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首页> 外文期刊>Journal of thrombosis and haemostasis: JTH >Synthesis of GPIb beta with novel transmembrane and cytoplasmic sequences in a Bernard-Soulier patient resulting in GPIb-defective signaling in CHO cells.
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Synthesis of GPIb beta with novel transmembrane and cytoplasmic sequences in a Bernard-Soulier patient resulting in GPIb-defective signaling in CHO cells.

机译:Bernard-Soulier患者中具有新型跨膜和胞质序列的GPIb beta的合成导致CHO细胞中GPIb缺陷信号传导。

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摘要

The molecular defect of a new Bernard-Soulier patient, originating from Morocco and presenting thrombocytopenia with large platelets and an absence of ristocetin-induced platelet agglutination, has been identified and reproduced in transfected heterologous cells. Gene sequencing revealed insertion of a guanine in the domain coding for the transmembrane region of the glycoprotein (GP) Ib beta subunit. This mutation causes a translational frame shift, which creates putative novel transmembrane and cytoplasmic 37 and 125 amino acids domains, respectively. A 34 kDa immunoreactive GPIb beta band, instead of the normal 26 kDa subunit, was detected by Western blotting in lysates from the patient's platelets and from transfected cells and in immunoprecipitates of metabolically labeled cells. The abnormal subunit did not associate with GPIb alpha and was mainly intracellular, although a significant fraction could reach the cell surface. Cells expressing the mutant GPIb-IX complex adhered to a von Willebrand factor matrix but were unable to change shape, unlike cells expressing the wild-type receptor. These results strongly suggest a novel role of the GPIb beta subunit and its transmembrane-intracellular region in GPIb-VWF-dependent signaling, in addition to a role in correct assembly and cell surface targeting of the GPIb-V-IX complex.
机译:一位来自摩洛哥的新伯纳德·苏里埃病人的分子缺陷已经被鉴定出来,并在转染的异源细胞中复制出来,该病人的血小板减少症伴有大血小板,而没有瑞斯托霉素诱导的血小板凝集。基因测序表明鸟嘌呤在编码糖蛋白(GP)Ib beta亚基跨膜区的结构域中插入。此突变导致翻译移码,从而分别产生推测的新型跨膜和胞质37和125个氨基酸域。通过Western印迹在患者血小板和转染细胞的裂解物中以及在代谢标记细胞的免疫沉淀物中检测到34 kDa免疫反应性GPIbβ带,而不是正常的26 kDa亚基。异常亚基与GPIbα不相关,并且主要在细胞内,尽管很大一部分可以到达细胞表面。与表达野生型受体的细胞不同,表达突变的GPIb-IX复合物的细胞粘附在von Willebrand因子基质上,但无法改变形状。这些结果强烈暗示了GPIbβ亚基及其跨膜细胞内区域在GPIb-VWF依赖性信号传导中的新作用,以及在正确组装和GPIb-V-IX复合物的细胞表面靶向中的作用。

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