Sabri Siham, Foudi Adlen, Boukour Siham, Franc Brigitte, Charrier Sabine, Jandrot-Perrus Martine, Farndale Richard W, Jalil Abdelali, Blundell Mike P, Cramer Elisabeth M, Louache Fawzia, Debili Najet, Thrasher Adrian J, Vainchenker William
Institut National de la Santé etde la Recherche Médicale (INSERM), U790, Université Paris XI, Institut Gustave Roussy, Villejut, France.
Blood. 2006 Jul 1;108(1):134-40. doi: 10.1182/blood-2005-03-1219. Epub 2006 Mar 7.
The pathophysiology of microthrombocytopenia in the Wiskott-Aldrich syndrome (WAS) and its milder form, X-linked thrombocytopenia (XLT), is unclear. Although quantitative defects are correctable by splenectomy, residual platelet abnormalities are suggestive of intrinsic disturbances of production. In contrast to human patients, murine models of WASp deficiency exhibit only mild thrombocytopenia, and platelets are of normal size. Here, we have identified a critical role for WASp during murine platelet biogenesis. By electron microscopy, WASp-deficient MKs appeared to have shed platelets ectopically within the bone marrow space. WASp-deficient megakaryocytes (MKs) also displayed defects in response to fibrillar collagen I (CI) in vitro, the major matrix component of bone. These included a loss of normal CI receptor (alpha2beta1 integrin)-mediated inhibition of proplatelet formation, a marked abrogation of SDF-1-induced chemotactic migration of CD41+ MKs adherent to CI, and an almost complete lack of actin-rich podosomes, normally induced by interaction between CI and its receptors GPVI or alpha2beta1 integrin. These findings highlight the central and highly specialized role of WASp in MKs during platelet biogenesis, and may provide a mechanism for the mild thrombocytopenia observed in WASp-deficient mice. In addition, they suggest a novel explanation for some of the platelet abnormalities characteristic of patients with WAS.
威斯科特-奥尔德里奇综合征(WAS)及其较轻形式X连锁血小板减少症(XLT)中微血小板减少症的病理生理学尚不清楚。尽管定量缺陷可通过脾切除术纠正,但残留的血小板异常提示存在内在的生成障碍。与人类患者不同,WASp缺陷的小鼠模型仅表现出轻度血小板减少,且血小板大小正常。在此,我们确定了WASp在小鼠血小板生成过程中的关键作用。通过电子显微镜观察,WASp缺陷的巨核细胞(MKs)似乎在骨髓腔内异位释放血小板。WASp缺陷的巨核细胞在体外对骨的主要基质成分纤维状I型胶原(CI)的反应也存在缺陷。这些缺陷包括正常CI受体(α2β1整合素)介导的前血小板形成抑制作用丧失、SDF-1诱导的粘附于CI的CD41 + MKs趋化迁移明显减弱,以及几乎完全缺乏通常由CI与其受体GPVI或α2β1整合素相互作用诱导的富含肌动蛋白的足体。这些发现突出了WASp在血小板生成过程中在巨核细胞中的核心且高度专业化的作用,并可能为在WASp缺陷小鼠中观察到的轻度血小板减少提供一种机制。此外,它们为WAS患者某些特征性血小板异常提出了一种新的解释。