Department of Pharmacology, University of Illinois Chicago, Chicago, IL, 60612, USA.
Department of Pharmaceutical Sciences and Winthrop P. Rockefeller Cancer Institute, University of Arkansas for Medical Sciences, Little Rock, AR, 72205, USA.
Nat Commun. 2018 Jun 18;9(1):2377. doi: 10.1038/s41467-018-04716-5.
The transition of hematopoiesis from the fetal liver (FL) to the bone marrow (BM) is incompletely characterized. We demonstrate that the Wiskott-Aldrich syndrome verprolin-homologous protein (WAVE) complex 2 is required for this transition, as complex degradation via deletion of its scaffold Hem-1 causes the premature exhaustion of neonatal BM hematopoietic stem cells (HSCs). This exhaustion of BM HSC is due to the failure of BM engraftment of Hem-1 FL HSCs, causing early death. The Hem-1 FL HSC engraftment defect is not due to the lack of the canonical function of the WAVE2 complex, the regulation of actin polymerization, because FL HSCs from Hem-1 mice exhibit no defects in chemotaxis, BM homing, or adhesion. Rather, the failure of Hem-1 FL HSC engraftment in the marrow is due to the loss of c-Abl survival signaling from degradation of the WAVE2 complex. However, c-Abl activity is dispensable for the engraftment of adult BM HSCs into the BM. These findings reveal a novel function of the WAVE2 complex and define a mechanism for FL HSC fitness in the embryonic BM niche.
造血从胎肝(FL)向骨髓(BM)的转变尚未完全被描述。我们证明,Wiskott-Aldrich 综合征 verprolin 同源蛋白(WAVE)复合物 2 是这种转变所必需的,因为通过删除其支架 Hem-1 来降解复合物会导致新生儿 BM 造血干细胞(HSCs)过早耗尽。这种 BM HSC 的耗竭是由于 Hem-1 FL HSC 无法在 BM 中植入,导致早期死亡。Hem-1 FL HSC 植入缺陷不是由于 WAVE2 复合物的典型功能,即肌动蛋白聚合的调节缺失,因为来自 Hem-1 小鼠的 FL HSC 在趋化性、BM 归巢或粘附方面没有缺陷。相反,Hem-1 FL HSC 植入失败是由于 WAVE2 复合物降解导致 c-Abl 存活信号丢失。然而,c-Abl 活性对于成年 BM HSC 植入 BM 是可有可无的。这些发现揭示了 WAVE2 复合物的新功能,并定义了 FL HSC 在胚胎 BM 龛位中的适应性机制。