Ke F, Grabow S, Kelly G L, Lin A, O'Reilly L A, Strasser A
The Walter and Eliza Hall Institute of Medical Research, Melbourne, Victoria, Australia.
Department of Medical Biology, The University of Melbourne, Melbourne, Victoria, Australia.
Cell Death Dis. 2015 Oct 22;6(10):e1938. doi: 10.1038/cddis.2015.304.
It is well established that BAX and BAK play crucial, overlapping roles in the intrinsic pathway of apoptosis. Gene targeted mice lacking both BAX and BAK have previously been generated, but the majority of these animals died perinatally. BOK is a poorly studied relative of BAX and BAK that shares extensive amino acid sequence homology to both proteins, but its function remains largely unclear to date. To determine whether BOK plays an overlapping role with BAX and BAK, we utilized a hematopoietic reconstitution model where lethally irradiated wild type mice were transplanted with Bok(-/-)Bax(-/-)Bak(-/-) triple knockout (TKO) fetal liver cells, and compared alongside mice reconstituted with a Bax(-/-)Bak(-/-) double knockout (DKO) hematopoietic compartment. We report here that mice with a TKO and DKO hematopoietic system died at a similar rate and much earlier than control animals, mostly due to severe autoimmune pathology. Both TKO and DKO reconstituted mice also had altered frequencies of various leukocyte subsets in the thymus, bone marrow and spleen, displayed leukocyte infiltrates and autoimmune pathology in multiple tissues, as well as elevated levels of anti-nuclear autoantibodies. Interestingly, the additional deletion of BOK (on top of BAX and BAK loss) led to a further increase in peripheral blood lymphocytes, as well as enhanced lymphoid infiltration in some organs. These findings suggest that BOK may have some functions that are redundant with BAX and BAK in the hematopoietic system.
众所周知,BAX和BAK在细胞凋亡的内在途径中发挥着关键且重叠的作用。此前已培育出缺乏BAX和BAK的基因敲除小鼠,但这些动物中的大多数在围产期死亡。BOK是BAX和BAK研究较少的同源物,与这两种蛋白具有广泛的氨基酸序列同源性,但其功能至今仍不清楚。为了确定BOK是否与BAX和BAK发挥重叠作用,我们利用了一种造血重建模型,将经致死剂量照射的野生型小鼠移植入Bok(-/-)Bax(-/-)Bak(-/-)三基因敲除(TKO)胎儿肝细胞,并与由Bax(-/-)Bak(-/-)双基因敲除(DKO)造血区室重建的小鼠进行比较。我们在此报告,具有TKO和DKO造血系统的小鼠死亡率相似,且比对照动物早得多,主要是由于严重的自身免疫病理。TKO和DKO重建的小鼠在胸腺、骨髓和脾脏中各种白细胞亚群的频率也发生了改变,在多个组织中出现白细胞浸润和自身免疫病理,以及抗核自身抗体水平升高。有趣的是,额外敲除BOK(在BAX和BAK缺失的基础上)导致外周血淋巴细胞进一步增加,以及某些器官中淋巴样浸润增强。这些发现表明,BOK在造血系统中可能具有一些与BAX和BAK冗余的功能。