Wang Zhengqi, Li Geqiang, Tse William, Bunting Kevin D
Department of Medicine, Hematology-Oncology, Case Western Reserve University, Cleveland, OH 44106, USA.
Blood. 2009 May 14;113(20):4856-65. doi: 10.1182/blood-2008-09-181107. Epub 2009 Mar 3.
Currently, there is a major need in hematopoietic stem cell (HSC) transplantation to develop reduced-intensity regimens that do not cause DNA damage and associated toxicities and that allow a wider range of patients to receive therapy. Cytokine receptor signals through c-Kit and c-Mpl can modulate HSC quiescence and engraftment, but the intracellular signals and transcription factors that mediate these effects during transplantation have not been defined. Here we show that loss of one allele of signal transducer and activator of transcription 5 (STAT5) in nonablated adult mutant mice permitted engraftment with wild-type HSC. Conditional deletion of STAT5 using Mx1-Cre caused maximal reduction in STAT5 mRNA (> 97%) and rapidly decreased quiescence-associated c-Mpl downstream targets (Tie-2, p57), increased HSC cycling, and gradually reduced survival and depleted the long-term HSC pool. Host deletion of STAT5 was persistent and permitted efficient donor long-term HSC engraftment in primary and secondary hosts in the absence of ablative conditioning. Overall, these studies establish proof of principle for targeting of STAT5 as novel transplantation conditioning and demonstrate, for the first time, that STAT5, a mitogenic factor in most cell types, including hematopoietic progenitors, is a key transcriptional regulator that maintains quiescence of HSC during steady-state hematopoiesis.
目前,造血干细胞(HSC)移植领域迫切需要开发强度降低的方案,该方案不会造成DNA损伤及相关毒性,且能让更多患者接受治疗。通过c-Kit和c-Mpl的细胞因子受体信号可调节HSC的静止和植入,但移植过程中介导这些效应的细胞内信号和转录因子尚未明确。在此,我们表明在未进行消融的成年突变小鼠中,信号转导及转录激活因子5(STAT5)一个等位基因的缺失允许野生型HSC植入。使用Mx1-Cre对STAT5进行条件性缺失导致STAT5 mRNA最大程度降低(>97%),并迅速降低与静止相关的c-Mpl下游靶点(Tie-2、p57),增加HSC的增殖,逐渐降低存活率并耗尽长期HSC库。宿主中STAT5的缺失持续存在,并在无消融预处理的情况下允许供体长期HSC在原发性和继发性宿主中有效植入。总体而言,这些研究确立了以STAT5作为新型移植预处理靶点的原理证明,并首次证明,STAT5作为包括造血祖细胞在内的大多数细胞类型中的促有丝分裂因子,是在稳态造血过程中维持HSC静止的关键转录调节因子。