Wen Yujie, Elliott Mary J, Huang Yiming, Miller Thomas O, Corbin Deborah R, Hussain Lala-Rukh, Ratajczak Mariusz Z, Fukui Yoshinori, Ildstad Suzanne T
Institute for Cellular Therapeutics.
Stem Cells. 2014 Oct;32(10):2732-43. doi: 10.1002/stem.1780.
CD8(+) TCR(-) graft facilitating cells (FCs) enhance engraftment of hematopoietic stem cells (HSCs) in allogeneic and syngeneic recipients. The mechanisms by which FCs promote HSC engraftment and tolerance induction have not been fully elucidated. Here, we provide data to support a critical role for dedicator of cytokinesis 2 (DOCK2) in multiple aspects of FCs function. DOCK2(-/-) FCs exhibit compromised facilitative function in vivo as evidenced by the loss of engraftment-enhancing capability for c-Kit(+) Sca-1(+) lineage(-) (KSL) cells, and compromised ability to promote KSL cell homing and lodgment in hematopoietic niche. Deletion of DOCK2 abrogates the ability of FCs to induce differentiation of naïve CD4(+) CD25(-) T cells into FoxP3(+) regulatory T cells and interleukin-10-producing type 1 regulatory T cells in vitro. Moreover, DOCK2(-/-) FCs are unable to promote survival of KSL cells when cocultured with KSL cells. DOCK2(-/-) FCs also exhibit compromised migration to stroma-derived factor-1 in vitro and impaired homing to the bone marrow in vivo. In conclusion, our results demonstrate that DOCK2 is critical for FCs to maintain its immunomodulatory function and exert its trophic effects on KSL cells. These findings may have direct clinical relevance to promote HSC engraftment for treatment of autoimmunity, hemoglobinopathies, and to induce transplantation tolerance.
CD8(+)TCR(-)移植促进细胞(FCs)可增强造血干细胞(HSCs)在同种异体和同基因受体中的植入。FCs促进HSC植入和诱导耐受的机制尚未完全阐明。在此,我们提供数据支持胞质分裂 dedicator 2(DOCK2)在FCs功能的多个方面发挥关键作用。DOCK2(-/-) FCs在体内表现出受损的促进功能,c-Kit(+)Sca-1(+)谱系(-)(KSL)细胞植入增强能力丧失,以及促进KSL细胞归巢和在造血微环境中驻留的能力受损,这证明了这一点。删除DOCK2消除了FCs在体外诱导幼稚CD4(+)CD25(-)T细胞分化为FoxP3(+)调节性T细胞和产生白细胞介素-10的1型调节性T细胞的能力。此外,与KSL细胞共培养时,DOCK2(-/-) FCs无法促进KSL细胞的存活。DOCK2(-/-) FCs在体外对基质细胞衍生因子-1的迁移能力也受损,在体内归巢至骨髓的能力也受损。总之,我们的结果表明,DOCK2对于FCs维持其免疫调节功能并对KSL细胞发挥营养作用至关重要。这些发现可能与促进HSC植入以治疗自身免疫性疾病、血红蛋白病以及诱导移植耐受具有直接的临床相关性。