Lecine P, Villeval J L, Vyas P, Swencki B, Xu Y, Shivdasani R A
Department of Adult Oncology, Dana-Farber Cancer Institute, Boston, MA; the Department of Medicine, Children's Hospital Medical Center, Boston, MA, USA.
Blood. 1998 Sep 1;92(5):1608-16.
Mechanisms of platelet production and release by mammalian megakaryocytes are poorly understood. We used thrombocytopenic knockout mice to better understand these processes. Proplatelets are filamentous extensions of terminally differentiated megakaryocytes that are thought to represent one mechanism of platelet release; however, these structures have largely been recognized in cultured cells and there has been no correlation between thrombocytopoiesis in vivo and proplatelet formation. Mice lacking transcription factor NF-E2 have a late arrest in megakaryocyte maturation, resulting in profound thrombocytopenia. In contrast to normal megakaryocytes, which generate abundant proplatelets, cells from these mice never produce proplatelets, even after prolonged stimulation with c-Mpl ligand. Similarly, megakaryocytes from thrombocytopenic mice with lineage-selective loss of transcription factor GATA-1 produce proplatelets very rarely. These findings establish a significant correlation between thrombocytopoiesis and proplatelet formation and suggest that the latter represents a physiologic mechanism of platelet release. We further show that proplatelet formation by normal megakaryocytes and its absence in cells lacking NF-E2 are independent of interactions with adherent (stromal) cells. Similarly, thrombocytopenia in NF-E2(-/-) mice reflects intrinsic defects in the megakaryocyte lineage. These observations improve our understanding of platelet production and validate the study of proplatelets in probing the underlying mechanisms.
哺乳动物巨核细胞产生和释放血小板的机制目前了解甚少。我们利用血小板减少的基因敲除小鼠来更好地理解这些过程。前血小板是终末分化的巨核细胞的丝状延伸,被认为是血小板释放的一种机制;然而,这些结构大多在培养细胞中被识别,并且体内血小板生成与前血小板形成之间并无关联。缺乏转录因子NF-E2的小鼠在巨核细胞成熟过程中出现晚期停滞,导致严重的血小板减少。与能产生大量前血小板的正常巨核细胞不同,这些小鼠的细胞即使在用c-Mpl配体长时间刺激后也从不产生前血小板。同样,转录因子GATA-1谱系选择性缺失的血小板减少小鼠的巨核细胞也极少产生前血小板。这些发现确立了血小板生成与前血小板形成之间的显著关联,并表明后者代表了血小板释放的一种生理机制。我们进一步表明,正常巨核细胞的前血小板形成及其在缺乏NF-E2的细胞中的缺失与与黏附(基质)细胞的相互作用无关。同样,NF-E2(-/-)小鼠的血小板减少反映了巨核细胞谱系的内在缺陷。这些观察结果增进了我们对血小板生成的理解,并验证了在前血小板研究中对潜在机制的探索。