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Novel evidence that crosstalk between the complement coagulation and fibrinolysis proteolytic cascades is involved in mobilization of hematopoietic stem/progenitor cells (HSPCs)

机译:补体凝血和纤溶蛋白水解级联反应之间的串扰参与造血干/祖细胞(HSPC)动员的新证据

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摘要

The role of blood proteinases in the mobilization of hematopoietic stem/progenitor cells (HSPCs) is still not well understood. As previously reported, activation of the complement cascade (ComC) and cleavage of C5 by C5 convertase are enabling events in the release of C5a that plays a crucial role in the egress of HSPCs from bone marrow (BM) into peripheral blood (PB) and explains why C5-deficient mice are poor mobilizers. Here we provide evidence that during granulocyte colony-stimulating factor- and AMD3100-induced mobilization, not only the ComC but also two other evolutionarily ancient proteolytic enzyme cascades, the coagulation cascade (CoaC) and the fibrynolytic cascade (FibC), become activated. Activation of all three cascades was measured by generation of C5a, decrease in prothrombin time and activated partial thromboplastin time as well as an increase in the concentrations of plasmin/antiplasmin and thrombin/antithrombin. More importantly, the CoaC and FibC, by generating thrombin and plasmin, respectively, provide C5 convertase activity, explaining why mobilization of HSPCs in C3-deficient mice, which do not generate ComC-generated C5a convertase, is not impaired. Our observations shed more light on how the CoaC and FibC modulate stem cell mobilization and may lead to the development of more efficient mobilization strategies in poor mobilizers. Furthermore, as it is known that all these cascades are activated in all the situations in which HSPCs are mobilized from BM into PB (for example, infections, tissue/organ damage or strenuous exercise) and show a circadian rhythm of activation, they must be involved in both stress-induced and circadian changes in HSPC trafficking in PB.
机译:血液蛋白酶在造血干/祖细胞(HSPCs)动员中的作用仍未得到很好的了解。如先前报道,补体级联反应(ComC)的激活和C5转化酶的裂解使C5a释放成为可能,这在HSPC从骨髓(BM)进入外周血(PB)的分泌中起着至关重要的作用。解释了为什么缺乏C5的小鼠动员能力差。在这里,我们提供的证据表明,在粒细胞集落刺激因子和AMD3100诱导的动员期间,不仅ComC,而且其他两个进化上古老的蛋白水解酶级联,即凝血级联(CoaC)和纤溶级联(FibC)也被激活。通过产生C5a,凝血酶原时间的减少和凝血酶原部分时间的激活以及纤溶酶/抗纤溶酶和凝血酶/抗凝血酶浓度的增加来测量所有三个级联的激活。更重要的是,CoaC和FibC分别通过产生凝血酶和纤溶酶来提供C5转化酶活性,这解释了为什么在不产生ComC产生的C5a转化酶的C3缺陷小鼠中,HSPC的动员不会受到损害。我们的观察结果更多地揭示了CoaC和FibC如何调节干细胞动员,并可能导致贫困动员者开发出更有效的动员策略。此外,众所周知,在所有将HSPC从BM动员到PB的情况下(例如,感染,组织/器官损伤或剧烈运动),所有这些级联都会被激活,并显示出昼夜节律的激活节奏,因此必须参与了压力诱导的和PB的HSPC交易的昼夜节律变化。

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