas their expressions were drastically down-regulated in the Aiolos-deficient DT40 cells, Aiolos (-/-). In addition, Helios (-/-) was remarkably resistant against phorbol 12-myristate 13-acetate (PMA)/ionomycin treatment, which mimics the B cell receptor (BCR)-mediated stimulation. In the presence of PMA/ionomycin, their viability was remarkably higher than that of DT40, and their DNA fragmentation was less severe than that of DT40 in the opposite manner for the Aiolos-deficiency. The resistance against the PMA/ionomycin-induced apoptosis of Helios (-/-) was sensitive to Rottlerin but not to Go6976. In addition, the Helios-deficiency caused remarkable up-regulation of the Rottlerin-sensitive superoxide (O2 (-))-generating activity. These data suggest that Helios may contribute to the regulation of the BCR-mediated apoptosis and O2 (-)-generating activity, via transcriptional regulation of these four PKCs (especially PKC-δ) in immature B lymphocytes. Together with previous data, our findings may significantly help in the understanding of the B lymphocyte-specific expressions of PKC genes and molecular mechanisms of both the BCR-mediated apoptosis involved in negative selection and the O2 (-)-generating system in immature B lymphocytes.

摘要

转录因子伊卡洛斯家族由五种锌指蛋白组成

伊卡洛斯、爱奥洛斯、赫利俄斯、厄俄斯和珀加索斯;除珀加索斯外,这些蛋白对淋巴细胞的发育和分化至关重要。然而,在B淋巴细胞中,赫利俄斯的生理作用仍有待阐明,因为其表达水平非常低。在这里,我们构建了赫利俄斯缺陷的DT40细胞,即赫利俄斯(-/-)细胞,并表明赫利俄斯缺陷导致四种蛋白激酶C(PKC)的转录显著增加;PKC-δ、PKC-ε、PKC-η和PKC-ζ,而它们的表达在爱奥洛斯缺陷的DT40细胞,即爱奥洛斯(-/-)细胞中则急剧下调。此外,赫利俄斯(-/-)细胞对佛波酯12-肉豆蔻酸酯13-乙酸酯(PMA)/离子霉素处理具有显著抗性,该处理模拟了B细胞受体(BCR)介导的刺激。在PMA/离子霉素存在的情况下,它们的活力显著高于DT40细胞,并且它们的DNA片段化程度比DT40细胞轻,这与爱奥洛斯缺陷的情况相反。赫利俄斯(-/-)细胞对PMA/离子霉素诱导的凋亡的抗性对罗特lerin敏感,但对Go6976不敏感。此外,赫利俄斯缺陷导致罗特lerin敏感的超氧化物(O2(-))生成活性显著上调。这些数据表明,赫利俄斯可能通过对未成熟B淋巴细胞中这四种PKC(尤其是PKC-δ)的转录调控,参与BCR介导的凋亡和O2(-)生成活性的调节。结合先前的数据,我们的发现可能有助于显著理解PKC基因在B淋巴细胞中的特异性表达以及未成熟B淋巴细胞中BCR介导的负选择凋亡和O2(-)生成系统的分子机制。

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