Malissein E, Verdier M, Ratinaud M H, Troutaud D
EA 3842, "Homéostasie Cellulaire & Pathologies," Limoges, France.
Apoptosis. 2006 Jun;11(6):1003-12. doi: 10.1007/s10495-006-6713-7.
The activity of Bad, a pro-apoptotic protein, is regulated by reversible phosphorylation. Moreover, sequestration of Bad within subcellular compartments may be a new mechanism of apoptosis regulation. In this study, we report that Bad interacts with 14-3-3 protein in WEHI-231 immature B cells. This association is disrupted following BCR stimulation in correlation with Bad translocation to mitochondria and apoptosis. Confocal microscopy was further used to examine the co-localization of Bad with lipid rafts in WEHI-231 and murineex vivoB cells. Bad was found colocalized to lipid rafts in freshly isolated mature B lymphocytes, in contrast to immature cells. Finally, co-immunoprecipitation experiments performed on WEHI-231 B cells revealed that PP1alpha interacts with Bcl-2 and Bad, and dissociation of the complex was found correlated with appearance of apoptosis. Bcl-2 seemed to be required to assemble the complex which may regulate Bad phosphorylation status and consequently cell survival. Collectively, present data outline the role of Bad trafficking in the BCR-mediated apoptosis and suggest that differences in intracellular Bad trafficking may be involved in the differential outcome of BCR signaling.
促凋亡蛋白Bad的活性受可逆磷酸化调节。此外,Bad在亚细胞区室中的隔离可能是一种新的凋亡调节机制。在本研究中,我们报道在WEHI-231未成熟B细胞中Bad与14-3-3蛋白相互作用。在BCR刺激后,这种结合被破坏,这与Bad转位至线粒体及凋亡相关。共聚焦显微镜进一步用于检测Bad与WEHI-231及小鼠离体B细胞中脂筏的共定位。与未成熟细胞相反,在新鲜分离的成熟B淋巴细胞中发现Bad与脂筏共定位。最后,对WEHI-231 B细胞进行的免疫共沉淀实验显示PP1α与Bcl-2和Bad相互作用,并且发现复合物的解离与凋亡的出现相关。Bcl-2似乎是组装该复合物所必需的,该复合物可能调节Bad的磷酸化状态,从而影响细胞存活。总体而言,目前的数据概述了Bad转运在BCR介导的凋亡中的作用,并表明细胞内Bad转运的差异可能参与了BCR信号转导的不同结果。