Baronciani L, Federici A B, Punzo M, Solimando M, Cozzi G, La Marca S, Rubini V, Canciani M T, Mannucci P M
Department of Medicine and Medical Specialties, Angelo Bianchi Bonomi Haemophilia and Thrombosis Centre, IRCCS Maggiore Policlinico Hospital, Mangiagalli, Regina Elena Foundation and University of Milan, Milan, Italy.
J Thromb Haemost. 2009 Jul;7(7):1114-22. doi: 10.1111/j.1538-7836.2009.03457.x. Epub 2009 Apr 24.
Type IIH von Willebrand disease was reported 20 years ago as a novel variant characterized by the loss of the largest multimers in plasma and platelets and absence of the typical triplet structure.
The propositus and his daughter have been reinvestigated and characterized at the molecular level. The identified mutations were expressed in COS-7 cells to evaluate the mechanism of this variant.
The propositus had normal von Willebrand factor (VWF):ristocetin cofactor activity (RCo) and high VWF antigen (VWF:Ag) values, with a low VWF:RCo/VWF:Ag ratio (0.51). No abnormalities were found in his daughter, except for the reduced triplet structure in plasma VWF and diminished ultralarge VWF (ULVWF) multimers in platelets. Three mutations were identified in the propositus: 604C>T (R202W), 4748G>A (R1583Q), and 2546G>A (C849Y). The amounts of secreted recombinant VWF (rVWF) were apparently increased for R202W (130%), R202W-R1583Q (131%), and R202W-R1583Q/WT (121%), reduced for C849Y (72%) and C849Y/WT (83%), and normal for R1583Q (107%) and R202W-R1583Q/C849Y (102%). In cell lysates, higher values were found in association with the C849Y mutation. A normal multimeric pattern was found in R1583Q rVWF, mainly dimers in R202W rVWF, and intermediate molecular weight multimers in C849Y rVWF. Hybrid R202W-R1583Q/WT and C849Y/WT rVWFs had a nearly normal multimeric pattern, whereas in hybrid R202W-R1583Q/C849Y rVWF there was a loss of large/intermediate multimers.
The propositus phenotype seems to be due to mutations R202W and C849Y, both affecting the VWF multimerization process and, for C849Y rVWF, intracellular survival. The absent triplet multimeric structure in the propositus and its reduction in his daughter appears to be related to the lack of ULVWF multimers, which mainly contribute to the formation of satellite bands.
20年前报道了IIH型血管性血友病,它是一种新型变异型,其特征是血浆和血小板中最大的多聚体缺失,且缺乏典型的三联体结构。
对先证者及其女儿进行了重新研究,并在分子水平上进行了特征分析。将鉴定出的突变在COS-7细胞中表达,以评估该变异型的机制。
先证者的血管性血友病因子(VWF):瑞斯托霉素辅因子活性(RCo)正常,VWF抗原(VWF:Ag)值高,VWF:RCo/VWF:Ag比值低(0.51)。他的女儿未发现异常,只是血浆VWF中的三联体结构减少,血小板中的超大VWF(ULVWF)多聚体减少。在先证者中鉴定出三个突变:604C>T(R202W)、4748G>A(R1583Q)和2546G>A(C849Y)。对于R202W(130%)、R202W-R1583Q(131%)和R202W-R1583Q/WT(121%),分泌的重组VWF(rVWF)量明显增加;对于C849Y(72%)和C849Y/WT(83%),分泌量减少;对于R1583Q(107%)和R202W-R1583Q/C849Y(102%),分泌量正常。在细胞裂解物中,与C849Y突变相关的值较高。在R1583Q rVWF中发现正常的多聚体模式,在R202W rVWF中主要是二聚体,在C849Y rVWF中是中等分子量的多聚体。杂交的R202W-R1583Q/WT和C849Y/WT rVWF具有近乎正常的多聚体模式,而在杂交的R202W-R1583Q/C849Y rVWF中,大/中等多聚体缺失。
先证者的表型似乎是由于R202W和C849Y突变,这两个突变都影响VWF多聚化过程,对于C849Y rVWF,还影响细胞内存活。先证者中缺失的三联体多聚体结构及其女儿中该结构的减少似乎与ULVWF多聚体的缺乏有关,ULVWF多聚体主要有助于卫星带的形成。