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由具有青铜色色素基因突变的小鼠血小板生成减少引起的遗传性血小板减少症。

Inherited thrombocytopenia caused by reduced platelet production in mice with the gunmetal pigment gene mutation.

作者信息

Novak E K, Reddington M, Zhen L, Stenberg P E, Jackson C W, McGarry M P, Swank R T

机构信息

Molecular and Cellular Biology Department, Roswell Park Cancer Institute, Buffalo, NY 14263, USA.

出版信息

Blood. 1995 Apr 1;85(7):1781-9.

PMID:7703484
Abstract

Hereditary macrothrombocytopenia and prolonged bleeding times are associated with the recessive mouse pigment dilution gene gunmetal (gm). Other platelet abnormalities include a mild storage pool deficiency and abnormal expression of two low-molecular-weight guanosine triphosphate binding proteins. These studies were designed to further elucidate the cause of the macrothrombocytopenia. The life span of gunmetal mouse platelets was not significantly different from normal. However, rates of platelet synthesis, measured by sulfate incorporation, were decreased to 25% of normal values. Bone marrow transplantation of normal marrow cells corrected the thrombocytopenia. Furthermore, direct morphologic analysis of mature mutant marrow megakaryocytes by transmission electron microscopy showed reductions in the normal cytoplasmic demarcation membrane system, areas of abnormal membrane complexes, and an increased incidence of emperipolesis. Mutant platelets were relatively more heterogeneous in size and contained unusual elongated and striated inclusions. Mutant megakaryocyte numbers were increased threefold to fivefold over normal numbers in marrow and spleen. Thus, the efficiency of platelet production from gunmetal megakaryocytes is reduced by an order of magnitude. Mutant marrow had a greater proportion of 32N and a smaller proportion of 8N megakaryocytes. Collectively, the results indicate that the gunmetal gene acts intrinsically in megakaryocytes and that an abnormality in this gene causes significant qualitative and quantitative effects on platelet production.

摘要

遗传性大血小板减少症和出血时间延长与隐性小鼠色素稀释基因“枪金属”(gm)有关。其他血小板异常包括轻度储存池缺陷以及两种低分子量鸟苷三磷酸结合蛋白的异常表达。这些研究旨在进一步阐明大血小板减少症的病因。“枪金属”小鼠血小板的寿命与正常小鼠无显著差异。然而,通过硫酸盐掺入法测得的血小板合成速率降至正常值的25%。正常骨髓细胞的骨髓移植纠正了血小板减少症。此外,通过透射电子显微镜对成熟突变骨髓巨核细胞进行直接形态学分析显示,正常的细胞质分界膜系统减少,出现异常膜复合物区域,以及胞吞作用发生率增加。突变血小板在大小上相对更不均一,并且含有异常的细长和条纹状内含物。突变巨核细胞的数量在骨髓和脾脏中比正常数量增加了三到五倍。因此,“枪金属”巨核细胞产生血小板的效率降低了一个数量级。突变骨髓中32N巨核细胞的比例更大,而8N巨核细胞的比例更小。总体而言,结果表明“枪金属”基因在巨核细胞中内在起作用,并且该基因的异常对血小板生成产生显著的定性和定量影响。

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