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与犬血小板功能丧失相关的钙 - 二酰甘油鸟嘌呤核苷酸交换因子I基因突变

Calcium-diacylglycerol guanine nucleotide exchange factor I gene mutations associated with loss of function in canine platelets.

作者信息

Boudreaux Mary K, Catalfamo James L, Klok Marion

机构信息

Department of Pathobiology, College of Veterinary Medicine, Auburn University, Auburn, AL 36849-5519, USA.

出版信息

Transl Res. 2007 Aug;150(2):81-92. doi: 10.1016/j.trsl.2007.03.006. Epub 2007 May 25.

Abstract

Calcium-Diacylglycerol Guanine Nucleotide Exchange Factor I (CalDAG-GEFI) has been implicated in platelet aggregation signaling in CalDAG-GEFI knockouts. Functional mutations were identified in the gene encoding for CalDAG-GEFI in 3 dog breeds. Affected dogs experienced epistaxis, gingival bleeding, and petechiation. Platelet number, von Willebrand factor, clot retraction, and coagulation screening assays were normal, whereas bleeding time tests were prolonged. Platelet aggregation and release responses to all agonists, except thrombin, were markedly impaired. Platelet membranes had normal concentrations of integrin alphaIIb-beta3; however, ADP-induced fibrinogen binding by activated platelets was markedly impaired. Forskolin-stimulated platelets exhibited a marked increase in intraplatelet cAMP associated with impaired phosphodiesterase (PDE) activity, whereas levels of extractable phosphoinositides were 1.5-fold to 2-fold higher in thrombin-stimulated affected platelets. DNA analysis of the CalDAG-GEFI gene in affected dogs documented the existence of 3 distinct mutations within portions of the CalDAG-GEFI gene encoding for structurally conserved regions within the catalytic domain of the protein. The mutations are predicted to result in either lack of synthesis, enhanced degradation, or marked impairment of protein function. The dysfunctional profile of canine platelets observed in mutant dogs putatively links CalDAG-GEFI and its target Rap1 or other Ras family member, for the first time, to a role in pathways that regulate cAMP PDE activity and thrombin-stimulated phosphoinositide anchoring or metabolism. The finding of distinct functional mutations in 3 dog breeds suggests that mutations in the CalDAG-GEFI gene may be implicated in similar defects in human patients with congenital platelet disorders having primary secretion defects of unknown etiology.

摘要

钙-二酰甘油鸟嘌呤核苷酸交换因子I(CalDAG-GEFI)在CalDAG-GEFI基因敲除小鼠中与血小板聚集信号传导有关。在3个犬种中,编码CalDAG-GEFI的基因中发现了功能性突变。患病犬出现鼻出血、牙龈出血和瘀点。血小板数量、血管性血友病因子、血块回缩和凝血筛查试验均正常,但出血时间试验延长。除凝血酶外,血小板对所有激动剂的聚集和释放反应均明显受损。血小板膜上整合素αIIb-β3的浓度正常;然而,激活的血小板对ADP诱导的纤维蛋白原结合明显受损。福斯高林刺激的血小板表现出细胞内cAMP显著增加,同时磷酸二酯酶(PDE)活性受损,而凝血酶刺激的患病血小板中可提取的磷酸肌醇水平高出1.5至2倍。对患病犬CalDAG-GEFI基因的DNA分析表明,在编码该蛋白催化结构域内结构保守区域的CalDAG-GEFI基因部分存在3种不同的突变。这些突变预计会导致蛋白质合成缺失、降解增强或功能显著受损。在突变犬中观察到的犬血小板功能障碍特征首次将CalDAG-GEFI及其靶点Rap1或其他Ras家族成员与调节cAMP PDE活性以及凝血酶刺激的磷酸肌醇锚定或代谢的信号通路联系起来。在3个犬种中发现不同的功能性突变表明CalDAG-GEFI基因的突变可能与病因不明的先天性血小板疾病且有原发性分泌缺陷的人类患者的类似缺陷有关。

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