Kolodziej M A, Vilaire G, Gonder D, Poncz M, Bennett J S
Hematology-Oncology Section, Hospital of the University of Pennsylvania, Philadelphia 19104.
J Biol Chem. 1991 Dec 5;266(34):23499-504.
The precursor of platelet membrane glycoprotein IIb (GPIIb) undergoes endoproteolytic cleavage into heavy and light chains post-translation. Endoproteolysis occurs within a 17-amino acid stretch of the precursor that contains 4 arginine residues, 3 in dibasic sequences [Lys-Arg (855-856) and Arg-Arg (858-859)] and a single arginine at 871. To determine the site of GPIIb cleavage and its role in the function of the glycoprotein IIb/IIIa heterodimer, we mutated arginine 856, the di-arginine sequence 858-859, and arginine 871 and coexpressed the mutants with glycoprotein IIIa (GPIIIa) in COS-1 cells. Each GPIIb mutant formed recombinant GPIIb-IIIa heterodimers, but mutants lacking arginine at 856 or 858-859 failed to undergo cleavage. Nevertheless, heterodimers containing the uncleaved GPIIb were expressed on the cell surface. Because endoproteolysis most often occurs after arginines in dibasic sequences, we next expressed GPIIb mutants containing lysine at 856 or aspartic acid at 855 with GPIIIa. Both mutants were cleaved and surface-expressed, indicating that the dibasic sequence at 858-859, but not at 855-856, is required for GPIIb cleavage. Lastly, we tested the function of GPIIb-IIIa containing uncleaved GPIIb by measuring adhesion of transfected cells to immobilized fibrinogen. We found no difference in the adhesion of cells expressing either wild-type or mutant GPIIb, indicating GPIIb-IIIa heterodimers containing uncleaved GPIIb maintain their ability to interact with fibrinogen.
血小板膜糖蛋白IIb(GPIIb)的前体在翻译后会经历内切蛋白水解作用,裂解为重链和轻链。内切蛋白水解作用发生在前体的一段17个氨基酸的区域内,该区域包含4个精氨酸残基,其中3个位于双碱性序列中[赖氨酸 - 精氨酸(855 - 856)和精氨酸 - 精氨酸(858 - 859)],另一个精氨酸位于871位。为了确定GPIIb的裂解位点及其在糖蛋白IIb/IIIa异二聚体功能中的作用,我们对精氨酸856、双精氨酸序列858 - 859和精氨酸871进行了突变,并在COS - 1细胞中将这些突变体与糖蛋白IIIa(GPIIIa)共表达。每个GPIIb突变体都形成了重组GPIIb - IIIa异二聚体,但在856位或858 - 859位缺乏精氨酸的突变体未能发生裂解。然而,含有未裂解GPIIb的异二聚体在细胞表面表达。由于内切蛋白水解作用最常发生在双碱性序列中的精氨酸之后,接下来我们将在856位含有赖氨酸或在855位含有天冬氨酸的GPIIb突变体与GPIIIa共表达。这两个突变体都发生了裂解并在表面表达,表明GPIIb裂解需要858 - 859位的双碱性序列,而不是855 - 856位的双碱性序列。最后,我们通过测量转染细胞与固定化纤维蛋白原的黏附来测试含有未裂解GPIIb的GPIIb - IIIa的功能。我们发现表达野生型或突变型GPIIb的细胞在黏附方面没有差异,这表明含有未裂解GPIIb的GPIIb - IIIa异二聚体保持了其与纤维蛋白原相互作用的能力。