Department of Hematology, Leiden University Medical Center, 2333ZA Leiden, the Netherlands; and
Department of Hematology, Leiden University Medical Center, 2333ZA Leiden, the Netherlands; and.
J Immunol. 2018 Mar 15;200(6):2199-2208. doi: 10.4049/jimmunol.1701018. Epub 2018 Feb 2.
Alemtuzumab (ALM) is used for T cell depletion in the context of allogeneic hematopoietic stem cell transplantation (alloSCT) to prevent acute graft-versus-host disease and graft rejection. Following ALM-based T cell-depleted alloSCT, relatively rapid recovery of circulating T cells has been described, including T cells that lack membrane expression of the GPI-anchored ALM target Ag CD52. We show, in a cohort of 89 human recipients of an ALM-based T cell-depleted alloSCT graft, that early lymphocyte reconstitution always coincided with the presence of large populations of T cells lacking CD52 membrane expression. In contrast, loss of CD52 expression was not overt within B cells or NK cells. We show that loss of CD52 expression from the T cell membrane resulted from loss of GPI anchor expression caused by a highly polyclonal mutational landscape in the gene. This polyclonal mutational landscape in the gene was also found in CD52 T cells present at a low frequency in peripheral blood of healthy donors. Finally, we demonstrate that the GPI/CD52 T cell populations that arise after ALM-based T cell-depleted alloSCT contain functional T cells directed against multiple viral targets that can play an important role in immune protection early after ALM-based T cell-depleted transplantation.
阿仑单抗(ALM)用于异基因造血干细胞移植(alloSCT)中 T 细胞耗竭,以预防急性移植物抗宿主病和移植物排斥。在基于 ALM 的 T 细胞耗竭性 alloSCT 后,已经描述了循环 T 细胞的相对快速恢复,包括缺乏 GPI 锚定的 ALM 靶 Ag CD52 膜表达的 T 细胞。我们在一组 89 名接受基于 ALM 的 T 细胞耗竭性 alloSCT 移植物的人类受者中表明,早期淋巴细胞重建总是与缺乏 CD52 膜表达的大量 T 细胞同时存在。相比之下,B 细胞或 NK 细胞中并未明显丧失 CD52 表达。我们表明,T 细胞膜上 CD52 表达的丧失是由于 基因中高度多克隆突变景观导致 GPI 锚表达丧失所致。在健康供体的外周血中以低频率存在的 CD52 T 细胞中也发现了 基因中的这种多克隆突变景观。最后,我们证明,基于 ALM 的 T 细胞耗竭性 alloSCT 后出现的 GPI/CD52 T 细胞群含有针对多种病毒靶标的功能性 T 细胞,这些 T 细胞在基于 ALM 的 T 细胞耗竭性移植后早期可以发挥重要的免疫保护作用。