Peters Luanne L, Paw Barry H, Blanc Lionel
The Jackson Laboratory; Bar Harbor, ME, USA.
Small GTPases. 2013 Jan-Mar;4(1):47-50. doi: 10.4161/sgtp.23013. Epub 2012 Dec 6.
Although significant progress has been made in the past decades in our understanding of bone marrow failure syndromes and anemia, many pathological conditions of unknown origin remain. Mouse models have significantly contributed to our understanding of normal erythropoiesis and the pathogenesis of erythroid disorders. Recently, we identified in the scat (severe combined anemia and thrombocytopenia) mouse model a missense mutation (G125V) in the Rasa3 gene, encoding a Ras GTPase activating protein (GAP). RASA3 is lost during reticulocyte maturation through the exosomal pathway and is therefore absent in mature erythrocytes. In wild-type reticulocytes, RASA3 is bound to the plasma membrane, a prerequisite for its GAP activity, but is mislocalized to the cytosol in scat. This mislocalization leads to RASA3 loss of function and higher levels of Ras-GTP, the active form of Ras, are consistently found in scat mature red cells. Finally, RASA3 function is conserved among vertebrates, since erythropoiesis and thrombopoiesis are impaired in zebrafish in which rasa3 is knocked-down by morpholinos, and RASA3 is expressed in human erythroleukemia cells as well as in primary cells. In this commentary, we highlight the critical, conserved and non-redundant function of RASA3 in the context of vertebrate erythropoiesis and megakaryopoiesis. We notably discuss the mechanism of RASA3 downregulation and speculate on the most intriguing part of the phenotype observed in scat; the transient remission period.
尽管在过去几十年里,我们对骨髓衰竭综合征和贫血的认识取得了重大进展,但许多病因不明的病理状况仍然存在。小鼠模型对我们理解正常红细胞生成和红系疾病的发病机制做出了重大贡献。最近,我们在scat(严重联合贫血和血小板减少症)小鼠模型中发现,编码Ras GTP酶激活蛋白(GAP)的Rasa3基因存在一个错义突变(G125V)。RASA3在网织红细胞成熟过程中通过外泌体途径丢失,因此在成熟红细胞中不存在。在野生型网织红细胞中,RASA3与质膜结合,这是其GAP活性的前提条件,但在scat小鼠中它错误定位于细胞质中。这种错误定位导致RASA3功能丧失,并且在scat成熟红细胞中始终能发现更高水平的Ras-GTP(Ras的活性形式)。最后,由于用吗啉代寡核苷酸敲低rasa3的斑马鱼中红细胞生成和血小板生成受损,并且RASA3在人红白血病细胞以及原代细胞中表达,所以RASA3的功能在脊椎动物中是保守的。在这篇评论中,我们强调了RASA3在脊椎动物红细胞生成和巨核细胞生成背景下的关键、保守和非冗余功能。我们特别讨论了RASA3下调的机制,并推测了在scat中观察到的最有趣的表型部分;即短暂缓解期。