Schulteis Ryan D, Chu Haiyan, Dai Xuezhi, Chen Yuhong, Edwards Brandon, Haribhai Dipica, Williams Calvin B, Malarkannan Subramaniam, Hessner Martin J, Glisic-Milosavljevic Sanja, Jana Srikanta, Kerschen Edward J, Ghosh Soumitra, Wang Demin, Kwitek Anne E, Lernmark Ake, Gorski Jack, Weiler Hartmut
Blood Research Institute, Blood Center of Wisconsin, Milwaukee, USA.
Blood. 2008 Dec 15;112(13):4905-14. doi: 10.1182/blood-2008-03-146555. Epub 2008 Sep 16.
The loss of Gimap5 (GTPase of the immune-associated protein 5) gene function is the underlying cause of lymphopenia and autoimmune diabetes in the BioBreeding (BB) rat. The in vivo function of murine gimap5 is largely unknown. We show that selective gene ablation of the mouse gimap5 gene impairs the final intrathymic maturation of CD8 and CD4 T cells and compromises the survival of postthymic CD4 and CD8 cells, replicating findings in the BB rat model. In addition, gimap5 deficiency imposes a block of natural killer (NK)- and NKT-cell differentiation. Development of NK/NKT cells is restored on transfer of gimap5(-/-) bone marrow into a wild-type environment. Mice lacking gimap5 have a median survival of 15 weeks, exhibit chronic hepatic hematopoiesis, and in later stages show pronounced hepatocyte apoptosis, leading to liver failure. This pathology persists in a Rag2-deficient background in the absence of mature B, T, or NK cells and cannot be adoptively transferred by transplanting gimap5(-/-) bone marrow into wild-type recipients. We conclude that mouse gimap5 is necessary for the survival of peripheral T cells, NK/NKT-cell development, and the maintenance of normal liver function. These functions involve cell-intrinsic as well as cell-extrinsic mechanisms.
免疫相关蛋白5的GTP酶(Gimap5)基因功能缺失是BioBreeding(BB)大鼠淋巴细胞减少和自身免疫性糖尿病的根本原因。小鼠gimap5的体内功能在很大程度上尚不清楚。我们发现,选择性敲除小鼠gimap5基因会损害CD8和CD4 T细胞在胸腺内的最终成熟,并影响胸腺后CD4和CD8细胞的存活,这与BB大鼠模型中的研究结果一致。此外,gimap5缺陷会阻碍自然杀伤(NK)细胞和自然杀伤T(NKT)细胞的分化。将gimap5基因敲除小鼠的骨髓移植到野生型环境中,NK/NKT细胞的发育得以恢复。缺乏gimap5的小鼠中位生存期为15周,表现出慢性肝造血,后期显示明显的肝细胞凋亡,导致肝功能衰竭。这种病理状态在缺乏成熟B细胞、T细胞或NK细胞的Rag2缺陷背景下持续存在,并且不能通过将gimap5基因敲除小鼠的骨髓移植到野生型受体中进行过继转移。我们得出结论,小鼠gimap5对于外周T细胞的存活、NK/NKT细胞的发育以及正常肝功能的维持是必需的。这些功能涉及细胞内和细胞外机制。